CN205561825U - Integration pump station subsides displacement detecting system - Google Patents

Integration pump station subsides displacement detecting system Download PDF

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Publication number
CN205561825U
CN205561825U CN201620397319.7U CN201620397319U CN205561825U CN 205561825 U CN205561825 U CN 205561825U CN 201620397319 U CN201620397319 U CN 201620397319U CN 205561825 U CN205561825 U CN 205561825U
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China
Prior art keywords
pump station
box
baffle
guard shield
detecting system
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Active
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CN201620397319.7U
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Chinese (zh)
Inventor
张敏庆
贾军波
王丹
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Ebara Machinery China Co Ltd
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Ebara Machinery China Co Ltd
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Priority to CN201620397319.7U priority Critical patent/CN205561825U/en
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Abstract

The utility model relates to an integration pump station subsides displacement detecting system, including base, support, displacement sensor and scale plate, the base is fixed to be set up subaerial, the base with the bottom fixed connection of support, displacement sensor installs the upper portion of support, the upper portion of the fixed pump station barrel one side of scale plate, scale plate upright is in displacement sensor's opposite, the last displacement scale that is equipped with of scale plate, still include control system, control system includes the PLC controller. The utility model discloses when the pump station takes place to subside, in time detect the state that subsides and the settling amount of pump station, when the pump station subsided limit settling amount, detecting system's displacement sensor can transmit the limit signal of gathering that subsides to control system, and control system can send the warning, makes things convenient for the staff in time to handle, has effectively improved maintenance efficiency, has greatly reduced the maintenance cost.

Description

A kind of integrated pump station sedimentation deformation detecting system
Technical field
This utility model relates to a kind of integrated pump station sedimentation deformation detecting system, belongs to sewage disposal technology Field.
Background technology
Along with socioeconomic fast development, get more and more, once from life and the sewage discharge produced These sewage arbitrarily discharge, and will result in the severe contamination of whole environment, in order to collect these sewage of process, Sewage lifting pump station the most just arises at the historic moment, and its use is more and more extensive.
Cylinder that existing most of sewage lifting pump station includes being arranged on pedestal, water inlet pipe 4, water outlet The critical pieces such as pipe, water pump, service platform, the barrel diameter general 0.8~3.8m of sewage lifting pump station, The most general 3~20m, weight is big, is typically embedded in underground, and the top of cylinder can be concordant with ground, protects Hold neat, attractive in appearance effect green with surrounding, be also convenient for workmen simultaneously and find in time and arrive under pumping plant position Safeguard in the cylinder of pumping plant;But when sewage lifting pump station is built in the foundation ditch of soft soil, Long-time use ground settles unavoidably;Existing sewage pumping station cannot detect whether pumping plant sinks Fall, even if pumping plant also cannot know its settling amount after settling with pedestal in time, it is impossible in time by anti-for sedimentation Feed staff, can damage water outlet and the inlet pipeline of pumping plant, even equipment be caused damage, impact The work efficiency of sewage pump, after pumping plant goes wrong, maintenance efficiency is low, loses time, and maintenance cost is higher.
Additionally, when sewage lifting pump station is built in the foundation ditch of soft soil, long-time use ground is difficult Exempting to settle, due to the water inlet pipe of sewage lifting pump station, general more than DN200, meeting is directly with on-the-spot Outlet pipe docking connects, and when sedimentation occurs in pedestal, cylinder, outlet pipe etc. all can sink along with pedestal, and The on-the-spot outlet pipe being connected with outlet pipe will be pullled by pumping plant outlet pipe, and the process of pullling may result in The damage of pumping plant water inlet pipe, causes easily occurring leakage accident.
Utility model content
The deficiency that this utility model exists for above-mentioned prior art, it is provided that sinking of a kind of timely detection pumping plant The integrated pump station sedimentation deformation detecting system of fall state and settling amount.
The technical scheme that this utility model solves above-mentioned technical problem is as follows: a kind of integrated pump station sedimentation position Moving detecting system, including base, bearing, displacement transducer and Measure Board, described base is fixedly installed on On ground, described base is fixing with the bottom of described bearing to be connected, and institute's displacement sensors is arranged on described The top of bearing, the top of described Measure Board fixed pump station cylinder side, described Measure Board stands upright on described The opposite of displacement transducer, described Measure Board is provided with displacement scale;Also include control system, described control System processed includes PLC.
The beneficial effects of the utility model are: when pumping plant occurs sedimentation, the sedimentation of pumping plant detected in time State and settling amount, when pumping plant is deposited to limit settling amount, the displacement transducer meeting of displacement detection system The settlement polar limited signal collected is transferred to control system, and control system can send warning, convenient work Personnel process in time, are effectively increased maintenance efficiency, greatly reduce maintenance cost.
On the basis of technique scheme, this utility model can also do following improvement.
Further, described cylinder opposite side is provided with anti-settling water intake mechanism, described anti-settling water intake mechanism Including entering water bend pipe, baffle-box and guard shield, described baffle-box is provided with casing inlet opening and casing outlet pipe, Described casing inlet opening is arranged on the top of described baffle-box, and described casing outlet pipe leads to described water inlet pipe Crossing Flange joint, described guard shield is arranged on the outside of described baffle-box, and described cylinder is close to by described guard shield Side has the arc structure matched with described cylinder, and the top of described guard shield is provided with for described water inlet The through hole that bend pipe passes, the bottom of described guard shield is fixing with pedestal to be connected, and is filled with coagulation in described guard shield Soil, one end of described water inlet bend pipe is inserted in described casing inlet opening through described through hole, the other end with On-the-spot outlet pipe connects.
Using above-mentioned further scheme to provide the benefit that, baffle-box is generally large, uses internal being filled with The guard shield of concrete, not only can play stable supporting role to baffle-box, and the circle inside guard shield Arc structure fits tightly with pumping plant cylinder so that baffle-box, guard shield form an entirety with pumping plant, it is ensured that Baffle-box sedimentation Tong Bu with pumping plant, thus will not stretch the water inlet pipe of pumping plant, and in this outer shield, fill mixes Solidifying soil is also prevented from guard shield internal water accumulation;In pumping plant infall process, pumping plant, baffle-box and guard shield synchronize heavy Fall, and the water inlet bend pipe being connected with on-the-spot outlet pipe remains stationary as, baffle-box with intake that bend pipe is relative to slide, Stretching into the water inlet bend pipe in baffle-box to expose along with pumping plant sedimentation, water inlet bend pipe stretches into the length in baffle-box The settling amount that degree allows more than pumping plant, therefore water inlet bend pipe is without departing from baffle-box.
Further, the V-shaped structure in bottom of described baffle-box, the bottom of described baffle-box is along described case The axially inclined setting of body outlet pipe, and minimum point is in the bottom of described casing outlet pipe.
Using above-mentioned further scheme to provide the benefit that, the bottom of baffle-box uses V-structure, it is possible to To say being outside arced configuration, for the ease of sewage and mud, centre position bottom baffle-box is converged;And Bottom baffle-box downward-sloping towards casing outlet pipe, it is simple to sewage and mud all can flow rapidly into pumping plant In, it is to avoid sludgd deposition affects sewage lifting and conveying effect in baffle-box.
Further, it is connected by sealing ring between described water inlet bend pipe with described casing inlet opening.
Use above-mentioned further scheme to provide the benefit that, sealing ring can use quality of rubber materials make and Becoming, the elastic shrinkage of sealing ring can clamp water inlet bend pipe, prevents the sewage entering in baffle-box by buffering The top of case is overflowed and is revealed.
Further, it is provided with lacing wire in described guard shield.
Use above-mentioned further scheme to provide the benefit that, not only can increase the intensity of guard shield, fix it Shape, and prevent guard shield stress deformation when guard shield fill concrete.
Accompanying drawing explanation
Fig. 1 is the structural representation of this utility model sedimentation detecting system;
Fig. 2 is the schematic diagram of this utility model sedimentation detecting system;
Fig. 3 is the structural representation of this utility model anti-settling water intake mechanism;
Fig. 4 is this utility model baffle-box and water inlet elbow connecting structure schematic diagram;
Fig. 5 is the perspective view of this utility model baffle-box;
Fig. 6 is the main TV structure schematic diagram of this utility model baffle-box;
Fig. 7 is the left view structural representation of this utility model baffle-box;
Fig. 8 is the structural representation of this utility model guard shield.
In figure, 1, cylinder;2, pedestal;3, water inlet pipe;4, outlet pipe;5, water inlet bend pipe;6、 Baffle-box;7, guard shield;8, casing outlet pipe;9, casing inlet opening;10, flange;11, through hole; 12, sealing ring;13, lacing wire;14, base;15, bearing;16, displacement transducer;17, scale Plate;18, switch board.
Detailed description of the invention
Being described principle of the present utility model and feature below in conjunction with example, example is served only for solving Release this utility model, be not intended to limit scope of the present utility model.
As shown in Fig. 1~Fig. 8, a kind of integrated pump station sedimentation deformation detecting system, including base 14, Bearing 15, displacement transducer 16 and Measure Board 17, described base 14 is fixedly installed on the ground, institute State that the bottom of base 14 and described bearing 15 is fixing to be connected, described in institute's displacement sensors 16 is arranged on The top of bearing 15, the top of described Measure Board 17 fixed pump station cylinder 1 side, described Measure Board 17 Standing upright on the opposite of institute's displacement sensors 16, described Measure Board 17 is provided with displacement scale;Also include Control system, described control system includes PLC.
Described control system is arranged in switch board 18, and in displacement transducer employing is that laser displacement passes Sensor, can be selected for Britain the most still has ZLDS10X series laser displacement transducer, and displacement transducer detects During limit sedimentation deformation value, limit signal can pass to PLC, PLC receives heavy Buzzer warning can be controlled, it is also possible to utilize DTU digital transmission module with GPRS or note after fall limit signal Form be sent to staff, notify staff, allow it in time pumping plant be safeguarded, prevent pump Stand damage, improve reliability and the production efficiency of pumping plant, reduce maintenance cost.
Described cylinder opposite side is provided with anti-settling water intake mechanism, and described anti-settling water intake mechanism includes into water curved Pipe 5, baffle-box 6 and guard shield 7, described baffle-box 6 is provided with casing inlet opening 9 and casing outlet pipe 8, Described casing inlet opening is arranged on the top of described baffle-box, described casing outlet pipe and described water inlet pipe 3 Being connected by flange 10, described guard shield 7 is arranged on the outside of described baffle-box, and institute is close to by described guard shield The side stating cylinder has the arc structure matched with described cylinder, the top of described guard shield be provided with for The through hole 11 that described water inlet bend pipe passes, the bottom of described guard shield is fixing with pedestal 2 to be connected, described guard shield Being filled with concrete in 7, one end of described water inlet bend pipe is inserted into the water inlet of described casing through described through hole In hole, the other end is connected with on-the-spot outlet pipe.In pumping plant infall process, baffle-box, guard shield and pumping plant shape Becoming an entirety, pumping plant, baffle-box and guard shield synchronize sedimentation, baffle-box with intake that bend pipe is relative to slide, Water inlet bend pipe remains stationary as, and would not stretch the water inlet pipe of pumping plant, and in this outer shield, fill concrete also may be used To prevent guard shield internal water accumulation;Water inlet bend pipe stretches into the settling amount that the length in baffle-box allows more than pumping plant, Therefore water inlet bend pipe is without departing from baffle-box.
The V-shaped structure in bottom of described baffle-box 6, the bottom of described baffle-box is along described casing outlet pipe Axially inclined setting, and minimum point is in the bottom of described casing outlet pipe.The bottom of baffle-box uses V Type structure, it may also be said to be outside arced configuration, the centre bottom baffle-box for the ease of sewage and mud Position is converged;And downward-sloping towards casing outlet pipe bottom baffle-box, it is simple to sewage and mud all can be fast Speed flows in pumping plant, it is to avoid sludgd deposition affects sewage lifting and conveying effect in baffle-box.
It is connected by sealing ring 12 between described water inlet bend pipe with described casing inlet opening.Sealing ring is permissible Employing quality of rubber materials is made, and the elastic shrinkage of sealing ring can clamp water inlet bend pipe, prevents from entering into slow The sewage rushed in case is overflowed leakage by the top of baffle-box.
Lacing wire 13 it is provided with in described guard shield.Not only can increase the intensity of guard shield, fix its shape, and Guard shield stress deformation is prevented when guard shield fill concrete.
The foregoing is only preferred embodiment of the present utility model, not in order to limit this utility model, all Within spirit of the present utility model and principle, any modification, equivalent substitution and improvement etc. made, all Within protection domain of the present utility model should be included in.

Claims (5)

1. an integrated pump station sedimentation deformation detecting system, it is characterised in that include base, bearing, Displacement transducer and Measure Board, described base is fixedly installed on the ground, described base and described bearing Bottom is fixing to be connected, and institute's displacement sensors is arranged on the top of described bearing, and described Measure Board is fixed on The top of pumping plant cylinder side, described Measure Board stands upright on the opposite of institute's displacement sensors, also includes control System processed, described control system includes PLC.
Integrated pump station sedimentation deformation detecting system the most according to claim 1, it is characterised in that Described cylinder opposite side is provided with anti-settling water intake mechanism, described anti-settling water intake mechanism include into water bend pipe, Baffle-box and guard shield, described baffle-box is provided with casing inlet opening and casing outlet pipe, and described casing is intake Hole is arranged on the top of described baffle-box, and described casing outlet pipe passes through Flange joint with described water inlet pipe, Described guard shield is arranged on the outside of described baffle-box, and described guard shield is close to the side of described cylinder and is had and institute Stating the arc structure that cylinder matches, the top of described guard shield was provided with for leading to that described water inlet bend pipe passes Hole, the bottom of described guard shield is fixing with pedestal to be connected, and is filled with concrete, described water inlet in described guard shield One end of bend pipe is inserted in described casing inlet opening through described through hole, and the other end is with on-the-spot outlet pipe even Connect.
Integrated pump station sedimentation deformation detecting system the most according to claim 2, it is characterised in that The V-shaped structure in bottom of described baffle-box, the bottom of described baffle-box is axial along described casing outlet pipe It is obliquely installed, and minimum point is in the bottom of described casing outlet pipe.
4. according to the integrated pump station sedimentation deformation detecting system described in Claims 2 or 3, its feature It is, is connected by sealing ring between described water inlet bend pipe with described casing inlet opening.
5. basis and the integrated pump station sedimentation deformation detecting system described in claim 4, its feature exists In, it is provided with lacing wire in described guard shield.
CN201620397319.7U 2016-05-05 2016-05-05 Integration pump station subsides displacement detecting system Active CN205561825U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620397319.7U CN205561825U (en) 2016-05-05 2016-05-05 Integration pump station subsides displacement detecting system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620397319.7U CN205561825U (en) 2016-05-05 2016-05-05 Integration pump station subsides displacement detecting system

Publications (1)

Publication Number Publication Date
CN205561825U true CN205561825U (en) 2016-09-07

Family

ID=56805840

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620397319.7U Active CN205561825U (en) 2016-05-05 2016-05-05 Integration pump station subsides displacement detecting system

Country Status (1)

Country Link
CN (1) CN205561825U (en)

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