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Addressing limitations in existing 'simplified' liquefaction triggering evaluation procedures: application to induced seismicity in the Groningen gas field

机译:解决现有的“简化”液化触发评估程序的限制:应用于在格罗宁根气田引起地震的应用

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摘要

The Groningen gas field is one of the largest in the world and has produced over 2000 billion m(3) of natural gas since the start of production in 1963. The first earthquakes linked to gas production in the Groningen field occurred in 1991, with the largest event to date being a local magnitude (M-L) 3.6. As a result, the field operator is leading an effort to quantify the seismic hazard and risk resulting from the gas production operations, including the assessment of liquefaction hazard. However, due to the unique characteristics of both the seismic hazard and the geological subsurface, particularly the unconsolidated sediments, direct application of existing liquefaction evaluation procedures is deemed inappropriate in Groningen. Specifically, the depth-stress reduction factor (r(d)) and the magnitude scaling factor relationships inherent to existing variants of the simplified liquefaction evaluation procedure are considered unsuitable for use. Accordingly, efforts have first focused on developing a framework for evaluating the liquefaction potential of the region for moment magnitudes (M) ranging from 3.5 to 7.0. The limitations of existing liquefaction procedures for use in Groningen and the path being followed to overcome these shortcomings are presented in detail herein.
机译:格罗宁根天然气领域是世界上最大的气田之一,自1963年生产开始以来生产的天然气超过2000亿米(3)米(3)米。1991年,Groningen领域的燃气产量相关的第一次地震发生在1991年迄今为止最大的事件是局部幅度(ml)3.6。结果,现场操作员导致努力量化气体生产作业导致的地震危害和风险,包括液化危害的评估。然而,由于地震危害和地质地下的独特特征,特别是未溶结的沉积物,直接应用现有的液化评估程序在格罗宁根被视为不恰当。具体地,深度应力降低因子(R(d))和固定的简化液化评估过程的现有变体所固有的幅度缩放因子关系被认为是不合适的。因此,首先努力专注于开发用于评估该区域的液化电位的框架,其力矩大小(m)为3.5至7.0。本文详细介绍了在Groningen中使用的现有液化程序的局限性和克服这些缺点的路径。

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