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Benefit of a Typical Injection Well at The Geysers Field

机译:间歇泉油田典型注入井的好处

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An Injection Benefit (IB) Model for a typical injection well has been developed for The Geysers Field. The IB Model is a spreadsheet based model which consists of actual and/or proposed injection rate for wells in gallons per minute (gpm) and converts the injection rate to an average megawatt (MW) increase in steam flow and is based on a rate analysis and a material balance for the entire Geysers Field and is a function of time. One aspect of the IB Model is the calculation of Injection Derived Steam (IDS) which is a tank-model and incorporates the water augmentation history of The Geysers Field and future plans for reservoir management. The Geysers Field at the end of 2013 is made up of approximately 448 wells and electrical generation was 890 MW gross and the injection mass replacement ratio has increased to an annual rate of 78%. As the program of augmented injection has brought mass injection into near-parity with mass production, the rate of reservoir pressure decline has been significantly reduced such that steam flow decline is between 1 and 2%. An IB Model was successfully applied to California Division of Oil, Gas and Geothermal (CDOGGR) data for The Geysers Field. Historical flow data between 1987 and 2013 is included in a single model. Based on study results of a tank-model for The Geysers Field, 83% of water injection is boiling and is needed to match production. A 500 gpm injection well brings about a 4 MW benefit over ten-years. Although this paper documents the overall use of a single tank-model for the entire Geysers Field, the tank-model can be subdivided into two or more parts when a model doesn't give satisfactory results.
机译:为喷泉领域开发了一种用于典型喷射井的注射益处(IB)模型。 IB模型是一种基于电子表格的模型,由每分钟加仑(GPM)的井中的实际和/或提出注射速率组成,并将喷射速率转化为蒸汽流量的平均兆瓦(MW)增加,并且基于速率分析以及整个喷泉场的材料平衡,是时间的函数。 IB模型的一个方面是计算注射衍生的蒸汽(IDS),其是坦克模型,并包含喷泉领域的水增强历史和水库管理的未来计划。 2013年底的喷泉现场由大约448孔,发电量为890兆瓦,注射体重置换比率增加到每年的78%。随着增强注射的程序使大规模注入的近平等带入批量生产,储层压力下降的速率显着降低,使得蒸汽流量下降介于1到2%之间。 IB模型已成功应用于喷泉域的加州石油,天然气和地热(Cdoggr)数据分工。 1987年至2013之间的历史流量数据包括在一个模型中。基于喷泉场的坦克模型的研究结果,83%的注水是沸腾的,需要匹配生产。 500 GPM注入良好良好带来约4兆瓦的益处超过十年。虽然本文记录了整个喷泉场的单个罐式模型的整体使用,但是当模型没有给出令人满意的结果时,坦克模型可以被细分为两个或多个部分。

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