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Low resistivity oil(gas)-bearing reservoir conductive model --Dual water clay matrix conductive mode Low resistivity oil(gas)-bearing reservoir conductive model --Dual water clay matrix conductive mode

Low resistivity oil(gas)-bearing reservoir conductive model --Dual water clay matrix conductive mode

  • 期刊名字:中國科學(xué)D輯
  • 文件大?。?/li>
  • 論文作者:潘和平,王家映,樊政軍,馬勇,柳建華,李明強
  • 作者單位:China University of Geosciences,Northwest Petroleum Company
  • 更新時間:2023-02-02
  • 下載次數(shù):
論文簡介

Shaly sands reservoir is one of the most distributive types of the oil(gas)-bearing reservoirs discovered in China, and low resistivity oil(gas)-bearing reservoirs are mostly shaly sands reservoirs. Therefore, shaly sands reservoir conductive model is the key to evaluate low resistivity oil(gas)-bearing reservoirs using logging information. Some defects were found when we studied the clay distribution type conductive model, dual-water conductive model, conductive rock matrix model, etc. Some models could not distinguish the conductive path and nature of microporosity water and clay water and some models did not consider the clay distribution type and the mount of clay volume. So, we utilize the merits,overcome the defects of the above models, and put forward a new shaly sands conductive model-dual water clay matrix conductive model (DWCMCM) in which dual water is the free water and the microporosity water in shaly sands and the clay matrix(wet clay) is the clay grain containing water. DWCMCM is presented here, the advantages of which can tell the nature and conductive path from different water (microporosity water and freewater), in consid-eration of the clay distribution type and the mount of clay volume in shaly sands. So, the results of logging interpretation in the oil(gas)-bearing reservoirs in the north of Tarim Basin area, China with DWCMCM are better than those interpreted by the above models.

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