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Measurement of Natural Gas Emission Rates from Belowground Pipelines

机译:从地下管道测量天然气排放率

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Emissions from natural gas pipeline systems result mainly from fugitive methane (CH_4) leaks of the aged pipelines in the infrastructure. The growing concern over climate change and the need to reduce greenhouse gas emissions has prompted gas companies and federal organizations to recognize the need for accurate methodologies of gas emission estimation. The U.S. Environmental Protection Agency's annual inventory estimates of the methane emissions from underground gas pipes are based on early tests from 1992 to 1994 performed by excavating and isolating a known number of underground leaks and measuring the flow rates in the isolated leaking pipes. This paper presents a new methodology for measuring gas emission from underground pipeline leaks to provide updated estimates with increased accuracy. The new approach consists of capturing the gas emissions at the soil surface, rather than excavating and isolating the leaking pipe. The leak rate is measured at the surface using a Hi-Flow Sampler device. This approach allows one to perform a significantly larger number of tests without the need to excavate the soil, interrupt the service, and cut and isolate the pipe sections for leak measurements. Field measurements in controlled test sections and at gas utility sites in various cities were performed using both the old method of excavating and isolating the pipe and the new approach of surface measurements. The tests were performed in sites with various leak sizes, pipe material, operating pressures, and soil types. The results from both methodologies correlated and demonstrated the applicability of using the Hi-Flow Sampler to measure pipeline gas emissions.
机译:来自天然气管道系统的排放主要来自基础设施中老化管道的逃逸甲烷(CH_4)泄漏。对气候变化的越来越关注和减少温室气体排放的必要性促使天然气公司和联邦组织认识到需要准确的气体排放估计方法。美国环境保护局的年度库存估计来自地下燃气管道的甲烷排放量基于1992年至1994年的早期测试,通过挖掘和隔离已知的地下泄漏并测量隔离泄漏管中的流速来进行。本文提出了一种新方法,用于测量地下管线泄漏的气体排放,以提供更新的准确性估算。新方法包括捕获土壤表面的气体排放,而不是挖掘和隔离泄漏管。使用高流量采样器装置在表面测量泄漏速率。这种方法允许人们在没有需要挖掘土壤,中断服务的情况下进行明显更大的测试,并且将服务和切割并隔离管道部分以进行泄漏测量。使用旧方法进行受控试验部分和在各个城市的燃气实用部门的现场测量,并使用旧方法进行挖掘和隔离管道和表面测量的新方法。在具有各种泄漏尺寸,管材,操作压力和土壤类型的地点进行测试。两种方法的结果相关并证明了使用高流采样器测量管道气​​体排放的适用性。

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