首页> 外文会议>SPE International Conference and Exhibition on Health, Safety, Security, Environment, and Social Responsibility >Remote Sensing Technologies for Detecting, Visualizing and Quantifying Gas Leaks
【24h】

Remote Sensing Technologies for Detecting, Visualizing and Quantifying Gas Leaks

机译:用于检测,可视化和量化气体泄漏的遥感技术

获取原文

摘要

Remote sensing technologies can be applied for a wide range of gas leak flowrates and in three main cases: (1) major leaks in crisis management; (2) medium size leaks in safety monitoring; (3) small leaks in environmental monitoring. A gas test campaign, conducted by Total, the ONERA – the French Aerospace Lab – and ADCIS in September 2015 using three hyperspectral infrared cameras from Telops, confirmed our capacity to visualize in 3D and quantify in real time plumes of methane in the range of 1 g/s to 50g/s. The R&D project on gas remote quantification continued with a second gas test campaign in 2017. The second gas test campaign was organized on Total's Lacq Pilot Platform in France and involved several gas spectral imaging systems: (1) mobile hyperspectral cameras in the Long-Wavelength InfraRed (LWIR) band (7.7-12μm); (2) a multispectral camera in the LWIR band (7-9μm); (3) a multigas lidar (LIght Detection And Ranging) system coupled with a wind lidar system; (4) five other international teams (US, Spain, Norway and France) were also invited to assess the capacity of their remote-sensing systems to quantify methane and carbon dioxide releases. The two-week test demonstrated that methane leak emissions ranging from 0.7 g/s to 140 g/s could be visualized and quantified in real time using a mobile Telops Hyper-Cam. This campaign also served to validate the performance of several remote sensing technologies. Total's Lacq Pilot Platform is a test area for qualifying cost-effective systems designed to complement the gas detection system of a plant and provide valuable information should a gas leak incident occur. New methodologies for the early detection of anomalies using remote observation systems including drones, robots and artificial intelligence data processing systems are currently being investigated there.
机译:遥感技术可用于各种气体泄漏流量,三种主要情况下:(1)危机管理中的主要泄漏; (2)安全监测中大小泄漏; (3)环境监测小泄漏。通过从纺织的三个高光谱红外相机进行的总共,ONERA - 法国航空航天实验室和ADCIS进行了一项燃气测试活动,确认了我们在3的甲烷的3D中显示了3D并量化的能力,在1的范围内g / s至50g / s。 2017年的第二个气体测试活动持续下载天然气远程量化的研发项目。第二次气体测试活动在法国的总LACQ试验平台上组织,涉及几种气体光谱成像系统:(1)长波长的移动高光谱相机红外线(LWIR)带(7.7-12μm); (2)LWIR带中的多光谱相机(7-9μm); (3)与风潮系统相连的Multigas LIDAR(光检测和测距)系统; (4)还有五个其他国际团队(美国,西班牙,挪威和法国)还被邀请评估其遥感系统量化甲烷和二氧化碳释放的能力。为期两周的测试表明,使用移动纺织型超级凸轮实时可视化和量化从0.7 g / s至140g / s的甲烷泄漏排放。此活动还用于验证几种遥感技术的性能。总LACQ Pilot平台是一个测试领域,用于符合资格性成本效益的系统,旨在补充植物的气体检测系统,并提供有价值的信息,如果发生气体泄漏事件发生。目前正在调查使用包括无人机,机器人和人工智能数据处理系统的远程观察系统早期检测异常的新方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号