CN114638595A - Complexity-optimized construction scheme compiling system and application method thereof - Google Patents

Complexity-optimized construction scheme compiling system and application method thereof Download PDF

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CN114638595A
CN114638595A CN202210374187.6A CN202210374187A CN114638595A CN 114638595 A CN114638595 A CN 114638595A CN 202210374187 A CN202210374187 A CN 202210374187A CN 114638595 A CN114638595 A CN 114638595A
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李妍
张合适
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China Construction Second Engineering Bureau Co Ltd
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Abstract

The invention discloses a complexity-optimized construction scheme compiling system and an application method thereof, wherein the scheme compiling system comprises a scheme type data module, an acceptance key point classification data module, a scheme compiling requirement module and a flow module; the scheme compiling requirement module comprises a scheme type submodule and an acceptance point classification submodule. When the method is applied, the constructed project is favorably decomposed and standardized to be summarized through establishing the scheme type data module and the acceptance key point classification data module; through the application of the scheme type submodule and the acceptance main point classification submodule, the corresponding scheme and the acceptance main points are distributed through convenient ID, and the node can be approved and revised through linkage with the process module. Independent establishment is provided for the first application of new, special and complex schemes through a newly added scheme type submodule; and performing associated reminding for the relevant responsible persons of all levels and the checking and accepting key points of each process through the to-be-handled submodule.

Description

Complexity-optimized construction scheme compiling system and application method thereof
Technical Field
The invention belongs to the technical field of construction management, and particularly relates to a complexity-optimized construction scheme compiling system and an application method thereof.
Background
For construction management of construction enterprises, a large number of under-construction or established projects need to be subjected to statistics, declaration and process management. The construction projects of large enterprises exceed dozens or even hundreds, and each project needs to write a large number of technical schemes for guiding actual construction aiming at various aspects of engineering construction, safety, quality, innovation and the like. The number of compiling personnel is large, the number of the compiled schemes is large, and the problem that how to compile each scheme cannot be instructed to each compiler in real time exists; when the builder finishes the scheme, if various problems in the scheme are found during examination and approval by a superior leader, the problem that the superior leader cannot communicate with the builder in time exists; so the method of compiling the construction scheme complexity is optimized through the system design.
Disclosure of Invention
The invention provides an optimized complex construction scheme compiling system which is used for solving the technical problems of how to conveniently and standardize scheme compiling, process control, feedback mechanism setting and the like in the process of managing a large number of engineering projects.
In order to realize the purpose, the invention adopts the following technical scheme:
an application method for optimizing a complex construction scheme compiling system comprises the following specific steps:
step one, establishing a scheme type data module, and correspondingly setting titles, contents and example attachment items required by compilation under the scheme type data module;
step two, establishing an acceptance key point classification data module, and setting an acceptance classification name, an acceptance key point title, acceptance key point content and example accessory items in the acceptance key point classification data module;
step three, acquiring a scheme type ID based on each scheme type in the scheme to be compiled, matching the scheme type ID with the scheme type ID in the scheme type data module in the step one, capturing a title, content and an attachment required by the scheme compilation after matching, and displaying and applying the title, the content and the attachment, thereby generating a scheme type submodule;
after the scheme type sub-module is determined, based on acceptance key points in each scheme type, matching is carried out by selecting the classification ID of the acceptance key points and the classification ID in the acceptance key point classification data module in the step two, and after matching, titles, contents and accessories of the acceptance key points of the scheme are captured and displayed for application, so that an acceptance key point classification sub-module is generated; combining the scheme type submodule and the acceptance point classification submodule to generate a scheme compiling requirement module;
setting a corresponding flow module based on a scheme compiling requirement module, setting an approval flow sub-module in the flow module, setting a flow name entry in the approval flow sub-module, and setting an added project approval end, a division approval end and a company approval end; the sub-module of the approval process is internally provided with an approval post ID and generates an authorization project ID corresponding to the scheme compiling requirement module; after the scheme compiling requirement module finishes filling, the system matches the current project ID with the configured authorized project ID to acquire a matched process touch approval process sub-module;
for the sub-module of the approval process, the approval end operates to read the annotation interface through the scheme, and fills annotation opinions aiming at problematic contents in the annotation function;
and step seven, the scheme compiling end receives the comments fed back by the approval end, and revising and/or compiling the scheme in the system according to the comments.
Further, the implemented projects are collected, a project collection database is established, and the projects in the project collection database are decomposed by taking project division engineering as a standard; and keeping the project items which are repeated twice or more after the decomposition as one item in the project type to be added into the project type data module, and taking the rest project items with unicity as other project modules to be listed independently or not to be listed independently.
Further, after the scheme type sub-module is established, various technical scheme compilation requirement items are compiled and configured for each scheme type, and the scheme compilation item requirements comprise item settings of a technical scheme management method, scheme management implementation rules, scheme compilation and implementation requirements, key cautionary matters and sample scheme requirement rules;
the scheme compiling requirement module is also provided with a newly-added scheme type sub-module, and the newly-added scheme type sub-module comprises a processing scheme suitable for a new project, a new process or a special environment; the newly added scheme type module is applied by a project end, and is approved and established by a company general end.
Further, the scheme types are formulated according to the sub-construction projects related in different construction stages in the construction process, and the items comprise construction plan types, construction temporary types, earthwork foundation pits types, tower cranes types, hoisting and hoisting types, vertical transportation machinery, detection types, concrete, steel bars, templates, scaffolds, steel structures, water proofing, partition walls, decoration, electromechanical synthesis, building water supply and drainage and heating projects, ventilation and air conditioning projects, building electrical projects, intelligent building projects, municipal road subgrades, road surface projects, bridge constructions, underground projects, municipal road pipeline projects, municipal road auxiliary projects, indoor, outdoor and seasonal schemes and safety schemes.
Further, the procedures involved in the classified construction are defined based on the scheme type submodule, and definition item compilation is carried out on the acceptance key points in each procedure, so that the consistency of the actual construction result and the scheme compilation is ensured;
making specific item compilation of acceptance key points based on the summary of procedure construction experience and internal management requirements when the acceptance key points related to different construction procedures are inconsistent;
the specific items under the acceptance key point classification sub-modules of different scheme types are set, and the specific items comprise an examination and approval program, an demonstration process, various key technical key points related to each scheme type, a construction process and various items at the bottom of delivery, so that the specific items of the acceptance key point classification sub-modules are established.
Further, in the third step and the fourth step, a scheme type submodule and an acceptance key point classification submodule are established, each scheme type submodule is sequentially numbered and sequenced according to the construction process sequence, and the acceptance key point classification submodule under each scheme type submodule is sequentially numbered and sequenced according to the corresponding construction process; the scheme compiling requirement module is also provided with a search box, the search box corresponds to each specific item in the scheme type submodule and the acceptance key point classification submodule, and item positioning is carried out through names or numbers.
Furthermore, a to-do sub-module is also configured in the flow module, the to-do sub-modules are arranged at the compiling end and the examining and approving end, and priority sorting is carried out according to the time of the to-do tasks; the sub-module to be handled is also associated with the corresponding responsible end of each procedure item in the acceptance point classification sub-module.
Further, the optimized complexity construction scheme compiling system comprises a scheme type data module, an acceptance key point classification data module, a scheme compiling requirement module and a flow module;
the scheme compiling requirement module comprises a scheme type submodule and an acceptance point classification submodule; the scheme compiling requirement module is in signal connection with the flow module;
the scheme type data module is used for receiving correspondingly decomposed scheme type data in the project collection database and generating a corresponding scheme type ID, and the scheme type data module is correspondingly connected with the scheme type submodule;
the acceptance key point classification data module is used for receiving data of each key technical key point, construction process and each item at the bottom of intersection in the project classification in the scheme type, and is correspondingly connected with the acceptance key point classification submodule;
the process module comprises an approval process submodule, and the approval process submodule is used for setting process name entries, and setting an added project approval end, a branch company approval end and a company approval end; and the approval process sub-module is used for embedding the approval post ID and generating an authorization project ID corresponding to the scheme compiling requirement module, and acquiring matched process touch.
Furthermore, the scheme compilation requirement module is also provided with a newly added scheme type submodule which is used for receiving scheme type data suitable for new projects, new processes or special environments.
Furthermore, the flow module is also provided with a to-do submodule, and the to-do submodule receives instructions of the compiling end and the examining and approving end and is used for carrying out priority sequencing according to the time of the to-do tasks;
the sub-module to be handled is also used for receiving data instructions of relevant responsible ends corresponding to all process items in the associated acceptance key point classification sub-module.
The invention has the beneficial effects that:
1) according to the construction method, through the establishment of the scheme type data module and the acceptance key point classification data module, the constructed projects are favorably decomposed and standardized and summarized, and the application of subsequent construction and the convenient construction scheme compilation are favorably realized;
2) the invention is beneficial to corresponding schemes and acceptance key points through convenient ID distribution by the application of the scheme type submodule and the acceptance key point classification submodule, and can revise each node by examination and approval and opinion feedback through linkage with the process module
3) The invention provides independent compilation for the first application of new, special and complex schemes by adding the scheme type sub-module; the sub-module to be handled is used for carrying out association reminding on all levels and relevant responsible persons of the acceptance key points of all the procedures, so that the accuracy and timeliness of scheme compilation and implementation are further ensured.
Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by the practice of the invention; the primary objects and other advantages of the invention may be realized and attained by the instrumentalities particularly pointed out in the specification.
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FIG. 1 is a flow chart of an application process of an optimization complexity construction scheme compilation system.
FIG. 2 is a schematic diagram of an optimization complexity construction scheme compilation system.
Detailed Description
Taking a certain company as an example, hundreds of technical schemes required to be compiled for a project are classified through design, and after classification, a headquarter compiles and configures compiling requirements of various types of technical schemes according to each type. Referring to fig. 1 and 2, an optimized complexity construction plan compiling system includes a plan type data module, an acceptance key point classification data module, a plan compiling requirement module, and a flow module.
In the embodiment, the scheme compiling requirement module comprises a scheme type submodule and an acceptance point classification submodule; the scheme compiling requirement module is in signal connection with the flow module. The scheme type data module is used for receiving correspondingly decomposed scheme type data in the project collection database and generating a corresponding scheme type ID, and the scheme type data module is correspondingly connected with the scheme type submodule.
In this embodiment, the data of each item at the end of each key technical essential, construction process and the intersection in the subentry in the scheme classification are used for accepting to accept the main points classification data module, and the main points classification data module of acceptance is connected with the main points classification submodule of acceptance and acceptance corresponds. The process module comprises an approval process submodule used for setting process name entries, an added project approval end, a branch company approval end and a company approval end; and the approval process sub-module is used for embedding the approval post ID and generating an authorization project ID corresponding to the scheme compiling requirement module, and acquiring matched process touch.
In the embodiment, when a scheme maker compiles the scheme, the system automatically loads various information under the key points of the scheme compiling requirement and the scheme acceptance procedure, and the scheme maker can easily complete the compiling work of the construction scheme by giving the compiling requirement and the key point information according to the scheme.
By designing the marking capability of the scheme material for reviewing, not only can the scheme maker mark key points and key points in the scheme on line, but also all levels of responsible persons can review the problems in the scheme in the approval process, and the review data can be fed back to the scheme maker in real time so that the scheme maker revises the scheme.
In this embodiment, the scheme compiling requirement module is further provided with a newly added scheme type sub-module, and the newly added scheme type sub-module is configured to receive scheme type data adapted to a new project, a new process, or a special environment. The method is convenient to set up a special and novel scheme with uniqueness and specificity, can directly compile scheme types and acceptance points, and does not need to match. The newly added scheme types can be collected into the project collection database and can be used as common schemes for decomposition and matching after being applied for multiple times.
In this embodiment, the flow module is further configured with a to-do submodule, and the to-do submodule receives instructions from the compiling end and the examining and approving end and is used for performing priority sequencing according to the time of the to-do tasks; the to-do submodule is also used for receiving the data instruction of the corresponding responsible end of each procedure item in the associated acceptance point classification submodule.
An application method of the complexity-optimized construction scheme compiling system is further described with reference to fig. 1 and fig. 2, and the specific steps are as follows:
step one, establishing a scheme type data module, and correspondingly setting titles, contents and example attachment items required by compilation under the scheme type data module.
Collecting implemented projects, establishing a project collection database, and decomposing the projects in the project collection database by taking project division engineering as a standard; and keeping the project items which are repeated twice or more after the decomposition as one item in the project type to be added into the project type data module, and taking the rest project items with unicity as other project modules to be listed independently or not to be listed independently.
After the scheme type submodule is established, various technical scheme compiling requirement items are compiled and configured for each scheme type, and the scheme compiling item requirements comprise item settings of technical scheme management methods, scheme management implementation rules, scheme compiling and implementation requirements, key cautions and sample scheme requirement rules.
The system comprises a scheme establishment requirement module, a scheme selection module and a scheme selection module, wherein the scheme establishment requirement module is also provided with a newly added scheme type sub-module which comprises a processing scheme suitable for a new project, a new process or a special environment; the newly added scheme type module is applied by a project end, and is approved and established by a company general end.
The scheme type is formulated according to the project construction engineering involved in different construction stages in the construction process, and the items comprise construction plan type, construction type, earthwork foundation pit type, tower crane type, hoisting and hoisting type, vertical transportation machinery, detection type, concrete, reinforcing steel bars, templates, scaffolds, steel structures, water proofing, partition walls, decoration, electromechanical synthesis, building water supply and drainage and heating engineering, ventilation and air conditioning engineering, building electrical engineering, intelligent building engineering, municipal road subgrade, road surface engineering, bridge and culvert engineering, underground engineering, municipal road pipeline engineering, municipal road auxiliary engineering, indoor, outdoor, seasonal schemes and safety schemes.
And step two, establishing an acceptance key point classification data module, and setting a name containing an acceptance classification, an acceptance key point title, acceptance key point content and example accessory items in the acceptance key point classification data module.
And defining the procedures involved in the classified construction based on the scheme type submodule, and compiling definition items of acceptance points in each procedure to ensure that the actual construction result is consistent with that in scheme compilation.
And making specific item compilation of acceptance points based on the summary of process construction experience and internal management requirements when the acceptance points related to different construction processes are inconsistent.
The specific items under the acceptance key point classification sub-modules of different scheme types are set, and the specific items comprise an examination and approval program, an demonstration process, various key technical key points related to each scheme type, a construction process and various items at the bottom of delivery, so that the specific items of the acceptance key point classification sub-modules are established.
For example, the acceptance key points of tower cranes subdivide the tower cranes into tower grouping operation, a tower crane hoisting scheme, a tower crane wall attachment scheme and a lattice tower crane foundation; wherein, the key process items included in the tower group operation are the tower group operation process and the tower crane jacking process before the tower group operation construction; the tower crane hoisting scheme comprises the key process items of hoisting material entering, before the tower crane is installed and the hoisting tool enters, before the hoisting operation and in the hoisting and hoisting work; the tower crane wall-attached scheme comprises the key process items of attaching layer construction, before wall-attached rod installation and after wall-attached installation; the lattice type tower crane foundation comprises the key process items of construction of the tower crane foundation, concrete pouring of the tower crane foundation and concrete pouring completion.
From this, can set up to the scheme of adding into to acceptance main points according to actual construction demand when selecting for use the categorised submodule piece of acceptance main points, carry out process control.
Step three, acquiring a scheme type ID based on each scheme type in the scheme to be compiled, matching the scheme type ID with the scheme type ID in the scheme type data module in the step one, capturing titles, contents and accessories required by the scheme compilation after matching, and displaying and applying the titles, the contents and the accessories, thereby generating a scheme type submodule;
after the scheme type sub-module is determined, based on acceptance key points in each scheme type, matching is carried out by selecting the classification ID of the acceptance key points and the classification ID in the acceptance key point classification data module in the step two, and after matching, titles, contents and accessories of the acceptance key points of the scheme are captured and displayed for application, so that an acceptance key point classification sub-module is generated; and combining the scheme type submodule and the acceptance point classification submodule to generate a scheme compiling requirement module.
Establishing a scheme type submodule and an acceptance main point classification submodule in the third step and the fourth step, wherein each scheme type submodule is sequentially numbered and sequenced according to the construction process sequence, and the acceptance main point classification submodule belonging to each scheme type submodule is sequentially numbered and sequenced according to the corresponding construction process; the scheme compiling requirement module is also provided with a search box, the search box corresponds to each specific item in the scheme type submodule and the acceptance key point classification submodule, and item positioning is carried out through names or numbers.
Setting a corresponding flow module based on a scheme compiling requirement module, setting an approval flow sub-module in the flow module, setting a flow name entry in the approval flow sub-module, and setting an added project approval end, a division approval end and a company approval end; the sub-module of the approval process is internally provided with an approval post ID and generates an authorization project ID corresponding to the scheme compiling requirement module; after the scheme compiling requirement module finishes filling, the system matches the current project ID with the configured authorized project ID, and acquires a matched process touch approval process sub-module.
And step six, for the sub-module of the approval process, the approval end operates to read the annotation interface through the scheme, and fills annotation opinions aiming at problematic contents in the annotation function.
And step seven, the scheme compiling end receives the comments fed back by the approval end, and revising and/or compiling the scheme in the system according to the comments.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that may be made by those skilled in the art within the technical scope of the present invention will be covered by the scope of the present invention.

Claims (10)

1. An application method for optimizing a complex construction scheme compiling system is characterized by comprising the following specific steps:
step one, establishing a scheme type data module, and correspondingly setting titles, contents and example attachment items required by compilation under the scheme type data module;
step two, establishing an acceptance key point classification data module, and setting an acceptance classification name, an acceptance key point title, acceptance key point content and example accessory items in the acceptance key point classification data module;
step three, acquiring a scheme type ID based on each scheme type in the scheme to be compiled, matching the scheme type ID with the scheme type ID in the scheme type data module in the step one, capturing a title, content and an attachment required by the scheme compilation after matching, and displaying and applying the title, the content and the attachment, thereby generating a scheme type submodule;
after the scheme type sub-module is determined, based on acceptance key points in each scheme type, matching is carried out by selecting the classification ID of the acceptance key points and the classification ID in the acceptance key point classification data module in the step two, and after matching, titles, contents and accessories of the acceptance key points of the scheme are captured and displayed for application, so that an acceptance key point classification sub-module is generated; combining the scheme type submodule and the acceptance point classification submodule to generate a scheme compiling requirement module;
setting a corresponding flow module based on a scheme compiling requirement module, setting an approval flow sub-module in the flow module, setting a flow name entry in the approval flow sub-module, and setting an added project approval end, a division approval end and a company approval end; the sub-module of the approval process is internally provided with an approval post ID and generates an authorization project ID corresponding to the scheme compiling requirement module; after the scheme compiling requirement module finishes filling, the system matches the current project ID with the configured authorized project ID to acquire a matched process touch approval process sub-module;
for the sub-module of the approval process, the approval end operates to read the annotation interface through the scheme, and fills annotation opinions aiming at problematic contents in the annotation function;
and step seven, the scheme compiling end receives the comments fed back by the approval end, and revising and/or compiling the scheme in the system according to the comments.
2. The method as claimed in claim 1, wherein the implemented project is collected, a project collection database is established, and the projects in the project collection database are decomposed according to project engineering standards; and keeping the project items which are repeated twice or more after the decomposition as one item in the project type to be added into the project type data module, and taking the rest project items with unicity as other project modules to be listed independently or not to be listed independently.
3. The application method of the complexity-optimized construction scheme compilation system as claimed in claim 2, wherein after the scheme type sub-module is established, compilation and configuration of various technical scheme compilation requirement items are performed for each scheme type, and the scheme compilation item requirements include item settings of technical scheme management methods, scheme management implementation rules, scheme compilation and implementation requirements, key cautions and template scheme requirement rules;
the system comprises a scheme establishment requirement module, a scheme selection module and a scheme selection module, wherein the scheme establishment requirement module is also provided with a newly added scheme type sub-module which comprises a processing scheme suitable for a new project, a new process or a special environment; the newly added scheme type module is applied by a project end, and is approved and established by a company general end.
4. The method of claim 3, wherein the plan types are set according to project construction related to different construction stages in a construction process, and the items include construction plan types, construction proximity types, earthwork pits types, tower crane types, hoisting and hanging types, vertical transportation machinery, detection types, concrete, steel bars, templates, scaffolds, steel structures, water proofing, partition walls, decoration, electromechanical integration, building water supply and drainage and heating engineering, ventilation and air conditioning engineering, building electrical engineering, intelligent building engineering, municipal road subgrade, road surface engineering, bridge and culvert engineering, underground engineering, municipal road piping engineering, municipal road auxiliary engineering, indoor, outdoor, seasonal plans, and safety plans.
5. The application method of the complexity-optimized construction scheme compilation system as claimed in claim 3, wherein the procedures involved in the classified construction are defined based on the scheme type submodule, and definition entry compilation is performed on the acceptance points in each procedure, so as to ensure that the actual construction result is consistent with the scheme compilation;
making specific item compilation of acceptance key points based on the summary of procedure construction experience and internal management requirements when the acceptance key points related to different construction procedures are inconsistent;
the specific items under the acceptance key point classification sub-modules of different scheme types are set, and the specific items comprise an examination and approval program, an demonstration process, various key technical key points related to each scheme type, a construction process and various items at the bottom of delivery, so that the specific items of the acceptance key point classification sub-modules are established.
6. The application method of the complexity-optimizing construction scheme compilation system as claimed in claim 1, wherein in the third step and the fourth step, scheme type submodules and acceptance point classification submodules are established, each scheme type submodule is sequentially numbered and sequenced according to a construction process sequence, and the acceptance point classification submodules under each scheme type submodule are sequentially numbered and sequenced according to corresponding construction processes; the scheme compiling requirement module is also provided with a search box, the search box corresponds to each specific item in the scheme type submodule and the acceptance key point classification submodule, and item positioning is carried out through names or numbers.
7. The application method of the complexity-optimized construction scheme compilation system as claimed in claim 1, wherein the process module is further provided with a to-do submodule, the compilation end and the approval end are both provided with the to-do submodule, and the to-do submodule is prioritized according to the time of to-do tasks; the sub-module to be handled is also associated with the corresponding responsible end of each procedure item in the acceptance point classification sub-module.
8. An optimized complexity construction scheme compilation system is characterized by comprising a scheme type data module, an acceptance key point classification data module, a scheme compilation requirement module and a flow module;
the scheme compiling requirement module comprises a scheme type submodule and an acceptance key point classifying submodule; the scheme compiling requirement module is in signal connection with the flow module;
the scheme type data module is used for receiving correspondingly decomposed scheme type data in the project collection database and generating a corresponding scheme type ID, and the scheme type data module is correspondingly connected with the scheme type submodule;
the acceptance key point classification data module is used for receiving data of each key technical key point, construction process and each item at the bottom of intersection in the project classification in the scheme type, and is correspondingly connected with the acceptance key point classification submodule;
the process module comprises an approval process submodule, and the approval process submodule is used for setting process name entries, and setting an added project approval end, a branch company approval end and a company approval end; and the approval process sub-module is used for embedding the approval post ID and generating an authorization project ID corresponding to the scheme compiling requirement module, and acquiring matched process touch.
9. The complexity-optimized construction scheme compilation system according to claim 8, wherein the scheme compilation requirement module is further provided with a newly added scheme type sub-module for receiving scheme type data adapted to new projects, new processes or special environments.
10. The complexity-optimized construction scheme compilation system as claimed in claim 8, wherein the flow module is further configured with a to-do submodule, which accepts compilation and approval end instructions for prioritizing according to the time of to-do tasks;
the sub-module to be handled is also used for receiving data instructions of relevant responsible ends corresponding to all process items in the associated acceptance key point classification sub-module.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117973947A (en) * 2024-04-01 2024-05-03 国网山东省电力公司宁津县供电公司 Standardized acceptance checking method and system for power distribution network engineering construction process

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006072547A (en) * 2004-08-31 2006-03-16 Toshiba Corp Construction work management system, construction work management method, and construction work management program
CN113298435A (en) * 2021-06-21 2021-08-24 中交第二航务工程局有限公司 Intelligent construction scheme compiling method and system for building industry
CN114201950A (en) * 2021-12-21 2022-03-18 辉图建筑工程科技(上海)有限公司 Engineering documentation, text receiving and transmitting system based on intelligent cloud platform

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006072547A (en) * 2004-08-31 2006-03-16 Toshiba Corp Construction work management system, construction work management method, and construction work management program
CN113298435A (en) * 2021-06-21 2021-08-24 中交第二航务工程局有限公司 Intelligent construction scheme compiling method and system for building industry
CN114201950A (en) * 2021-12-21 2022-03-18 辉图建筑工程科技(上海)有限公司 Engineering documentation, text receiving and transmitting system based on intelligent cloud platform

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117973947A (en) * 2024-04-01 2024-05-03 国网山东省电力公司宁津县供电公司 Standardized acceptance checking method and system for power distribution network engineering construction process

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