基于三维有限元法的洞穴型储层双侧向数值模拟及特征分析

IF 1.6 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS 地球物理学报 Pub Date : 2017-05-01 DOI:10.1002/CJG2.30044
Wang Lei, Fan Yi-ren, Gao Yan-Wu, Fan Zhuo-Ying, Wu Zhenguan
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引用次数: 5

摘要

海绵状碳酸盐岩地层具有较强的非均质性,导致测井响应复杂,测井识别和评价困难。电测井工具的数值模拟有助于了解这些地层的测井响应特征,为洞穴识别和评价提供理论支持。本文在三维有限元方法的基础上,采用局部细化技术对复杂球形洞穴进行精确离散化和模拟。然后,分析了双侧向测井对井筒周围洞穴和穿透洞穴的响应特性和敏感性,最后研究了深、浅侧向测井敏感范围的差异。结果表明,当存在溶洞时,双侧向测井响应显著降低。受洞穴边界和双侧向测井工具探测深度的影响,井筒穿透洞穴的测井响应非常复杂,但对井筒周围的洞穴表现出抛物线状特征。与井筒周围的洞穴相比,双侧向测井对井筒穿透的洞穴更加敏感。对于井筒周围的洞穴,洞穴边界与井壁之间的深、浅侧向测井最大敏感距离分别为0.5m和0.3m。
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NUMERICAL SIMULATION AND CHARACTERISTICS ANALYSIS OF DUAL LATEROLOG IN CAVERNOUS RESERVOIRS ON THE BASIS OF 3D‐FEM
Cavernous carbonate formations are characterized by strong heterogeneity, which results in the complex electric logging responses and the difficulty in the logging identification and evaluation. Numerical simulation of electric logging tools is helpful to figure out the logging response characteristics in these formations and could provide theoretical support for cave recognition and evaluation. In this paper, based on three dimensional finite element methods, a local refinement technique is adopted for the accurate discretization and simulation of complex sphere caves. Then, the response characteristics and sensitivity of dual laterolog to caves around and penetrated by wellbore are analyzed, finally the differences of sensitive scope between deep and shallow laterolog are studied. The results show that the dual laterolog response decreases significantly when cave exists. Affected by cave boundary and the investigation depth of dual laterolog tool, the logging response for caves penetrated by wellbore is very complicated, however it exhibits parabolic-like characteristic for caves around wellbore. Compared with caves around wellbore, the dual laterolog is much more sensitive to caves penetrated by wellbore. For caves around wellbore, the maximum sensitive distance for deep and shallow laterolog between the cave boundary and well wall is 0.5 m and 0.3 m, respectively.
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来源期刊
地球物理学报
地球物理学报 地学-地球化学与地球物理
CiteScore
3.40
自引率
28.60%
发文量
9449
审稿时长
7.5 months
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