首页> 外文期刊>Journal of Petroleum Science & Engineering >Risk assessment of seismic hazards in hydraulic fracturing areas based on fuzzy comprehensive evaluation and AHP method (FAHP): A case analysis of Shangluo area in Yibin City, Sichuan Province, China
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Risk assessment of seismic hazards in hydraulic fracturing areas based on fuzzy comprehensive evaluation and AHP method (FAHP): A case analysis of Shangluo area in Yibin City, Sichuan Province, China

机译:基于模糊综合评价和AHP方法的液压压裂地区地震危害风险评估 - 中国四川宜宾市商洛地区的案例分析

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摘要

In this paper, a fuzzy comprehensive evaluation (FCE) based on the analytic hierarchy process (AHP) model (FAHP) has been established to quantitatively evaluate the seismic risk of the region with covers 3080.25?km2including hydraulic fracturing operation areas. Taking into account the combined effect exerted by influencing factors such as geological structures, the seismic history and the stress accumulation, etc., six major factors are identified, namely, seismicity rates (Z value), magnitude-frequency coefficients (b value), salt mines, reservoirs, regional geotectonic (distribution of active faults), stress fields and the spatial distribution of fracturing platforms. In addition to using massive raw data as objective information, this model takes experts' assessments as the subjective judgment of expertise. According to the maximum membership principle, the most favorable risk evaluation have been made in 625 grids with optimized results through methods of the weighted average and the interpolation. Comprehensive evaluation maps have been drawn based on the seismic data from 2008 to 2016 used in modeling and have been validated by the seismic data in 2017. Results show that most of the seismic events in 2017 have fit into the high-risk area, especially those felt earthquakes larger than magnitude 3 have entirely fit into the medium-high risk area after the interpolation, indicating that the assessment results have certain objectivity and accuracy.
机译:本文已经建立了基于分析层次过程(AHP)模型(FAHP)的模糊综合评估(FCE),以定量评估该区域的地震风险,涵盖3080.25?KM2的水力压裂操作区域。考虑到通过影响地质结构,地震历史和应力累积等影响因素所施加的综合效应,识别出六个主要因素,即地震性率(Z值),大小频率系数(B值),盐矿,水库,区域地理位置(积极断层的分布),应力场和压裂平台的空间分布。除了使用大规模的原始数据作为客观信息外,该模型还将专家评估视为专业知识的主观判断。根据最大成员原则,最有利的风险评估已经在625个网格中进行,通过加权平均值和插值的方法优化结果。综合评估地图已经根据建模的2008年到2016年的地震数据绘制,并通过2017年的地震数据验证。结果表明,2017年的大多数地震事件都适应高风险区域,特别是那些毛毡大于幅度3的地震完全符合内插后的中高风险区域,表明评估结果具有一定的客观性和准确性。

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