Gas concentration detection via multi-channeled air sampling method

Author:

Hou Longfei,Wang Dan,Du Bingxuan,Qian Xinmin,Yuan Mengqi

Abstract

Purpose The purpose of this paper is to present a new technique for monitoring gas leakage in underground pipelines to prevent dangerous explosions. Design/methodology/approach A novel system for monitoring methane concentration in underground spaces was developed by integrating the multi-channeled air sampling method with an infrared gas sensor. A pipe installation methodology (without excavation) was established and verified accordingly. Findings The proposed approach was proven successful in reducing the quantity of sensors needed for real-time monitoring of underground pipeline leakage by about 80 per cent. Furthermore, this system lowers total operational cost by as much as 60 per cent. Originality/value The results presented here represent a possible solution to reducing the public safety risks associated with explosions and fires caused by pipeline leakage in underground spaces. Its total cost is low and its monitoring efficiency is high.

Publisher

Emerald

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering

Reference16 articles.

1. Brooks, B. (2015), “Transport modeling and response characteristics of commercial catalytic bead sensors”, Master’s thesis, Materials Engineering.

2. Direct inspection technology and method for external anticorrosion coating of buried steel pipe;Gas & Heat,2007

3. Current and emerging laser sensors for greenhouse gas sensing and leak detection;Spectroscopy- Springfield then Eugene then Duluth,2014

4. Evaluation of the efficiency of deodorants by semiconductor gas sensors;Sensors & Actuators B Chemical,1996

5. Analysis of the smallest detectable leakage flow rate of negative pressure wave-based leak detection systems for liquid pipelines;Computers & Chemical Engineering,2008

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