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Method to Evaluate the Potential of Water Injection in Naturally Fractured Reservoirs

机译:天然裂缝性储层注水潜力评价方法

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Is there any method to study the feasibility of water injection into naturally fractured geothermal reservoirs before implementing liquid injection? How can we identify the difference of water injectability between different reservoirs? Spontaneous water imbibition tests in rocks from The Geysers and in Berea sandstone have been designed to answer these questions. The maximum water saturation and the maximum imbibition rate by spontaneous water imbibition were used to evaluate the feasibility and the ability of water injection into geothermal reservoirs. Reservoirs with high imbibition rates and high maximum water saturation are good candidates for water injection. If there is no imbibition of water into the rocks at all, then the reservoir is not suitable for water injection. The relationships between imbibition rate and time for The Geysers rocks have been measured under countercurrent and cocurrent imbibition conditions, respectively. The measured maximum water saturation by the spontaneous water imbibition in The Geysers rock was about 87.9%, which was greater than that in Berea although the imbibition rate was lower. Experimental results and the continuing practice of water injection in the field showed that The Geysers geothermal reservoir may be appropriate for water injection.
机译:在实施注水之前,是否有任何方法研究将水注入自然裂缝地热储层的可行性?我们如何确定不同水库之间注水能力的差异?间歇泉中的岩石和Berea砂岩中的自发吸水试验旨在回答这些问题。通过自发吸水的最大水饱和度和最大吸水率来评估向地热储层注水的可行性和能力。具有高吸水率和高最大水饱和度的储层是注水的良好候选者。如果根本没有将水吸收到岩石中,则说明该储层不适合注水。分别在逆流和并流吸收条件下测量了间歇泉岩石的吸收速率与时间之间的关系。间歇泉岩石中自发吸水测得的最大水饱和度约为87.9%,尽管吸水率较低,但比Berea更大。实验结果和现场注水的持续实践表明,Geysers地热储层可能适合注水。

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