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Underground pipe network leak detection method

A technology of underground pipe network and detection method, which is applied in pipeline systems, mechanical equipment, gas/liquid distribution and storage, etc., can solve the problem of no technology being found, and achieve the effect of improving leakage identification rate, work efficiency and broad application prospects.

Active Publication Date: 2014-07-09
SHENZHEN GRADUATE SCHOOL TSINGHUA UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the effective detection of water leakage in the water supply pipe network, especially the detection of water leakage in ultra-deep, large-diameter, non-metallic pipes, has always been a worldwide problem. The International Water Association has been collecting water leakage detection methods worldwide for nearly 10 consecutive years , but no effective technique has been found

Method used

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Embodiment Construction

[0033] The present invention will be further described in detail below through embodiments in conjunction with the accompanying drawings.

[0034] see figure 1 , in one embodiment, the underground pipe network leak detection is performed through the following process.

[0035] According to the GIS information of the underground pipeline network, the pipeline network model and the topographic map of the city, on the basis of the analysis of historical data, a work plan is formulated and the area to be detected for leakage is selected. The detection object can be the ambient temperature change caused by the leakage point or Changes in ambient gas concentration caused by leaking inert gas.

[0036] The selected area is then photographed. The shooting method can be manual shooting, vehicle-mounted instrument shooting, aerial shooting or satellite shooting. The shooting device can be an infrared camera, an ultraviolet camera or a terahertz camera. The appropriate shooting wavel...

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Abstract

The invention discloses an underground pipe network leak detection method. The underground pipe network leak detection method includes following steps: a, performing infrared, ultraviolet or terahertz camera shooting on an area where a pipeline is located; b, performing gray processing on a captured image, identifying gradient change in the image by using an edge detection method based on an isoline principle so as to identify gradient change of temperature or inert gas concentration in the filmed area, and confirming the boundary of a temperature jump area where temperature jump exists or the boundary of an inert gas concentration jump area where inert gas concentration jump exists according to preset gradient jump change threshold value; c, confirming an underground pipe network leak area according to the boundary of the temperature jump area or the boundary of the inert gas concentration jump area. The underground pipe network leak detection method can rapidly and accurately confirm underground pipe network leak points.

Description

technical field [0001] The invention relates to a method for detecting leakage of an underground pipe network. Background technique [0002] Material leakage in the underground pipe network is an inevitable problem. The leakage of the water supply pipe network will cause waste of water resources; the leakage of the sewage pipe network will pollute the groundwater quality, and the infiltration of groundwater in the sewage pipe network will also increase the operating costs of the sewage treatment plant. The leakage of the gas and oil pipeline network will cause the loss of personnel and property; the leakage of the heat pipeline network will also cause a waste of energy. Therefore, the invention of underground pipe network leak detection method is very important. [0003] The current leakage detection methods of underground water supply pipe network are basically empirical judgment, listening method and correlation method detection, combined with regional flow measurement to...

Claims

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Application Information

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IPC IPC(8): F17D5/02
Inventor 王荣合孙继龙杨海波平俊晖蔡亮肖朝红梁燚李思邹剑李珊珊罗靖王小雪
Owner SHENZHEN GRADUATE SCHOOL TSINGHUA UNIV
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