CN206799264U - A kind of intelligent AO methods sewage disposal system - Google Patents

A kind of intelligent AO methods sewage disposal system Download PDF

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Publication number
CN206799264U
CN206799264U CN201720586695.5U CN201720586695U CN206799264U CN 206799264 U CN206799264 U CN 206799264U CN 201720586695 U CN201720586695 U CN 201720586695U CN 206799264 U CN206799264 U CN 206799264U
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sewage disposal
unit
intelligent
operational factor
module
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刘飞
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Chongqing Qianhe Environmental Protection Technology Co ltd
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Abstract

The utility model discloses a kind of intelligent AO methods sewage disposal system, it gathers the operational factor of sewage disposal device in the field data of each sewage treatment unit and each sewage treatment unit in AO method sewage disposal process by setting an on-site data gathering device and an equipment operational factor harvester respectively, and each it is sent to Surveillance center, then remote monitoring is carried out by Surveillance center, and to the corresponding information of client feedback, or the control instruction for sending the client is forwarded to each sewage disposal device, so as to realize the real-time remote monitoring of AO method sewage disposal process.

Description

A kind of intelligent AO methods sewage disposal system
Technical field
It the utility model is related to remote control technology field, more particularly to a kind of intelligent AO methods sewage disposal system.
Background technology
At present, sewage disposal is main uses biochemistry+sterilization, mainly has:Diversion aeration biological filter method, AO methods, contact oxygen Change method, activated sludge process etc..Wherein, traditional AO method sewage disposal devices are although possible in theory, but in practical operation very Hardly possible is debugged successfully, also, traditional AO method sewage disposal devices rely primarily on and manually go to patrol to scene, so as to according to each dirt The live running status of unit for treating water or sewage disposal device artificially judges the working condition of equipment, for example, equipment whether Failure, wastewater treatment efficiency etc., the labor intensity that this allows for staff are big;And due to being manually according to finding of naked eye State is judged that this is greatly lowered the degree of accuracy.
Based on this, a kind of intelligent AO methods sewage disposal system that can carry out remote real-time monitoring is needed badly now, so as to The state of each sewage treatment unit can be grasped in real time.
Utility model content
For above-mentioned technical problem, the utility model provides a kind of intelligent AO methods sewage disposal system, its energy It is enough that concentration remote monitoring is carried out to each sewage treatment unit in AO method sewage disposal devices.
In order to solve the above-mentioned technical problem, the technical solution adopted in the utility model is:At a kind of intelligent AO methods sewage Reason system, it includes:
Water inlet unit, anaerobism pool unit, aerobic pool unit, precipitate pool unit and delivery port unit, a field data Harvester and an equipment operational factor harvester, a Surveillance center and at least one client terminal, wherein,
The on-site data gathering device corresponds to the water inlet unit, the anaerobism pool unit, the Aerobic Pond list Member, the precipitation pool unit and the delivery port unit, and the on-site data gathering device also passes through mobile network/Internet of Things It is connected with the Surveillance center;
The equipment operational factor harvester is described aerobic with the water inlet unit, the anaerobism pool unit respectively Pool unit, the precipitation pool unit is connected with each sewage disposal device in the delivery port unit, and the equipment is run Parameter acquisition devices are also connected by an intelligent gateway with the Surveillance center;
At least one client terminal is connected by mobile network/Internet of Things with the Surveillance center.
Wherein, the on-site data gathering device includes:Audio collection module, video acquisition module, audio frequency and video compression Module and communication module, the audio frequency and video compression module respectively with the audio collection module, the video acquisition module and The communication module is connected;And/or
The on-site data gathering device also includes network detection module and cache module, the network detection module and institute Cache module is stated with the communication module to be connected.
Wherein, sewage disposal device corresponding to the water inlet unit includes being arranged on the flowmeter into water porch;
Sewage disposal device corresponding to the anaerobism pool unit includes dissolved oxygen meter and mixer, and the dissolved oxygen is surveyed Determine instrument and the mixer with the equipment operational factor harvester to be connected;
Sewage disposal device includes frequency converter, dissolved oxygen meter and Aeration fan, institute corresponding to the aerobic pool unit Frequency converter is stated, the dissolved oxygen meter and the Aeration fan are connected with the equipment operational factor harvester;
Sewage disposal device corresponding to the precipitation pool unit includes reflux pump, dissolved oxygen meter and sludge interface instrument, The reflux pump, the dissolved oxygen meter and the sludge interface instrument are connected with the equipment operational factor harvester.
It is of the present utility model to be beneficial in that:
The utility model is by setting an on-site data gathering device and an equipment operational factor harvester to distinguish It is each dirty in the field data of each sewage treatment unit and each sewage treatment unit to gather in AO method sewage disposal process The operational factor of water treatment facilities, and Surveillance center is each sent to, the remote monitoring then concentrated by Surveillance center, and Each sewage disposal device is forwarded to the corresponding information of client feedback, or the control instruction that the client is sent, So as to realize remote monitoring, i.e., it need not manually carry out inspection and check that each sewage treatment unit and/or each sewage disposal are set Standby presence states, reduce labor intensity, and due to feedback are the True Datas that gather in real time, rather than according to people's meat Eye finding is artificially judged, also improves the degree of accuracy.
Brief description of the drawings
Fig. 1 is a kind of functional block diagram of an embodiment of intelligent AO methods sewage disposal system of the present utility model;
Fig. 2 is a kind of structural representation of a specific embodiment of intelligent AO methods sewage disposal system of the present utility model Figure.
Embodiment
Below in conjunction with the accompanying drawings, the utility model is described in detail.
In order that the purpose of this utility model, technical scheme and advantage are more clearly understood, below in conjunction with accompanying drawing and implementation Example, the utility model is further elaborated.It should be appreciated that specific embodiment described herein is only explaining The utility model, it is not used to limit the utility model.
The utility model is by setting an on-site data gathering device and an equipment operational factor harvester to distinguish To gather the operational factor of sewage disposal device in the field data of each sewage treatment unit and each sewage treatment unit, and Surveillance center each is sent to, the remote monitoring then concentrated by Surveillance center, and to the corresponding information of client feedback, Or the control instruction for sending the client is forwarded to each sewage disposal device, so as to realize the intellectuality of sewage disposal Remote monitoring, i.e., it need not manually carry out the scene for checking each sewage treatment unit and/or each sewage disposal device State, reduces labor intensity, and due to client feedback being the True Data that gathers in real time, rather than according to naked eyes Finding is artificially judged, also improves the degree of accuracy.
It is a kind of structural representation of an embodiment of intelligent AO methods sewage disposal system of the present utility model referring to Fig. 1 Figure.Specifically, referring to Fig. 2, the intelligent AO methods sewage disposal device includes multiple sewage treatment units in the present embodiment:Water inlet Mouth unit, anaerobism pool unit, aerobic pool unit, precipitates pool unit and delivery port unit, wherein, the water inlet unit includes water inlet Mouth and the flowmeter for being arranged on water inlet;Aerobic pool unit includes Aerobic Pond and the aeration wind being arranged in the Aerobic Pond Machine, dissolved oxygen meter and frequency converter(The frequency converter is connected with gas explosion blower fan);Precipitation pool unit includes sedimentation basin, and sets Ultrasonic sludge interface instrument, reflux pump and dissolved oxygen meter in the sedimentation basin.
Specifically, the intelligent AO methods sewage disposal device of this in the present embodiment also includes:One on-site data gathering device 31, an equipment operational factor harvester 32, a Surveillance center 33 and at least one client terminal 34, wherein, the scene Data acquisition device 31 passes through mobile network(Such as 3G/4G/5G mobile networks, or Internet of Things)It is connected with Surveillance center 33, it is above-mentioned Equipment operational factor harvester 32 is then connected by an intelligent gateway with Surveillance center 33, and the client terminal 34 passes through shifting Dynamic network or Internet of Things are connected with the Surveillance center 33.In other words, in the present embodiment, by the on-site data gathering device come The field data of each sewage treatment unit is gathered in real time, and each dirt is gathered by the equipment operational factor harvester Operational factor of each sewage disposal device etc. in unit for treating water.
In one embodiment, the on-site data gathering device is high-definition camera, in the present embodiment, the high-definition camera Machine obtains each sewage treatment unit, i.e. anaerobism pool unit, aerobic pool unit, precipitation pool unit, water inlet unit and delivery port Video, the voice data at cell operation scene, obtain the field data of each sewage treatment unit, are then moved by 3G/4G/5G Dynamic network or wireless network and Cloud Server(That is Surveillance center)It is connected.Specifically, the high-definition camera includes:Audio frequency and video Compression module, and the audio collection module being connected with the audio frequency and video compression module, video acquisition module and communication module, should Communication module is also connected by 3G/4G/5G mobile networks or wireless network with above-mentioned Surveillance center;Wherein, audio collection Module gathers the live audio data of sewage treatment unit, and sends to audio frequency and video compression module, video acquisition module collection The live video data of sewage treatment unit, and send to audio frequency and video compression module, the audio frequency and video compression module and will compress Voice data and video data afterwards is sent to Surveillance center by the communication module.
In one embodiment, using PLC control unit as equipment operational factor harvester, then anaerobism pool unit In dissolved oxygen meter and circular flow agitator be connected with PLC control unit;Frequency converter in aerobic pool unit, dissolved oxygen are surveyed Determine instrument and Aeration fan is connected with PLC control unit;Precipitate the reflux pump in pool unit, dissolved oxygen meter and sludge interface Instrument is connected with PLC control unit;Flowmeter in water inlet is connected with PLC control unit.In the present embodiment, PLC controls Unit gathers the operational factor and associated data of above-mentioned each sewage disposal device in each sewage treatment unit, and the PLC Control unit is connected with embedded intelligence gateway, embedded intelligence gateway by 4G/3G common movings network and Surveillance center, I.e. Cloud Server connect, the Surveillance center, i.e. Cloud Server in a manner of B/S with each user client communication, the i.e. PLC control unit Both-way communication is carried out by 485/ 232 with intelligent gateway, intelligent gateway carries out double by 4G/3G mobile networks and Cloud Server To communication.In the present embodiment, the intelligent gateway includes microprocessor, internal memory, operating system, holder and communication interface, 4G/3G leads to The parts such as module are interrogated, there is decision support, maintenance management, remote supervisory, information management, assessment of failure, remote assistance, equipment to go through The functions such as history data.
In one embodiment, the Surveillance center, i.e. Cloud Server include operating system, Database Unit, OPC controls Unit, Streaming Media control unit, web release units, B/S configuration units.OPC control units are responsible for sewage disposal system data Management;Streaming Media control unit is responsible for the management of audio, video;Web release units are responsible for sewage disposal system configuration monitoring picture The issue in face.Wherein, B/S configuration units include B/S configurations control, video control, audio analysis control, database interface, will State, instrumented data, remote control panel, monitoring audio, the video integration of each capability evaluation laboratory carry out configuration, and The running status and data of remote sewage processing unit are obtained according to the data that PLC control unit uploads, is turned in B/S configuration units It is melted into intuitively Visual Dynamic graphical interfaces.The audio point that Audio Controls upload according to live 4G/3G high-definition monitoring cameras State after the state and execution remote control commands of desorption device operating.Video control is taken the photograph according to live 4G/3G high-definition monitorings The video that camera uploads directly reflects field apparatus and facility(Such as water inlet or delivery port)Running status or perform long-range control State after system instruction.
In one embodiment, when the high-definition camera also includes network detection module and data cache module, the net Network detection module is connected with the data cache module and communication module, wherein, whether network detection module detection network connection Break down, such as when, then the current field data to be transmitted of data cache module caching of the on-site data gathering device, and And when the network detection module detects network recovery, the communication module of the field data device is mended automatically passes showing of being cached Field data.Similarly, during equipment operational factor harvester sends operational factor to Surveillance center, detect that network occurs During failure, the current operational factor and/or associated data to be transmitted is cached, and when it detects network recovery, the equipment Operational factor harvester is mended automatically passes cached operational factor and/or associated data to Surveillance center.
In one embodiment, the client can be PC, MAC machines, Android or IOS mobile devices, user Ke Tong Cross the configuration picture that the client carries the issue of browser access Cloud Server, including audio, video etc..Client passes through mandate It can be regarded in real time with the B/S configuration pictures, equipment operational factor, control device start and stop of each engineering of online modification by inquiring about scene Frequency and real-time audio can intuitively understand field apparatus and facility operation state, enquiry of historical data etc..
Preferred embodiment of the present utility model is the foregoing is only, it is all at this not to limit the utility model All any modification, equivalent and improvement made within the spirit and principle of utility model etc., should be included in the utility model Protection domain within.

Claims (7)

  1. A kind of 1. intelligent AO methods sewage disposal system, it is characterised in that including:
    Water inlet unit, anaerobism pool unit, aerobic pool unit, precipitate pool unit and delivery port unit, an on-site data gathering Device and an equipment operational factor harvester, a Surveillance center and at least one client terminal, wherein,
    The on-site data gathering device corresponds to the water inlet unit, the anaerobism pool unit, the aerobic pool unit, institute Precipitation pool unit and the delivery port unit are stated, and the on-site data gathering device also passes through mobile network/Internet of Things and institute Surveillance center is stated to be connected;
    The equipment operational factor harvester respectively with the water inlet unit, the anaerobism pool unit, the Aerobic Pond list Member, the precipitation pool unit is connected with each sewage disposal device in the delivery port unit, and the equipment operational factor Harvester is also connected by an intelligent gateway with the Surveillance center;
    At least one client terminal is connected by mobile network/Internet of Things with the Surveillance center.
  2. 2. intelligent AO methods sewage disposal system as claimed in claim 1, it is characterised in that the on-site data gathering device For high-definition camera.
  3. 3. intelligent AO methods sewage disposal system as claimed in claim 1, it is characterised in that the on-site data gathering device Including:Audio collection module, video acquisition module, audio frequency and video compression module and communication module, the audio frequency and video compress mould Block is connected with the audio collection module, the video acquisition module and the communication module respectively.
  4. 4. intelligent AO methods sewage disposal system as claimed in claim 3, it is characterised in that the on-site data gathering device Also include network detection module and cache module, the network detection module and the cache module and the communication module phase Even.
  5. 5. intelligent AO methods sewage disposal system as claimed in claim 1, it is characterised in that the Surveillance center is cloud service Device.
  6. 6. intelligent AO methods sewage disposal system as claimed in claim 1, it is characterised in that the client terminal be PC, MAC machines, Android or IOS mobile devices.
  7. 7. the intelligent AO methods sewage disposal system as described in any one in claim 1 to 6, it is characterised in that it is described enter Sewage disposal device corresponding to the unit of the mouth of a river includes being arranged on the flowmeter into water porch;
    Sewage disposal device corresponding to the anaerobism pool unit includes dissolved oxygen meter and mixer, the dissolved oxygen meter It is connected with the mixer with the equipment operational factor harvester;
    Sewage disposal device includes frequency converter, dissolved oxygen meter and Aeration fan, the change corresponding to the aerobic pool unit Frequency device, the dissolved oxygen meter and the Aeration fan are connected with the equipment operational factor harvester;
    Sewage disposal device corresponding to the precipitation pool unit includes reflux pump, dissolved oxygen meter and sludge interface instrument, described Reflux pump, the dissolved oxygen meter and the sludge interface instrument are connected with the equipment operational factor harvester.
CN201720586695.5U 2017-05-24 2017-05-24 A kind of intelligent AO methods sewage disposal system Active CN206799264U (en)

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Application Number Priority Date Filing Date Title
CN201720586695.5U CN206799264U (en) 2017-05-24 2017-05-24 A kind of intelligent AO methods sewage disposal system

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108911122A (en) * 2018-08-28 2018-11-30 宁夏宝丰能源集团股份有限公司 Sewage disposal system
CN109164770A (en) * 2018-09-25 2019-01-08 云南鼎易环保科技工程有限公司 Sewage plant remote on-line monitoring system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108911122A (en) * 2018-08-28 2018-11-30 宁夏宝丰能源集团股份有限公司 Sewage disposal system
CN109164770A (en) * 2018-09-25 2019-01-08 云南鼎易环保科技工程有限公司 Sewage plant remote on-line monitoring system

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Effective date of registration: 20180724

Address after: 550007 No. 200, South West loop, Xiaohe, Huaxi District, Guiyang, Guizhou

Patentee after: GUIZHOU GREAT WALL ENVIRONMENTAL PROTECTION TECHNOLOGY CO.,LTD.

Address before: 400039 No. 77, No. two, Keyuan two street, Kowloon Po District, Chongqing, 1

Patentee before: Liu Fei

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Effective date of registration: 20240319

Address after: No. 77-8-3, Keyuan 2nd Street, Jiulongpo District, Chongqing, 400041

Patentee after: Liu Jiaqi

Country or region after: China

Address before: 550007 No. 200, South West loop, Xiaohe, Huaxi District, Guiyang, Guizhou

Patentee before: GUIZHOU GREAT WALL ENVIRONMENTAL PROTECTION TECHNOLOGY CO.,LTD.

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Effective date of registration: 20240911

Address after: Room 8-2, 2nd Floor, Convenience Service Center, Group 3, Wansheng Community, Huangsha Town, Dianjiang County, Chongqing City, China

Patentee after: Chongqing Qianhe Environmental Protection Technology Co.,Ltd.

Country or region after: China

Address before: No. 77-8-3, Keyuan 2nd Street, Jiulongpo District, Chongqing, 400041

Patentee before: Liu Jiaqi

Country or region before: China