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Field Deployment of a Portable Optical Spectrometer for Methane Fugitive Emissions Monitoring on Oil and Gas Well Pads

机译:便携式光谱仪的现场部署用于监测油气井垫板中的甲烷逸散排放

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摘要

We present field deployment results of a portable optical absorption spectrometer for localization and quantification of fugitive methane (CH4) emissions. Our near-infrared sensor targets the 2ν3 R(4) CH4 transition at 6057.1 cm−1 (1651 nm) via line-scanned tunable diode-laser absorption spectroscopy (TDLAS), with Allan deviation analysis yielding a normalized 2.0 ppmv∙Hz−1/2 sensitivity (4.5 × 10−6 Hz−1/2 noise-equivalent absorption) over 5 cm open-path length. Controlled CH4 leak experiments are performed at the METEC CSU engineering facility, where concurrent deployment of our TDLAS and a customized volatile organic compound (VOC) sensor demonstrates good linear correlation (R2 = 0.74) over high-flow (>60 SCFH) CH4 releases spanning 4.4 h. In conjunction with simultaneous wind velocity measurements, the leak angle-of-arrival (AOA) is ascertained via correlation of CH4 concentration and wind angle, demonstrating the efficacy of single-sensor line-of-sight (LOS) determination of leak sources. Source magnitude estimation based on a Gaussian plume model is demonstrated, with good correspondence (R2 = 0.74) between calculated and measured release rates.
机译:我们提出了便携式光学吸收光谱仪的现场部署结果,用于对挥发性甲烷(CH4)排放进行定位和量化。我们的近红外传感器通过线扫描可调谐二极管-激光吸收光谱法(TDLAS),以6057.1 cm -1 (1651 nm)定位2ν3R(4)CH4跃迁,通过Allan偏差分析得出标准化的2.0 ppmv∙Hz −1/2 灵敏度(4.5×10 −6 Hz −1/2 噪声等效吸收)超过5 cm开路长度。在METEC CSU工程设备上进行了受控的CH4泄漏实验,在该设备上同时部署我们的TDLAS和定制的挥发性有机化合物(VOC)传感器显示出高流量时线性关系良好(R 2 = 0.74) (> 60 SCFH)CH4释放持续4.4小时。结合同时进行的风速测量,可通过CH4浓度与风向角的相关性确定泄漏到达角(AOA),证明了泄漏源的单传感器视线(LOS)测定的功效。证明了基于高斯羽流模型的源震级估算,在计算出的释放速率和测得的释放速率之间具有良好的对应关系(R 2 = 0.74)。

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