CN110991982A - Construction project building information management method and system - Google Patents

Construction project building information management method and system Download PDF

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CN110991982A
CN110991982A CN201911031550.9A CN201911031550A CN110991982A CN 110991982 A CN110991982 A CN 110991982A CN 201911031550 A CN201911031550 A CN 201911031550A CN 110991982 A CN110991982 A CN 110991982A
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information
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王振京
王新国
尤利国
杨杰
计明飞
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Csic Haixin Engineering Management Beijing Co Ltd
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Csic Haixin Engineering Management Beijing Co Ltd
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    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
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Abstract

The invention discloses a construction project building information management method and a system thereof, belonging to the technical field of project building management, the method comprises the steps of establishing a management end, completing address registration, downloading engineering data, inputting information, completing forms and the like, wherein a host establishes a server, all the responsible persons of large building companies, small building companies and construction teams which sub-package the project download mobile phone APPs, the responsible persons of the large building companies, the small building companies and the construction teams input engineering information through the mobile phone APPs, the mobile phone APPs automatically generate the forms and send the forms to the server, and the server automatically integrates and calculates the received forms to generate a total form.

Description

Construction project building information management method and system
Technical Field
The invention relates to the technical field of construction and construction management, in particular to a construction and construction information management method and system.
Background
At present, when a host starts a construction project, one or more construction companies are generally searched for the project to be built. The government investment project 'founding system' refers to the construction of the project organization and management project of the engineering management company with corresponding qualification or other enterprises with corresponding engineering management capability, the agent investor or the construction unit entrusted by the government investment project through the regulated procedures. The government selects qualified project management companies as project construction phase legal persons, and the full authority is responsible for the organization and management of the whole project construction process, so that the functions of investment, construction, management and use of government investment projects are separated, and the purposes of controlling investment and improving investment benefit and management level are finally achieved through specialized project management.
In the prior art, reference may be made to the chinese patent application publication No. CN105913225A, which discloses a method for managing construction information of construction projects, comprising: dividing the construction project into different nodes according to construction stages; after the start-up condition of each node is met, acquiring and archiving files required by the node according to a preset construction workflow of the node; and finishing the building information management work of the construction project when the work of all the nodes is detected to be finished. Correspondingly, the invention also discloses a construction project building information management system.
The above prior art solutions have the following drawbacks: when a host plans a large project, the whole project is usually distributed to one or more large construction companies, and the large construction companies distribute part of work to small construction companies or construction teams, so that the whole project involves multiple construction companies, the project schedule data collection, arrangement and other work are difficult, and the management system is difficult to operate normally.
Disclosure of Invention
The invention aims to provide a construction project building information management method, which is simple in data collection, can automatically calculate and arrange the construction cost, and can effectively save the time of a host and all large-scale construction companies, small-scale construction companies and construction teams which sub-package the project.
The technical purpose of the invention is realized by the following technical scheme:
a construction project building information management method comprises the following steps:
firstly, establishing a management end: a host establishes a server, and all the responsible persons of large building companies, small building companies and construction teams which sub-package the project download mobile phone APP;
II, completing address registration: the host inputs the company information of all large building companies subpackaging the project into the server, the server establishes a sub-user file and sends the sub-user file into the mobile phone APP of the corresponding responsible person, the corresponding responsible person inputs the information of the small building companies or construction teams subpackaging the project into the mobile phone APP, and the mobile phone APP establishes a sub-user file and sends the sub-user file into the server and the mobile phone APP of the corresponding responsible person;
thirdly, downloading engineering data: the server sends the stored construction cost data and the form template to each mobile phone APP which finishes address registration;
fourthly, information entry: each responsible person regularly fills current engineering information into the form template, the mobile phone APP automatically sequences and calculates the form contents according to the engineering cost data, and the calculated cost information and the current network time are filled into the form;
and fifthly, completing the form: the mobile phone APP of the responsible person of the small building company and the construction team automatically sends the form to the mobile phone APP of the responsible person of the large building company, the mobile phone APP of the responsible person of the large building company automatically adds the received form content to the newly manufactured form, the new form content is calculated, the mobile phone APP of the responsible person of the large building company sends the finally obtained form to the server, and the server stores the received form to wait for the host to check.
By adopting the scheme, the system can automatically generate the form and send the form to the server only by inputting the engineering information into the mobile phone APP by the responsible persons of the large building company, the small building company and the construction team regularly without manual calculation, so that the time of the host and all the large building company, the small building company and the construction team subpackaging the project is saved, and the accuracy of final data arrangement can be ensured because the time is automatically added into the form, each mobile phone APP sends the form independently, and the responsible person is easy to find out which responsible person does not send the form or which form has a problem; the address registration is carried out by registering a large-scale building company, a small-scale building company or a construction team by the server and registering step by step, the company registration speed is high, and the user information is easy to master.
The invention is further configured to: further comprising the steps of:
sixthly, generating a tree diagram: the server sorts the stored sub-user files and sub-user files, associates all sub-user files with the sub-user file of the previous level, and generates a tree diagram to be checked by the host.
By adopting the scheme, the tree diagram enables a host to check the relevance between each building company and the construction team more easily, and files corresponding to the building companies or the construction teams are searched more easily.
The invention is further configured to: the third step also comprises:
and thirdly, the server is in butt joint with the engineering cost professional website through an interface, the server searches the engineering cost professional website and new engineering cost related information in real time, and the information different from the currently stored engineering cost data is stored.
By adopting the scheme, the construction cost data stored in the server is synchronously updated with the construction cost professional website in real time, the construction cost data used by the system during automatic calculation can be kept updated all the time, and the calculation accuracy is ensured.
The invention is further configured to: the third step also comprises:
and thirdly, the server performs text structuralization on the stored construction cost data at regular intervals, and then the original construction cost data is covered by the structuralized construction cost data.
By adopting the scheme, the structured engineering cost data can ensure that the automatic calculation of the system cannot cause problems, and the stability of the system is ensured.
The invention is further configured to: the fifth step also comprises:
and fifthly, the server can be connected with a display screen, a printer or a projector, the server can display the form through the display screen, the server can print the form through the printer, and the server can project the form through the projector.
By adopting the scheme, the host can know the engineering information by watching the information displayed by the display screen, watching the information projected by the projector and checking the report of the paper version printed by the printer, and can check the information by a plurality of people through the projection of the projector, and the report of the paper version is more convenient for data storage.
The invention aims to provide a construction project building information management system, which can automatically arrange and calculate data after each responsible person inputs the data into the system, and can effectively save the time of a host and all large-scale building companies, small-scale building companies and construction teams subcontracting the project.
The technical purpose of the invention is realized by the following technical scheme:
a construction project building information management system, comprising:
the system comprises a main management end, a sub-address establishing module, a sub-information sending module and a main automatic filling module, wherein the main management end comprises a main storage module, a sub-address establishing module, a sub-information sending module and a main automatic filling module;
the main storage module receives and stores input engineering cost data, a main table single template, a sub-table single template and a sub-table single template;
the sub-address establishing module receives sub-user information input from the outside, establishes a sub-user file, and transmits the sub-user file to the main storage module for storage;
the sub information sending module calls the sub user files, the engineering cost data, the sub form templates and the sub form templates stored in the main storage module to transmit to the sub management end;
the total automatic completion module calls a total table single template stored by the total storage module, the total automatic completion module inquires current network time and fills the network time into a total table template, the total automatic completion module calls engineering cost data stored by the total storage module and a complete sub-table with the same network time, the total automatic completion module adds the complete sub-table into the total table template, sorts and sorts the contents of the total table single template according to the engineering cost data, and calculates corresponding cost information to obtain a total table, and the total automatic completion module transmits the total table to the total storage module for storage;
the sub-management end comprises a sub-storage module, a sub-address establishing module, a sub-information sending module, a sub-form filling module, a sub-automatic filling module and a sub-automatic synchronizing module;
the sub storage module receives and stores the sub user files, the engineering cost data, the sub form templates and the sub form templates which are input by the input sub information sending module;
the sub-address establishing module receives sub-user information input from the outside, establishes a sub-user file and transmits the sub-user file to the sub-storage module for storage;
the sub-information sending module calls the sub-user files, the engineering cost data and the sub-table single templates stored by the sub-storage module to transmit to the sub-management end;
the sub-form filling module calls and displays the sub-form single templates stored by the sub-storage module, receives externally input information and fills the information into the sub-form templates to obtain sub-forms, and the sub-form filling module outputs the sub-forms;
the automatic branch filling module receives the branch table, inquires the current network time and fills the network time into the branch table, the automatic branch filling module calls the branch user information stored by the branch storage module and fills the branch table, the automatic branch filling module calls the project cost data stored by the branch storage module and the complete sub-table with the same network time, the automatic branch filling module adds the complete sub-table into the branch table, sorts and sorts the contents of the branch table according to the project cost data, and calculates the corresponding cost information to obtain the complete branch table, and the automatic branch filling module transmits the complete branch table to the branch storage module for storage;
the sub-automatic synchronization module automatically retrieves whether the sub-storage module has newly acquired information or not, and when the sub-synchronization module retrieves the new information, the sub-automatic synchronization module calls the new information stored in the sub-storage module and uploads the new information to the general management terminal;
the child management terminal comprises a child storage module, a child form filling module, a child automatic filling module and a child synchronization module;
the sub storage module receives the sub information sending module and inputs and stores the sub user file, the engineering cost data and the sub table single template;
the sub-form filling module calls the sub-form single template stored by the sub-storage module and displays the sub-form single template, receives externally input information and fills the information into the sub-form template to obtain a sub-form, and the sub-form filling module outputs the sub-form;
the automatic child completion module receives the child form, inquires the current network time and fills the network time into the child form, calls the child user information stored by the child storage module and fills the child form, calls the project cost data stored by the child storage module, sorts the contents in the child form according to the project cost data and calculates the corresponding cost information to obtain a complete child form, and transmits the complete child form to the child storage module for storage;
the sub-synchronization module automatically searches whether the sub-storage module has newly acquired information or not, and when the sub-synchronization module searches the new information, the sub-synchronization module calls the new information stored in the sub-storage module and uploads the new information to the sub-management terminal.
By adopting the scheme, the master management end establishes the file of the large-scale building company, the large-scale building company establishes the file of the small-scale building company or the construction team to form a hierarchical tree network, the small-scale building company or the construction team regularly fills the engineering information into the form and transmits the engineering information to the large-scale building company, the system automatically adds the information of the sub-form into the form when the large-scale building company fills the form, then the large-scale building company transmits the sub-form to the master management end, the master management end arranges the contents of the sub-form and automatically generates the master form for the host to view, and the responsible persons of the large-scale building company, the small-scale building company and the construction team only need to regularly fill the engineering information into the corresponding form template, so that the time of the host and all the large-scale building company, the small-scale building company and the construction team which sub-package the project is saved, and the time is automatically added into the form, the forms are automatically sent by the system and are synchronized, so that the accuracy of final data arrangement can be ensured, which responsible person does not send the forms or which forms have problems can be easily found, the sub-user files are established by the main management end, the sub-user files are established by the sub-management end, the system registration speed is high, and the user information is easy to master.
The invention is further configured to: the general management terminal also comprises a tree diagram generation module, the tree diagram generation module calls the sub-user files and the sub-user files stored in the general storage module, the address network generation module associates all the sub-user files with the sub-user files of the upper level to generate a tree diagram, and the tree diagram generation module transmits the generated tree diagram to the general storage module for storage.
By adopting the scheme, the tree diagram enables a host to check the relevance between each building company and the construction team more easily, and files corresponding to the building companies or the construction teams are searched more easily.
The invention is further configured to: the total management end also comprises a data synchronization module, the data synchronization module is connected with the project cost professional website through an interface, the data synchronization website inquires the project cost related information in the project cost professional website in real time and transmits the inquired project cost related information to the total storage module, the total storage module compares the received project cost related information with the stored project cost data, and the project cost related information different from the stored project cost data is added into the project cost data and is stored.
By adopting the scheme, the construction cost data stored in the main storage module is synchronously updated with the construction cost professional website in real time, the construction cost data used in the automatic calculation of the system can be kept updated all the time, and the calculation accuracy is ensured.
The invention is further configured to: the total management end also comprises a data sorting module, the data sorting module periodically calls the engineering cost data stored in the total storage module, the data sorting module performs text structuralization on the engineering cost data, and then the structured engineering cost data is used for covering the engineering cost data stored in the total storage module.
By adopting the scheme, the structured engineering cost data can ensure that the automatic calculation of the system cannot cause problems, and the stability of the system is ensured.
The invention is further configured to: the general management terminal also comprises a display module, a printing module and a projection module;
the display module comprises a display screen, and the display module calls the general form stored by the general storage module and displays the general form on the display screen;
the printing module comprises a printer, and calls the total form stored by the total storage module and prints the form by the printer;
the projection module comprises a projector, and the projection module calls the total form stored in the total storage module and projects the total form through the projector.
By adopting the scheme, the host can know the engineering information by watching the information displayed by the display screen, watching the information projected by the projector and checking the report of the paper version printed by the printer, and can check the information by a plurality of people through the projection of the projector, and the report of the paper version is more convenient for data storage.
In conclusion, the invention has the following beneficial effects:
1. the responsible persons of the large-scale building company, the small-scale building company and the construction team only need to fill the engineering information into the corresponding form templates regularly, so that the time of a host and all the large-scale building companies, the small-scale building companies and the construction teams which sub-package the project is saved, and the time is automatically added into the forms, and the forms are automatically sent and synchronized by the system, so that the accuracy of final data arrangement can be ensured, which responsible person does not send the forms or which forms have problems can be easily found, the sub-user files are established by the master management end, the sub-user files are established by the sub-management end, the system registration speed is high, and the user information can be easily mastered;
2. the construction cost data stored in the main storage module is synchronously updated with the construction cost professional website in real time, so that the construction cost data used in the automatic calculation of the system can be kept updated all the time, and the calculation accuracy is ensured;
3. the structured engineering cost data can ensure that the automatic calculation of the system cannot cause problems and ensure the stability of the system.
Drawings
FIG. 1 is a block diagram of the overall flow of the first embodiment;
FIG. 2 is an overall system block diagram of the second embodiment;
FIG. 3 is a system block diagram of the outburst total management side in the second embodiment;
FIG. 4 is a system block diagram of the outburst management side in the second embodiment;
fig. 5 is a system block diagram of the sub-management end of the second embodiment.
In the figure, 1, a general management end; 11. a total storage module; 12. a data synchronization module; 121. a data sorting module; 13. a tree diagram generation module; 14. a display module; 141. a display screen; 15. a printing module; 151. a printer; 16. a projection module; 161. a projector; 17. a sub-address establishing module; 18. a sub information sending module; 19. a total automatic completion module; 2. a branch management terminal; 21. a sub-storage module; 22. a sub-address establishing module; 23. a sub information sending module; 24. a sub-form filling module; 25. dividing an automatic filling module; 26. a sub-automatic synchronization module; 3. a sub-management terminal; 31. a sub-storage module; 32. a sub-form filling module; 33. the child automatically completes the module; 34. and a sub-synchronization module.
Detailed Description
The first embodiment is as follows: a construction project building information management method, as shown in FIG. 1, includes the following steps:
step one, establishing a management end: firstly, a host establishes a server, the host sends mobile phone APP to mobile phones of all the responsible persons of the large building company which sub-packages the project, and the responsible persons of the large building company download and install the mobile phone APP. And then after determining that the small building company or construction team of the project is packaged in a sub-package manner, the mobile phone of the responsible person of the small building company or construction team sends the mobile phone APP, and the responsible person of the small building company or construction team downloads and installs the mobile phone APP.
Step two, finishing address registration: the host inputs the company information of all large building companies subpackaging the project into the server, the server establishes the sub-user files and sends the sub-user files into the mobile phone APP corresponding to the responsible person, the corresponding responsible person inputs the information of the small building companies or construction teams subpackaging the project into the mobile phone APP, and the mobile phone APP establishes the sub-user files and sends the sub-user files into the server and the mobile phone APP corresponding to the responsible person. The server collects and stores the sub-user profiles and the sub-user profiles.
Step three, downloading engineering data: the server stores the construction cost data. The server is connected with the project cost professional website through an interface, searches the project cost professional website and the new project cost related information in real time, and stores the information different from the currently stored project cost data. The server carries out text structuralization on the stored construction cost data at regular intervals, and then the original construction cost data is covered by the structuralized construction cost data. And after the second step is finished, the host control server sends the stored engineering cost data and the form template to each mobile phone APP which finishes address registration.
Step four, information input: each responsible person regularly fills the current project information into the form template, the mobile phone APP automatically sequences and calculates the form contents according to the project cost data, and the calculated cost information and the current network time are filled into the form.
And fifthly, completing the form: the mobile phone APP of the responsible person of the small building company and the construction team automatically sends the form to the mobile phone APP of the responsible person of the large building company, the mobile phone APP of the responsible person of the large building company automatically adds the received form content to the newly manufactured form, and then new form content is calculated. The mobile phone APP of a person in charge of a large-scale building company sends the finally obtained forms to the server, if the server receives a plurality of forms, all the forms are sorted, total engineering cost information is calculated, a total form is produced, and the server stores the received forms and the obtained total form to be checked by a sponsor.
The server can be connected to the display 141, the printer 151, or the projector 161, the server can display the form through the display 141, the server can print the form through the printer 151, and the server can project the form through the projector 161. The host can know the engineering information by watching the information displayed by the display screen 141, the information projected by the projector 161 and the report of the paper version printed by the printer 151, and can more conveniently view the information by projecting through the projector 161 and simultaneously view the information by a plurality of people, and the report of the paper version is more convenient for data storage.
Sixthly, generating a tree diagram: the server sorts the stored sub-user files and sub-user files, associates all sub-user files with the sub-user file of the previous level, and generates a tree diagram to be checked by the host. The host can check the relevance between each building company and the construction team through the tree diagram, and the archives of the corresponding building companies or construction teams are easier to search.
The system can automatically generate the form and send the form to the server only by inputting the engineering information into the mobile phone APP by the responsible persons of the large building company, the small building company and the construction team regularly without manual calculation, so that the time of the host and all the large building company, the small building company and the construction team which subpackage the project is saved, the accuracy of final data arrangement can be ensured because the time is automatically added into the form, each mobile phone APP sends the form independently, and the responsible person can be found out easily that the form is not sent or the form is in trouble; the address registration is carried out by registering a large-scale building company, a small-scale building company or a construction team by the server and registering step by step, the company registration speed is high, and the user information is easy to master.
Example two: a construction project building information management system, as shown in FIG. 2, includes a main management terminal 1 installed at a host, a plurality of sub-management terminals 2 installed at a large construction company, and a plurality of sub-management terminals 3 installed at a small construction company or a construction team. Each large-scale building company corresponds to a sub-management end 2, and each small-scale building company or construction team corresponds to a sub-management end 3.
As shown in fig. 3, the total management terminal 1 includes a total storage module 11, a material synchronization module 12, a material arrangement module 121, a tree diagram generation module 13, a display module 14, a printing module 15, a projection module 16, a sub-address creation module 17, a sub-information transmission module 18, and a total automatic completion module 19. The total storage module 11 receives and stores the input project cost data, the total table single-mode board, the sub-table single-mode board and the sub-table single-mode board.
As shown in fig. 3, the data synchronization module 12 is connected to the construction cost professional website via an interface, the data synchronization website queries the construction cost related information in the construction cost professional website in real time and transmits the queried construction cost related information to the total storage module 11, the total storage module 11 compares the received construction cost related information with the stored construction cost data, and adds the construction cost related information different from the stored construction cost data to the construction cost data for storage. The data sorting module 121 periodically calls the construction cost data stored in the main storage module 11, the data sorting module 121 performs text structurization on the construction cost data, and then the construction cost data stored in the main storage module 11 is covered by the structurized construction cost data. The construction cost data stored in the main storage module 11 is synchronously updated with the construction cost professional website in real time, so that the construction cost data used in the automatic calculation of the system can be always kept updated, and the calculation accuracy is ensured.
As shown in fig. 3, the sub-address creating module 17 receives the sub-user information inputted from the outside and creates a sub-user profile, and transmits the sub-user profile to the total storage module 11 for storage. The sub information sending module 18 calls the sub user file, the project cost data, the sub form template and the sub form template stored in the main storage module 11 to transmit to the sub management terminal 2. The host inputs company information of each large construction company through the head office 1 to establish a sub-user profile.
As shown in fig. 3 and 4, the minute management terminal 2 includes a minute storage module 21, a sub-address establishing module 22, a sub-information transmitting module 23, a minute form filling module 24, a minute automatic filling module 25, and a minute automatic synchronizing module 26. The sub-storage module 21 receives and stores the sub-user profile, the construction cost data, the sub-form template and the sub-form template which are input by the input sub-information sending module 18. The sub-address creating module 22 receives the sub-user information inputted from the outside and creates a sub-user file, and transmits the sub-user file to the sub-storage module 21 for storage. The sub information sending module 23 calls the sub user profile, the engineering cost data and the sub table single mode board stored in the sub storage module 21 to transmit to the sub management terminal 3. The person in charge of the large construction company creates the sub-user profile by inputting information of the small construction company or construction team that subcontracts the project through the management terminal 2.
As shown in fig. 4 and 5, the child management terminal 3 includes a child storage module 31, a child form filling module 32, a child automatic filling module 33, and a child synchronization module 34. The sub storage module 31 receives and stores the sub user profile, the construction cost data and the sub table template input by the sub information sending module 23. The sub-form filling module 32 calls the sub-form template stored in the sub-storage module 31 and displays the sub-form template, the sub-form filling module 32 receives information input from the outside and fills the information into the sub-form template to obtain a sub-form, and the sub-form filling module 32 outputs the sub-form.
As shown in fig. 4 and 5, the sub automatic completion module 33 receives the sub form, and the sub automatic completion module 33 queries the current network time and fills the network time into the sub form. The sub automatic completion module 33 calls the sub user information stored in the sub storage module 31 and fills the sub user information into the sub form, the sub automatic completion module 33 calls the construction cost data stored in the sub storage module 31, and the sub automatic completion module 33 sorts the contents in the sub form according to the construction cost data and calculates the corresponding construction cost information to obtain a complete sub form. The sub automatic completion module 33 transmits the complete sub-report to the sub storage module 31 for storage. The sub-synchronization module 34 automatically searches whether the sub-storage module 31 has newly acquired information, and when the sub-synchronization module 34 retrieves new information, calls the new information stored in the sub-storage module 31 and uploads the new information to the sub-management terminal 2. The responsible person of the small-sized building company or construction team fills the engineering information into the sub-report, and the sub-management terminal 3 automatically sends the completed sub-report to the sub-management terminal 2.
As shown in fig. 3 and 4, the sub-form filling module 24 calls and displays the sub-form single template stored in the sub-storage module 21, the sub-form filling module 24 receives externally input information and fills the information into the sub-form template to obtain a sub-form, and the sub-form filling module 24 outputs the sub-form. The sub automatic filling module 25 receives the sub form, the sub automatic filling module 25 inquires the current network time and fills the network time into the sub form, and the sub automatic filling module 25 calls the sub user information stored in the sub storage module 21 and fills the sub user information into the sub form. The sub automatic completion module 25 calls the project cost data stored in the sub storage module 21 and the complete sub-table of the same network time. The branch automatic completion module 25 adds the complete sub-form into the branch form, sorts and sorts the contents of the sub-form according to the project cost data, and calculates the corresponding cost information to obtain the complete sub-form. The sub automatic completion module 25 transmits the complete sub report table to the sub storage module 21 for storage. The sub automatic synchronization module 26 automatically retrieves whether the sub storage module 21 has newly acquired information, and when the sub synchronization module retrieves new information, calls the new information stored in the sub storage module 21 and uploads the new information to the head office 1. The responsible person of the large-scale building company fills the project information into the branch report, and the branch management terminal 2 automatically sends the branch report to the main management terminal 1.
As shown in fig. 3 and 4, the total storage module 11 receives the sub report table sent by the sub management terminal 2. The total automatic completion module 19 calls the total form template stored in the total storage module 11, and the total automatic completion module 19 queries the current network time and fills the network time into the total form template. The total automatic completion module 19 calls the project cost data stored in the total storage module 11 and the complete sub-table of the same network time. The total automatic completion module 19 adds the complete sub-form into the total form template, sorts and sorts the contents of the total form template according to the engineering cost data, and calculates the corresponding cost information to obtain the total form. The total automatic completion module 19 transmits the total form to the total storage module 11 for storage.
As shown in fig. 3, the display module 14 includes a display screen 141, and the display module 14 calls the summary form stored in the summary storage module 11 and displays the summary form on the display screen 141. The print module 15 includes a printer 151, and the print module 15 calls the total form stored in the total storage module 11 and prints it by the printer 151. The projection module 16 includes a projector 161, and the projection module 16 calls the total form stored in the total storage module 11 and projects the total form by the projector 161. The host can know the engineering information by watching the information displayed by the display screen 141, the information projected by the projector 161 and the report of the paper version printed by the printer 151, and can more conveniently view the information by projecting through the projector 161 and simultaneously view the information by a plurality of people, and the report of the paper version is more convenient for data storage.
As shown in fig. 3, the treemap generation module 13 calls the sub-user profiles and the sub-user profiles stored in the main storage module 11, the address network generation module associates all sub-user profiles with the sub-user profile at the previous stage thereof to generate a treemap, and the treemap generation module 13 transmits the generated treemap to the main storage module 11 for storage. The tree diagram enables a host to easily check the relevance between each building company and a construction team, and files of the corresponding building company or construction team are easily searched.
The embodiments of the present invention are preferred embodiments of the present invention, and the scope of the present invention is not limited by these embodiments, so: all equivalent changes made according to the structure, shape and principle of the invention are covered by the protection scope of the invention.

Claims (10)

1. A construction project building information management method is characterized by comprising the following steps:
firstly, establishing a management end: a host establishes a server, and all the responsible persons of large building companies, small building companies and construction teams which sub-package the project download mobile phone APP;
II, completing address registration: the host inputs the company information of all large building companies subpackaging the project into the server, the server establishes a sub-user file and sends the sub-user file into the mobile phone APP of the corresponding responsible person, the corresponding responsible person inputs the information of the small building companies or construction teams subpackaging the project into the mobile phone APP, and the mobile phone APP establishes a sub-user file and sends the sub-user file into the server and the mobile phone APP of the corresponding responsible person;
thirdly, downloading engineering data: the server sends the stored construction cost data and the form template to each mobile phone APP which finishes address registration;
fourthly, information entry: each responsible person regularly fills current engineering information into the form template, the mobile phone APP automatically sequences and calculates the form contents according to the engineering cost data, and the calculated cost information and the current network time are filled into the form;
and fifthly, completing the form: the mobile phone APP of the responsible person of the small building company and the construction team automatically sends the form to the mobile phone APP of the responsible person of the large building company, the mobile phone APP of the responsible person of the large building company automatically adds the received form content to the newly manufactured form, the new form content is calculated, the mobile phone APP of the responsible person of the large building company sends the finally obtained form to the server, and the server stores the received form to wait for the host to check.
2. The method for managing construction project building information according to claim 1, further comprising the steps of:
sixthly, generating a tree diagram: the server sorts the stored sub-user files and sub-user files, associates all sub-user files with the sub-user file of the previous level, and generates a tree diagram to be checked by the host.
3. The method for managing the construction project building information according to claim 1, wherein the third step further comprises:
and thirdly, the server is in butt joint with the engineering cost professional website through an interface, the server searches the engineering cost professional website and new engineering cost related information in real time, and the information different from the currently stored engineering cost data is stored.
4. The method for managing the construction project building information according to claim 3, wherein the third step further comprises:
and thirdly, the server performs text structuralization on the stored construction cost data at regular intervals, and then the original construction cost data is covered by the structuralized construction cost data.
5. The method for managing the construction project building information according to claim 1, wherein the step five further comprises:
and a server can be connected with the display screen (141), the printer (151) or the projector (161), the server can display the form through the display screen (141), the server can print the form through the printer (151), and the server can project the form through the projector (161).
6. A construction project building information management system, comprising:
the system comprises a general management terminal (1), wherein the general management terminal (1) comprises a general storage module (11), a sub-address establishing module (17), a sub-information sending module (18) and a general automatic completion module (19);
the main storage module (11) receives and stores input engineering cost data, a main table single template, a sub-table single template and a sub-table single template;
the sub-address establishing module (17) receives sub-user information input from the outside, establishes a sub-user file, and transmits the sub-user file to the main storage module (11) for storage;
the sub-information sending module (18) calls the sub-user files, the engineering cost data, the sub-form templates and the sub-form templates stored in the main storage module (11) and transmits the sub-user files, the engineering cost data, the sub-form templates and the sub-form templates to the sub-management end (2);
the total automatic completion module (19) calls a total form template stored by the total storage module (11), the total automatic completion module (19) inquires current network time and fills the network time into the total form template, the total automatic completion module (19) calls the project cost data stored by the total storage module (11) and a complete sub-form with the same network time, the total automatic completion module (19) adds the complete sub-form into the total form template, sorts and arranges the contents of the total form template according to the project cost data, calculates corresponding cost information at the same time to obtain a total form, and the total automatic completion module (19) transmits the total form to the total storage module (11) for storage;
the system comprises a branch management terminal (2), wherein the branch management terminal (2) comprises a branch storage module (21), a sub-address establishing module (22), a sub-information sending module (23), a branch form filling module (24), a branch automatic filling module (25) and a branch automatic synchronization module (26);
the sub storage module (21) receives and stores the sub user files, the project cost data, the sub form templates and the sub form templates which are input by the input sub information sending module (18);
the sub-address establishing module (22) receives sub-user information input from the outside, establishes a sub-user file, and transmits the sub-user file to the sub-storage module (21) for storage;
the sub-information sending module (23) calls the sub-user files, the engineering cost data and the sub-table single templates stored in the sub-storage module (21) to transmit to the sub-management terminal (3);
the sub-form filling module (24) calls and displays the sub-form single templates stored by the sub-storage module (21), the sub-form filling module (24) receives externally input information and fills the information into the sub-form templates to obtain sub-forms, and the sub-form filling module (24) outputs the sub-forms;
the automatic branch filling module (25) receives the branch table, the automatic branch filling module (25) inquires the current network time and fills the network time into the branch table, the automatic branch filling module (25) calls the branch user information stored in the branch storage module (21) and fills the branch table, the automatic branch filling module (25) calls the project cost data stored in the branch storage module (21) and the complete sub-table with the same network time, the automatic branch filling module (25) adds the complete sub-table into the branch table and sorts the contents of the branch table according to the project cost data, meanwhile, the corresponding cost information is calculated to obtain the complete branch table, and the automatic branch filling module (25) transmits the complete branch table to the branch storage module (21) for storage;
the sub-automatic synchronization module (26) automatically retrieves whether the sub-storage module (21) has newly acquired information, and when the sub-synchronization module retrieves the new information, calls the new information stored in the sub-storage module (21) and uploads the new information to the general management terminal (1);
the sub-management terminal (3), the sub-management terminal (3) comprises a sub-storage module (31), a sub-form filling module (32), a sub-automatic filling module (33) and a sub-synchronization module (34);
the sub storage module (31) receives the sub information sending module (23) and inputs and stores the sub user file, the engineering cost data and the sub table single module board;
the sub-form filling module (32) calls and displays the sub-form template stored by the sub-storage module (31), the sub-form filling module (32) receives externally input information and fills the information into the sub-form template to obtain a sub-form, and the sub-form filling module (32) outputs the sub-form;
the automatic sub-filling module (33) receives the sub-form, the automatic sub-filling module (33) inquires the current network time and fills the network time into the sub-form, the automatic sub-filling module (33) calls the sub-user information stored by the sub-storage module (31) and fills the sub-form, the automatic sub-filling module (33) calls the engineering cost data stored by the sub-storage module (31), the automatic sub-filling module (33) sorts the contents in the sub-form according to the engineering cost data and calculates the corresponding cost information to obtain a complete sub-form, and the automatic sub-filling module (33) transmits the complete sub-form to the sub-storage module (31) for storage;
the sub-synchronization module (34) automatically retrieves whether the sub-storage module (31) has newly acquired information, and when the sub-synchronization module (34) retrieves the new information, the sub-synchronization module calls the new information stored in the sub-storage module (31) and uploads the new information to the sub-management terminal (2).
7. The construction project building information management system according to claim 6, wherein: the general management terminal (1) further comprises a tree diagram generation module (13), the tree diagram generation module (13) calls the sub-user files and the sub-user files stored in the general storage module (11), the address network generation module associates all the sub-user files with the sub-user files of the previous level to generate a tree diagram, and the tree diagram generation module (13) transmits the generated tree diagram to the general storage module (11) for storage.
8. The construction project building information management system according to claim 6, wherein: the general management terminal (1) further comprises a data synchronization module (12), the data synchronization module (12) is connected with the engineering cost professional website through an interface, the data synchronization website inquires the engineering cost related information in the engineering cost professional website in real time and transmits the inquired engineering cost related information to the general storage module (11), the general storage module (11) compares the received engineering cost related information with the stored engineering cost data, and the engineering cost related information different from the stored engineering cost data is added into the engineering cost data and stored.
9. The construction project building information management system according to claim 8, wherein: the general management terminal (1) further comprises a data sorting module (121), the data sorting module (121) calls the engineering cost data stored in the general storage module (11) periodically, the data sorting module (121) conducts text structurization on the engineering cost data, and then the structured engineering cost data are used for covering the engineering cost data stored in the general storage module (11).
10. The construction project building information management system according to claim 1, characterized in that: the general management terminal (1) also comprises a display module (14), a printing module (15) and a projection module (16);
the display module (14) comprises a display screen (141), and the display module (14) calls the total form stored by the total storage module (11) and displays the total form on the display screen (141);
the printing module (15) comprises a printer (151), and the printing module (15) calls the total form stored in the total storage module (11) and prints the total form through the printer (151);
the projection module (16) comprises a projector (161), and the projection module (16) calls the total form stored in the total storage module (11) and projects the total form through the projector (161).
CN201911031550.9A 2019-10-28 2019-10-28 Construction project building information management method and system Pending CN110991982A (en)

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