Method for managing urban water supply pipes

A management method and technology for urban water supply, applied in pipeline systems, mechanical equipment, gas/liquid distribution and storage, etc., can solve the problems of water resource loss economy, water resource waste, economic loss, etc., to avoid waste and ensure stability , reducing the effect of remedial situations

Inactive Publication Date: 2016-05-25
安徽海兴泰瑞智能科技有限公司
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  • Abstract
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AI Technical Summary

Problems solved by technology

However, these leakage points have existed for a long time before pipe burst accidents usually occur, and thus caused a large amount of water resource loss and

Method used

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  • Method for managing urban water supply pipes

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Embodiment Construction

[0015] The present invention will be further described below in conjunction with accompanying drawing:

[0016] Such as figure 1 Shown, a kind of urban water supply pipe management method comprises the following steps:

[0017] S1: Establish a geographical information system for the water supply network;

[0018] S2: Monitor the water flow data in the water supply pipe network, the water flow data includes flow data, pressure data, and noise data;

[0019] S3: Install the sound sensor at each monitoring point of the water supply pipe network, and collect the noise value of the water supply pipe at each monitoring point when the water supply pipe network is in a normal state;

[0020] S4: Calculate the leakage performance index of each pipe network area in the water supply pipe network according to the geographic information system of the water supply pipe network, noise value and water flow data, and determine the leakage performance index of each pipe network in the water s...

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Abstract

The invention relates to a method for managing urban water supply pipes. The method comprises the following steps: establishing a water supply pipe network geographic information system to monitor water flow data in a water supply pipe network; placing a sound sensor at each monitoring point of the water supply pipe network to collect noise values of the water supply pipe at each monitoring point in the normal state of the water supply network; calculating the leakage performance index in each pipe network region and the water resource abundance index in each pipe network region in the water supply pipe network, and determining the pipe network regions required to be treated; calculating the active leakage control operation cost and the lost water cost of each leakage point in the network regions required to be treated, and determining the leakage points required to be treated in the network regions required to be treated. The method has the advantages that the water flow data of the pipe network can be monitored, leakage conditions of the water supply pipe network are determined, and leakage treatment strategies are provided, therefore, occurrences of post-event remediation are reduced, and the water loss and the operation cost of the pipe network are lowered.

Description

technical field [0001] The invention relates to the technical field of water supply pipe monitoring, in particular to a method for managing urban water supply pipes. Background technique [0002] Water supply pipe network leakage is a global problem. According to literature reports, the current global average pipe network leakage rate (the amount of water leaked from the pipe network divided by the total water supply) is 35%. Therefore, in order to save water resources and achieve sustainable development, it is necessary to reduce the leakage of pipe network. There are many reasons for the leakage of the pipeline network, such as damage to the main body of the pipeline, damage to the connection of the pipeline, leakage of pipeline accessories (gates, valves, fire hydrants, etc.). [0003] At present, the leakage monitoring of the pipeline network system often only relies on checking the leakage point where the pipe burst accident occurred, and then takes remedial measures a...

Claims

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Application Information

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IPC IPC(8): F17D5/02
CPCF17D5/02
Inventor 汪伟刘天霁汪继红吴立群
Owner 安徽海兴泰瑞智能科技有限公司
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