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Rapid subsidence over oil fields measured by SAR interferometry

机译:SAR干涉法在油田上的快速沉降

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The Lost Hills and Belridge oilfields are in the San Joaquin Valley, California. The major oil reservoir is high porosity and low permeability diatomite. Extraction of large volumes from shallow depths causes reduction in pore pressure and subsequent compaction, forming a surface subsidence bowl. We measure this subsidence from space using interferometric analysis of SAR (Synthetic Aperture Radar) data collected by the European Space Agency Remote Sensing Satellites (ERS-1 and ERS-2). Maximum subsidence rates are as high as 40 mm in 35 days or > 400 mm/yr, measured from interferograms with time separations ranging from one day to 26 months. The 8- and 26-month interferograms contain areas where the subsidence gradient exceeds the measurement possible with ERS SAR, but shows increased detail in areas of less rapid subsidence. Synoptic mapping of subsidence distribution from satellite data powerfully complements ground-based techniques, permits measurements where access is difficult, and aids identification of underlying causes. [References: 24]
机译:Lost Hills和Belridge油田位于加利福尼亚州的圣华金山谷。主要的油藏是高孔隙度和低渗透率的硅藻土。从浅层深度大量采油会降低孔隙压力并随后压实,形成地面沉降碗。我们使用欧洲航天局遥感卫星(ERS-1和ERS-2)收集的SAR(合成孔径雷达)数据进行干涉分析,从太空中测量了这种沉降。根据干涉图测得的最大下陷率在35天内高达40毫米或> 400毫米/年,间隔从1天到26个月不等。 8个月和26个月的干涉图包含沉降梯度超过ERS SAR可能测量的区域,但沉降速度较慢的区域显示的细节增加。利用卫星数据对沉降分布进行概要映射,可以有效地补充基于地面的技术,可以在难以进入的地方进行测量,并有助于识别根本原因。 [参考:24]

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