CN113003621A - Data acquisition system for intelligent water treatment system - Google Patents
Data acquisition system for intelligent water treatment system Download PDFInfo
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- CN113003621A CN113003621A CN202110051080.3A CN202110051080A CN113003621A CN 113003621 A CN113003621 A CN 113003621A CN 202110051080 A CN202110051080 A CN 202110051080A CN 113003621 A CN113003621 A CN 113003621A
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F1/00—Treatment of water, waste water, or sewage
- C02F1/008—Control or steering systems not provided for elsewhere in subclass C02F
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F2201/00—Apparatus for treatment of water, waste water or sewage
- C02F2201/002—Construction details of the apparatus
- C02F2201/007—Modular design
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F2209/00—Controlling or monitoring parameters in water treatment
- C02F2209/03—Pressure
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F2209/00—Controlling or monitoring parameters in water treatment
- C02F2209/40—Liquid flow rate
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Abstract
The invention discloses a data acquisition system for an intelligent water treatment system, which comprises a raw water data acquisition device (100) arranged on a water source acquisition system (1) of the intelligent water service system and used for acquiring raw water information, a water circulation data acquisition device (200) arranged on a water circulation system (3) and an industrial water system (4) of the intelligent water service system and used for acquiring circulating water information, and a control system (400) arranged on a sewage collection system (5) and a water treatment system (2) of the intelligent water service system and used for acquiring a sewage treatment information treatment water data acquisition device (300) and sending instructions to the raw water data acquisition device (100), the water circulation data acquisition device (200) and the treatment water data acquisition device (300). The data acquisition system for the intelligent water treatment system provided by the invention realizes deep utilization and comprehensive utilization of data acquisition by systematization of data acquisition.
Description
Technical Field
The invention relates to the technical field of intelligent water affairs, in particular to a data acquisition system for an intelligent water treatment system.
Background
The intelligent water affair is the intelligent water affair, which senses the running state of the urban water supply and drainage system in real time through online monitoring equipment such as a data acquisition instrument, a wireless network, a water quality and water pressure meter and the like, organically integrates a water affair management department and water supply and drainage facilities in a visual mode to form an urban water affair Internet of things, can analyze and process massive water affair information in time, makes a corresponding processing result auxiliary decision suggestion, and manages the whole production, management and service process of the water affair system in a more detailed and dynamic mode, thereby achieving the intelligent state.
The thermal power of China accounts for about 80% of available power, 90% of the total water consumption (more than 100 hundred million tons) of the thermal power plant is used for a circulating water system, and the sewage discharge amount accounts for more than 70%. At present, the water service management of the thermal power plant has many problems, such as: the water metering facility is imperfect, the water balance test is not carried out regularly, and the leakage is serious; a large amount of water resources of the thermal power plant are unreasonably distributed, and the waste water resources are not reasonably utilized; although industrial wastewater and domestic wastewater standards are set in many thermal power plants, many thermal power plants are discharged without being treated, which causes waste. A large number of thermal power plants do not pay attention to the management of water consumption and drainage, so that the water balance management of the thermal power plants is extensive, and a water quantity monitoring network is immature. Even the developed water-saving model of the thermal power plant adopts semi-artificial semi-intelligence, and the application of automatic detection and automatic control technology is less.
The collection of related data in the existing water treatment system is usually a single-point test, and the result of the single-point test can only show the running state on a detection point generally, so that the data in the whole water treatment system can not be comprehensively utilized, and the efficiency of data use is not facilitated.
Disclosure of Invention
The invention provides a data acquisition system for an intelligent water treatment system, aiming at solving the technical problems of imperfect water metering facilities, low efficiency of detecting data use and the like of a water management system in the prior art, and the invention realizes the deep utilization and the comprehensive utilization of data acquisition by systematization of data acquisition.
The invention provides a data acquisition system for an intelligent water treatment system, comprising:
raw water data acquisition device: the system is arranged on a water source acquisition system of the intelligent water service system and used for acquiring raw water information, wherein the raw water information comprises water quality of a water taking water source, raw water taking flow and water taking pool water quantity, is used for transmitting the raw water information to the control system and is used for receiving an instruction transmitted by the control system;
water cycle data acquisition device: the system is arranged on a water circulation system and an industrial water system of the intelligent water service system, is used for acquiring circulating water information, comprises circulating water quality, circulating water flow and circulating water amount, is used for transmitting the circulating water information to the control system and is used for receiving an instruction transmitted by the control system;
the processing water data acquisition device: the intelligent water treatment system is arranged on a sewage collecting system and a water treatment system of the intelligent water service system, is used for collecting sewage treatment information, comprises sewage type, sewage quality, sewage flow and sewage quantity, is used for transmitting the sewage treatment information to the control system, and is used for receiving an instruction transmitted by the control system;
the control system comprises: the system comprises a water circulation data acquisition device, a raw water data acquisition device, a water circulation data acquisition device, a sewage treatment data acquisition device, a raw water data acquisition device, a water circulation data acquisition device and a treated water data acquisition device, wherein the raw water data acquisition device is used for receiving raw water information transmitted by the raw water data acquisition device, the water circulation data acquisition device is used for receiving circulating water information transmitted by the water circulation data acquisition device, the sewage treatment information.
The invention relates to a data acquisition system for an intelligent water treatment system, which is characterized in that as a preferred mode, a raw water data acquisition device comprises:
the primary raw water data acquisition device comprises: the system is used for collecting raw water information in real time and transmitting the raw water information to the control system;
the second-stage raw water data acquisition device comprises: the system is used for receiving the instruction transmitted by the control system when the raw water information is abnormal, and is used for rechecking the raw water information and transmitting the detection result to the control system.
The invention relates to a data acquisition system for an intelligent water treatment system, which is characterized in that as a preferable mode, a water circulation data acquisition device comprises:
first-order water cycle data acquisition device: the system is used for acquiring circulating water information in real time and transmitting the circulating water information to the control system;
the second-level water cycle data acquisition device: and the system is used for receiving the instruction transmitted by the control system when the circulating water information is abnormal, and is used for rechecking the circulating water information and transmitting the detection result to the control system.
The invention relates to a data acquisition system for an intelligent water treatment system, and as a preferred mode, a treated water data acquisition device comprises:
primary treatment water data acquisition device: the system is used for collecting sewage treatment information in real time and transmitting the sewage treatment information to the control system;
the secondary treatment water data acquisition device: and the system is used for receiving the instruction transmitted by the control system when the sewage treatment information is abnormal, and is used for rechecking the sewage treatment information and transmitting the detection result to the control system.
As an optimal mode, the raw water data acquisition device, the water cycle data acquisition device and the treated water data acquisition device are respectively a flowmeter, a pressure gauge and a water quality detector.
The invention relates to a data acquisition system for an intelligent water treatment system, which is a preferable mode, and the intelligent water affair system comprises:
water source collection system: for collecting water at a water source for delivery to a water treatment system;
a water treatment system: the system comprises a water source acquisition system, a water circulating system, a sewage collecting system and a water circulating system, wherein the water source acquisition system is used for receiving water transmitted by the water source acquisition system, processing the water and generating industrial water, transmitting the industrial water to the water circulating system, receiving industrial wastewater transmitted by the industrial water system, receiving sewage transmitted by the sewage collecting system, processing the industrial wastewater and the sewage and generating recovered water, and transmitting the recovered water to the water circulating system;
a water circulation system: the industrial water and the recovered water are used for receiving the industrial water and the recovered water transmitted by the water treatment system and transmitting the industrial water and the recovered water to the industrial water system;
industrial water system: the industrial water and the reclaimed water are used for receiving the industrial water and the reclaimed water transmitted by the water circulating system and transmitting the industrial wastewater generated by production to the water treatment system;
a sewage collection system: the device is used for recovering domestic water and fire-fighting water, and mixing the domestic water and the fire-fighting water into sewage to be conveyed to a water treatment system.
The invention relates to a data acquisition system for an intelligent water treatment system, which is a preferable mode, and the water treatment system comprises:
a raw water treatment system: the water source collecting system is used for collecting water used by the industrial water system, and collecting water used by the industrial water system;
industrial wastewater treatment system: the industrial waste water collecting system is used for receiving the industrial waste water transmitted by the industrial water system, receiving the sewage transmitted by the sewage collecting system, treating the industrial waste water and the sewage and generating recovered water, and transmitting the recovered water to the water circulating system.
The invention relates to a data acquisition system for an intelligent water treatment system, which is a preferable mode, and the industrial wastewater treatment system comprises:
industrial wastewater classification system: the system is used for receiving industrial wastewater transmitted by an industrial water system, classifying the industrial wastewater, wherein the classification result comprises oil-containing wastewater, coal-containing wastewater, desulfurization wastewater and ammonia-containing wastewater, transmitting the oil-containing wastewater to an oil-containing wastewater treatment system, transmitting the coal-containing wastewater to a coal-containing wastewater treatment system, transmitting the desulfurization wastewater to a desulfurization wastewater treatment system and transmitting the ammonia-containing wastewater to an ammonia-containing wastewater treatment system;
oily wastewater treatment system: the system is used for receiving the oily wastewater transmitted by the industrial wastewater classification system, treating the oily wastewater, extracting recovered water after oil is discharged, and transmitting the recovered water to a water circulation system; the oil can be discharged to a coal yard for spraying;
coal-containing wastewater treatment system: the system is used for receiving the coal-containing wastewater transmitted by the industrial wastewater classification system, treating the coal-containing wastewater, extracting recovered water after removing wastes, and transmitting the recovered water to a water circulation system; wherein the waste comprises coal conveying belt flushing, coal yard drainage and the like, the waste is recycled after coagulating sedimentation or filtration, and the generated impurities can be co-burnt with coal;
desulfurization wastewater treatment system: the system is used for receiving the desulfurization wastewater transmitted by the industrial wastewater classification system, treating the desulfurization wastewater, extracting recovered water after removing waste, and transmitting the recovered water to a water circulation system;
an ammonia-containing wastewater treatment system: the system is used for receiving the ammonia-containing wastewater transmitted by the industrial wastewater classification system, treating the ammonia-containing wastewater, extracting the recovered water after discharging the waste and transmitting the recovered water to the water circulation system.
The invention comprises the following steps in the using process:
s1, the primary raw water data acquisition device acquires raw water information in real time, the primary water circulation data acquisition device acquires circulating water information in real time, and the primary treated water data acquisition device acquires treated water information in real time and transmits the raw water information, the circulating water information and the treated water information to the control system;
s2, analyzing the raw water information, the circulating water information and the treated water information by the control system, if the raw water information is found to be abnormal, entering a step S3, if the circulating water information is found to be abnormal, entering a step S5, if the treated water information is found to be abnormal, entering a step S7, and if the raw water information, the circulating water information and the treated water information are all normal, entering a step S9;
s3, the control system generates an instruction and sends the instruction to the secondary raw water data acquisition device, and the secondary raw water data acquisition device further performs data acquisition on raw water information according to the instruction and feeds the raw water information back to the control system;
s4, the control system judges whether the raw water information transmitted by the secondary raw water data acquisition device is abnormal, if so, early warning information or warning information is transmitted to the pre-warning system, after the abnormal processing is finished, the control system returns to the step S1, and if not, the control system enters the step S9;
s5, the control system generates an instruction and sends the instruction to the secondary water circulation data acquisition device, and the secondary water circulation data acquisition device further performs data acquisition on the circulating water information according to the instruction and feeds the circulating water information back to the control system;
s6, the control system judges whether the water circulation information transmitted by the secondary water circulation data acquisition device is abnormal, if so, transmits early warning information or warning information to the pre-warning system, returns to the step S1 after the abnormal processing is finished, and otherwise, enters the step S9;
s7, the control system generates an instruction and sends the instruction to the secondary treated water data acquisition device, and the secondary treated water data acquisition device further performs data acquisition on the treated water information according to the instruction and feeds the data back to the control system;
s8, the control system judges whether the treated water information transmitted by the secondary treated water data acquisition device is abnormal, if so, transmits early warning information or warning information to the pre-warning system, returns to the step S1 after the abnormal treatment is finished, and otherwise, enters the step S9;
and S9, normally operating the data acquisition system.
The invention has the following advantages:
(1) the water consumption information of the water treatment system is monitored in real time through the data acquisition system, so that the water consumption condition of the water treatment system can be reflected in time;
(2) when abnormality occurs, the control system verifies the water consumption information by issuing an instruction, and if the abnormality occurs, the water consumption information is fed back to a user in time through an early warning signal and an alarm signal;
(3) the data collected by each collection point is comprehensively utilized, and the use efficiency of the data is improved.
Drawings
FIG. 1 is a block diagram of a data acquisition system for an intelligent water treatment system;
FIG. 2 is a schematic diagram of a raw water data acquisition device of a data acquisition system for an intelligent water treatment system;
FIG. 3 is a block diagram of a data acquisition system water cycle data acquisition device for an intelligent water treatment system;
FIG. 4 is a block diagram of a data acquisition system process water data acquisition device for use with an intelligent water treatment system;
FIG. 5 is a block diagram of a data acquisition system intelligent water service system for an intelligent water treatment system;
FIG. 6 is a block diagram of a data acquisition system water treatment system for use with an intelligent water treatment system;
FIG. 7 is a block diagram of a data acquisition system industrial wastewater treatment system for use with an intelligent water treatment system.
Reference numerals:
100. a raw water data acquisition device; 110. a primary raw water data acquisition device; 120. a secondary raw water data acquisition device; 200. a water cycle data acquisition device; 210. a primary water cycle data acquisition device; 220. a secondary water cycle data acquisition device; 300. a processed water data acquisition device; 310. a primary treated water data acquisition device; 320. a secondary treated water data acquisition device; 400. a control system; 1. a water source collection system; 2. a water treatment system; 21. a raw water treatment system; 22. an industrial wastewater treatment system; 221. an industrial wastewater classification system; 222. an oily wastewater treatment system; 223. a coal-containing wastewater treatment system; 224. a desulfurization wastewater treatment system; 225. an ammonia-containing wastewater treatment system; 3. a water circulation system; 4. an industrial water system; 5. a sewage treatment system.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Example 1
As shown in fig. 1, a data acquisition system for an intelligent water treatment system includes:
raw water data acquisition device 100: the system is arranged on a water source acquisition system 1 of the intelligent water service system, comprises a flowmeter, a pressure gauge and a water quality detector, is used for acquiring raw water information, and the raw water information comprises water quality of a water taking water source, raw water taking flow and water taking pool water quantity, is used for transmitting the raw water information to a control system 400, and is used for receiving an instruction transmitted by the control system 400; as shown in fig. 2, the raw water data collecting apparatus 100 includes:
the primary raw water data acquisition device 110: for collecting raw water information in real time, and for transmitting the raw water information to the control system 400;
the secondary raw water data acquisition device 120: the system comprises a control system 400, a data processing system and a data processing system, wherein the control system 400 is used for receiving a command transmitted by the control system 400 when the raw water information is abnormal, and is used for rechecking the raw water information and transmitting a detection result to the control system 400;
water cycle data acquisition device 200: the system is arranged on a water circulation system 3 and an industrial water system 4 of the intelligent water service system, comprises a flowmeter, a pressure gauge and a water quality detector, is used for acquiring circulating water information, and the circulating water information comprises circulating water quality, circulating water flow and circulating water amount, is used for transmitting the circulating water information to the control system 400, and is used for receiving an instruction transmitted by the control system 400; as shown in fig. 3, the water cycle data collecting apparatus 200 includes:
the primary water cycle data acquisition device 210: for collecting circulating water information in real time, and for transmitting the circulating water information to the control system 400;
secondary water cycle data acquisition device 220: the system comprises a control system 400, a receiving module, a processing module and a display module, wherein the control system 400 is used for receiving a command transmitted by the control system 400 when the circulating water information is abnormal, and is used for rechecking the circulating water information and transmitting a detection result to the control system 400;
processed water data acquisition device 230: the intelligent water treatment system is arranged on a sewage collecting system 5 and a water treatment system 2 of the intelligent water service system, comprises a flowmeter, a pressure gauge and a water quality detector, is used for collecting sewage treatment information, and the sewage treatment information comprises sewage type, sewage quality, sewage flow and sewage amount, is used for transmitting the sewage treatment information to the control system 400, and is used for receiving an instruction transmitted by the control system 400; as shown in fig. 4, the treated water data collecting apparatus 300 includes:
primary treatment water data acquisition device 310: for collecting sewage treatment information in real time, and for transmitting the sewage treatment information to the control system 400;
secondary treated water data acquisition device 320: the system is used for receiving the instruction transmitted by the control system 400 when the sewage treatment information is abnormal, and is used for rechecking the sewage treatment information and transmitting the detection result to the control system 400;
the control system 400: the system comprises a raw water data acquisition device 100, a water circulation data acquisition device 200, a processed water data acquisition device 300 and a water circulation data acquisition device, and is used for receiving raw water information transmitted by the raw water data acquisition device 100, receiving circulating water information transmitted by the water circulation data acquisition device 200, receiving sewage treatment information transmitted by the processed water data acquisition device 300 and sending instructions 300 to the raw water data acquisition device 100, the water circulation data acquisition device 200 and the processed water data acquisition device.
Wherein, as shown in fig. 5, the intelligent water service system includes:
water source collection system 1: for collecting water at a water source for delivery to the water treatment system 2;
water treatment system 2: the system is used for receiving the water transmitted by the water source acquisition system 1, processing the water and generating industrial water, transmitting the industrial water to the water circulation system 3, receiving the industrial wastewater transmitted by the industrial water system 4, receiving the sewage transmitted by the sewage collection system 5, processing the industrial wastewater and the sewage and generating recovered water, and transmitting the recovered water to the water circulation system 3; as shown in fig. 6, the water treatment system 2 includes:
raw water treatment system 21: the water source collecting system is used for receiving the water transmitted by the water source collecting system 1, treating the water and generating industrial water, and transmitting the industrial water to the water circulating system 3;
industrial wastewater treatment system 22: the industrial wastewater receiving system is used for receiving the industrial wastewater transmitted by the industrial water system 4, receiving the sewage transmitted by the sewage collecting system 5, processing the industrial wastewater and the sewage and generating recovered water, and transmitting the recovered water to the water circulating system 3; as shown in fig. 7, the industrial wastewater treatment system 22 includes:
industrial wastewater classification system 221: the system is used for receiving the industrial wastewater transmitted by the industrial water system 4, classifying the industrial wastewater, wherein the classification result comprises oily wastewater, coal-containing wastewater, desulfurization wastewater and ammonia-containing wastewater, transmitting the oily wastewater to the oily wastewater treatment system 222, transmitting the coal-containing wastewater to the coal-containing wastewater treatment system 223, transmitting the desulfurization wastewater to the desulfurization wastewater treatment system 224 and transmitting the ammonia-containing wastewater to the ammonia-containing wastewater treatment system 225;
oily wastewater treatment system 222: the system is used for receiving the oily wastewater transmitted by the industrial wastewater classification system 221, treating the oily wastewater, extracting recovered water after oil is discharged, and transmitting the recovered water to the water circulation system 3;
coal-containing wastewater treatment system 223: the system is used for receiving the coal-containing wastewater transmitted by the industrial wastewater classification system 221, treating the coal-containing wastewater, extracting recovered water after removing wastes, and transmitting the recovered water to the water circulation system 3;
desulfurization wastewater treatment system 224: the system is used for receiving the desulfurization wastewater transmitted by the industrial wastewater classification system 221, treating the desulfurization wastewater, extracting recovered water after removing wastes, and transmitting the recovered water to the water circulation system 3;
ammonia-containing wastewater treatment system 225: the system is used for receiving the ammonia-containing wastewater transmitted by the industrial wastewater classification system 221, treating the ammonia-containing wastewater, extracting recycled water after removing wastes, and transmitting the recycled water to the water circulation system 3;
a water circulation system 3: for receiving the industrial water and the reclaimed water transmitted by the water treatment system 2, for transmitting the industrial water and the reclaimed water to the industrial water system 4;
industrial water system 4: the industrial water and the reclaimed water are used for receiving the industrial water and the reclaimed water transmitted by the water circulating system 3 and transmitting the industrial wastewater generated by production to the water treatment system 2;
sewage collection system 5: for recovering domestic and fire-fighting water, for mixing the domestic and fire-fighting water into sewage to be delivered to the water treatment system 2.
The embodiment comprises the following steps in the using process:
s1, the primary raw water data acquisition device 110 acquires raw water information in real time, the primary water circulation data acquisition device 210 acquires circulating water information in real time, and the primary treated water data acquisition device 310 acquires treated water information in real time, and transmits the raw water information, the circulating water information, and the treated water information to the control system 400;
s2, analyzing the raw water information, the circulating water information and the treated water information by the control system 400, if the raw water information is found to be abnormal, entering step S3, if the circulating water information is found to be abnormal, entering step S5, if the treated water information is found to be abnormal, entering step S7, and if the raw water information, the circulating water information and the treated water information are all normal, entering step S9;
s3, the control system 400 generates an instruction and sends the instruction to the secondary raw water data acquisition device 120, and the secondary raw water data acquisition device 120 further performs data acquisition on raw water information according to the instruction and feeds the raw water information back to the control system 400;
s4, the control system 400 judges whether the raw water information transmitted by the secondary raw water data acquisition device 120 is abnormal, if so, transmits early warning information or warning information to the pre-warning system, returns to the step S1 after the abnormal processing is finished, and otherwise, enters the step S9;
s5, the control system 400 generates an instruction and sends the instruction to the secondary water circulation data acquisition device 220, and the secondary water circulation data acquisition device 220 further performs data acquisition on the circulating water information according to the instruction and feeds the circulating water information back to the control system 400;
s6, the control system 400 judges whether the water circulation information transmitted by the secondary water circulation data acquisition device 220 is abnormal, if so, transmits early warning information or warning information to the pre-warning system, returns to the step S1 after the abnormal processing is finished, and otherwise, enters the step S9;
s7, the control system 400 generates an instruction and sends the instruction to the secondary treated water data acquisition device 320, and the secondary treated water data acquisition device 320 further performs data acquisition on the treated water information according to the instruction and feeds the data acquisition back to the control system 400;
s8, the control system 400 judges whether the treated water information sent by the secondary treated water data acquisition device 320 is abnormal, if so, sends early warning information or warning information to the pre-warning system, returns to the step S1 after the abnormal treatment is finished, and if not, enters the step S9;
and S9, normally operating the data acquisition system.
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 person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.
Claims (10)
1. A data acquisition system for an intelligent water treatment system, characterized by: the method comprises the following steps:
raw water data acquisition device (100): the system is arranged on a water source acquisition system (1) of the intelligent water service system, is used for acquiring raw water information, and comprises water quality of a water taking water source, raw water taking flow and water taking pool water quantity, is used for transmitting the raw water information to a control system (400), and is used for receiving an instruction transmitted by the control system (400);
water cycle data acquisition device (200): the system is arranged on a water circulation system (3) and an industrial water system (4) of the intelligent water service system, is used for acquiring circulating water information, and the circulating water information comprises circulating water quality, circulating water flow and circulating water amount, is used for transmitting the circulating water information to the control system (400), and is used for receiving an instruction transmitted by the control system (400);
process water data acquisition device (300): the intelligent water treatment system is arranged on a sewage collecting system (5) and a water treatment system (2) of the intelligent water service system, is used for collecting sewage treatment information, and the sewage treatment information comprises sewage type, sewage quality, sewage flow and sewage amount, is used for transmitting the sewage treatment information to the control system (400), and is used for receiving an instruction transmitted by the control system (400);
control system (400): the raw water circulation data acquisition device is used for receiving the raw water information transmitted by the raw water data acquisition device (100), receiving the circulating water information transmitted by the water circulation data acquisition device (200), receiving the sewage treatment information transmitted by the treated water data acquisition device (300), and sending instructions to the raw water data acquisition device (100), the water circulation data acquisition device (200) and the treated water data acquisition device (300).
2. The data acquisition system for an intelligent water treatment system according to claim 1, wherein: the raw water data acquisition apparatus (100) includes:
primary raw water data acquisition device (110): the system is used for collecting the raw water information in real time and transmitting the raw water information to the control system (400);
a secondary raw water data acquisition device (120): the instruction is used for receiving the instruction transmitted by the control system (400) when the raw water information is abnormal, and the instruction is used for rechecking the raw water information and transmitting the detection result to the control system (400).
3. The data acquisition system for an intelligent water treatment system according to claim 1, wherein: the water cycle data acquisition device (200) includes:
first-order water cycle data acquisition device (210): the system is used for acquiring the circulating water information in real time and transmitting the circulating water information to the control system (400);
a secondary water cycle data acquisition device (220): the instruction is used for receiving the instruction transmitted by the control system (400) when the circulating water information is abnormal, and is used for rechecking the circulating water information and transmitting a detection result to the control system (400).
4. The data acquisition system for an intelligent water treatment system according to claim 1, wherein: the treated water data acquisition device (300) comprises:
primary treatment water data acquisition device (310): is used for collecting the sewage treatment information in real time and transmitting the sewage treatment information to the control system (400);
secondary treatment water data acquisition device (320): the instruction is used for receiving the instruction transmitted by the control system (400) when the sewage treatment information is abnormal, and is used for rechecking the sewage treatment information and transmitting a detection result to the control system (400).
5. The data acquisition system for the intelligent water treatment system according to any one of claims 1-4, wherein: the raw water data acquisition device (100), the water cycle data acquisition device (200) and the treated water data acquisition device (300) are flow meters, pressure gauges and water quality detectors.
6. The data acquisition system for an intelligent water treatment system according to claim 5, wherein: the intelligent water affair system comprises:
water source collection system (1): for collecting water at a water source for conveying the water to a water treatment system (2);
water treatment system (2): the system is used for receiving the water transmitted by the water source acquisition system (1), processing the water and generating industrial water, transmitting the industrial water to a water circulation system (3), receiving industrial wastewater transmitted by the industrial water system, receiving sewage transmitted by a sewage collection system, processing the industrial wastewater and the sewage and generating recovered water, and transmitting the recovered water to the water circulation system (3);
water circulation system (3): for receiving the industrial water and the recovered water delivered by the water treatment system (2) for delivering the industrial water and the recovered water to an industrial water system (4);
industrial water system (4): for receiving the industrial water and the recycled water delivered by the water circulation system (3) and for delivering the industrial wastewater resulting from the production to the water treatment system (2);
sewage collection system (5): for recovering domestic water and fire-fighting water, for mixing the domestic water and the fire-fighting water into the sewage to be conveyed to the water treatment system (2).
7. The data acquisition system for an intelligent water treatment system according to claim 6, wherein: the water treatment system (2) comprises:
raw water treatment system (21): for receiving the water delivered by the water source collection system (1), for treating the water and generating industrial water, for delivering the industrial water to a water circulation system (3);
industrial wastewater treatment system (22): the industrial waste water collecting system is used for receiving the industrial waste water transmitted by the industrial water system (4), receiving the sewage transmitted by the sewage collecting system, processing the industrial waste water and the sewage and generating recovered water, and transmitting the recovered water to the water circulating system (3).
8. The data acquisition system for an intelligent water treatment system according to claim 7, wherein: the industrial wastewater treatment system (22) comprises:
industrial wastewater classification system (221): for receiving the industrial wastewater delivered by the industrial water system (4), for classifying the industrial wastewater, the classification result comprising oily wastewater, coal-containing wastewater, desulfurized wastewater, ammonia-containing wastewater, for delivering the oily wastewater to an oily wastewater treatment system (222), for delivering the coal-containing wastewater to a coal-containing wastewater treatment system (223), for delivering the desulfurized wastewater to a desulfurized wastewater treatment system (224), for delivering the ammonia-containing wastewater to an ammonia-containing wastewater treatment system (225);
oily wastewater treatment system (222): the system is used for receiving the oily wastewater transmitted by the industrial wastewater classification system (221), treating the oily wastewater, extracting the recovered water after oil is discharged, and transmitting the recovered water to the water circulation system (3);
coal-containing wastewater treatment system (223): the system is used for receiving the coal-containing wastewater transmitted by the industrial wastewater classification system (221), treating the coal-containing wastewater, extracting the recovered water after removing wastes, and transmitting the recovered water to the water circulation system (3).
9. The data acquisition system for an intelligent water treatment system according to claim 8, wherein: the industrial wastewater treatment system (22) further comprises:
desulfurization wastewater treatment system (224): the system is used for receiving the desulfurization wastewater transmitted by the industrial wastewater classification system (221), treating the desulfurization wastewater, extracting the recovered water after removing wastes, and transmitting the recovered water to the water circulation system (3).
10. The data acquisition system for an intelligent water treatment system according to claim 8, wherein: the industrial wastewater treatment system (22) further comprises:
an ammonia-containing wastewater treatment system (225): the system is used for receiving the ammonia-containing wastewater transmitted by the industrial wastewater classification system (221), treating the ammonia-containing wastewater, extracting the recovered water after removing wastes, and transmitting the recovered water to the water circulation system (3).
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