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Title: Microwave radar detection of gas pipeline leaks.

Conference ·
DOI:https://doi.org/10.1063/1.1570174· OSTI ID:803878

We are developing a microwave radar sensing and imaging system to detect and locate gas leaks in natural gas pipelines. The underlying detection principle is radar backscattering from the index-of-refraction inhomogeneities introduced by the dispersion of methane in air. An essential first step in the development effort is modeling to estimate the radar cross section. This paper describes the modeling results and the experimental efforts underway to validate the model. For the case of leaks from small holes in a pressurized gas pipeline, we modeled the gas dynamics of the leak jet to determine the plume geometry and the variation of methane concentration in air as a function of distance from the leak source. From the static and dynamic changes in the index of refraction in the turbulent plume, the radar backscatter cross sections were calculated. The results show that the radar cross sections of the leak plumes should be detectable by special-purpose radars.

Research Organization:
Argonne National Lab., IL (US)
Sponsoring Organization:
US Department of Energy (US)
DOE Contract Number:
W-31-109-ENG-38
OSTI ID:
803878
Report Number(s):
ANL/ET/CP-108774; TRN: US200301%%566
Resource Relation:
Journal Volume: 657; Conference: 29th Annual Review of progress in quantitative nondestructive evaluation, Bellingham, WA (US), 07/14/2002--07/19/2002; Other Information: PBD: 2 Oct 2002
Country of Publication:
United States
Language:
English