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Qualitative and quantitative interpretation of fracture system in Yinchuan plain based on gravity data |
Cheng LIU1, Yu-Shan YANG1( ), Tian-You LIU1, Dan ZHU1, Bai-Zhou AN2 |
1. Institute of Geophysics and Geomatic,China University of Geosciences,Wuhan 430074,China 2. Ningxia Geophysical and Geochemical Exploration Institute,Yinchuan 750004,China |
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Abstract The Yinchuan plain is a region of active faults which are closely related to earthquake disasters. The study of active faults in the Yinchuan plain is of great significance for the development of the city. In this paper, the gravity anomaly characteristics of the area are analyzed and the fracture system is divided by the method of gravity boundary recognition based on the re-processing of 1∶200 000 Bouguergravity anomaly data of the Yinchuan plain. The quantitative inversion of the 83503 line section of the study area is carried out by using the method of fracture parametric graph, the Euler homogeneous equation, the optimal inversion and the 2.5D inversion. The inversion results and the seismic interpretation are coincident. Using the existing gravity data, the authors probed into the method of interpreting the plane fracture system and the quantitative inversion of the section fracture and, as a result, some new understanding was obtained such as the north extension of the Yinchuan fault and westward migration of a part of Yellow River fault. The result provides a new reference for the research on active faults.
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Received: 08 April 2018
Published: 20 February 2019
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Corresponding Authors:
Yu-Shan YANG
E-mail: samyys@126.com
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Regional geology of Yinchuan plain (from Regional geology of the Ningxia Hui Autonomous Region) 1—Holocene and Pleistocene;2—Miocene;3—Oligocene;4—Cretaceous;5—Jurassic;6—upper Triassic;7—middle Triassic;8—lower Triassic;9—Permian;10—lower Permian and upper Carboniferous;11—Carboniferous;12—Ordovician;13—Cambrian;14—Proterozoic quartz diorite;15—main fracture;16—the Yellow River
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Local gravity anomalies and major geological structural information in Yinchuan plain F1—Helanshan fault;F2—Luhuatai fault;F3—Yinchuan fault;F4—the Yellow River fault
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Theoretical step model recognition results of boundary recognition methods a—gravity anomaly of theoretical step model;b—THDR;c—TA;d—TA-THDR;e—TA-(θ map)
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台阶倾角 | 台阶上顶点理 论水平位置 /m | 总水平导数 | 倾斜角总水平导数 | 倾斜角θ图法 | 计算结果 /m | 绝对误差 /m | 计算结果 /m | 绝对误差 /m | 计算结果 /m | 绝对误差 /m | 30° | -2598 | -3800 | 1202 | -3000 | 402 | -3400 | 802 | 60° | -866 | -1400 | 534 | -1000 | 134 | -1200 | 334 | 90° | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 120° | 866 | 1400 | 534 | 1000 | 134 | 1200 | 334 |
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Comparison and analysis of common boundary recognition methods
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The gradient inversion method coordinates and the map of Elliptical parameter.
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Division and correlation of faults in Yinchuan plain (according to the TA-θ map. The red lines represent the faults changed from Changqing Petroleum Exploration Bureau,the blue lines are the result of this paper) F1—Helanshan fault;F2—Luhuatai fault;F3—Yinchuan fault;F4—the Yellow River fault;F5—the IV class faults
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Gravity extended section of line 83503
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Gravity quantitative inversion of Yinchuan fault 25 000~37 000 m a—inversion result of Yinchuan fault parameter diagram;b—analysis of relationship between structural index and top depth of step model;c—inversion results of each method in Yinchuan fault
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2.5D inversion result of gravity extension line and seismic profile of line 83503 a—2.5D inversion result of line 83503 gravity extension line(the black solid line is the measured anomaly) and the red dashed line is the fitting anomaly;b—seismic reflection profile of line 83503
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