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A Simulation Study on the Analysis of Optimal Gas Storage System of the Depleted Gas Reservoir

机译:枯竭气藏最佳储气系统分析的模拟研究

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In this study we have attempted to evaluate the technical feasibility of BB-HY,which is depleted gas reservoir as a gas storage field,using the commercial compositional simulator ECLIPSE 300.The BB-HY reservoir has an initial gas in place of 143 BCF which is relatively small,and its porosity and permeability are 19.5% and 50 md,respectively.For BB-HY gas reservoir,we have performed a feasibility analysis by investigating the cushion gas (or working gas),converting time to gas storage field,operation cycle,number of wells and the possible application of horizontal borehole as well.From the simulation results,it was found that the amount of cushion gas in BB-HY reservoir is required at least 50% of IGIP in order to operate stably as gas storage field.When one produces gas for longer time and hence the remaining gas in reservoir is less than optimal cushion gas,no technical problem was occurred as long as additional cushion gas is injected up to the optimal cushion gas.In the case of changing the operation cycle into producing gas for three months during winter season from producing five months,the result shows that either the cushion gas should be greater than 60% or the more number of wells should be drilled.Meanwhile,from the results of sensitivity analysis for the number of wells,in cases of operating six or eight vertical wells,the stable reproduction of the injected gas can not be possible in BB-HY gas reservoir since the remaining gas in reservoir is increased.Therefore in BB-HY reservoir,at least ten vertical wells should be drilled for the stable operation of gas.This time,when three horizontal wells are additionally drilled including the existing two vertical wells,it was found that the operation of injection and reproduction of gas is relatively stable in BB-HY gas reservoir.
机译:在这项研究中,我们尝试使用商业成分模拟器ECLIPSE 300评估BB-HY的技术可行性,该BB-HY是一种贫气储气库,BB-HY储气库的初始气体代替了143 BCF, BB-HY气藏相对较小,孔隙度和渗透率分别为19.5%和50 md。通过对垫层气(或工作气)进行研究,将时间转换为储气层,进行了作业,进行了可行性分析。从模拟结果发现,BB-HY储层中的缓冲气量至少需要IGIP的50%,才能稳定地进行储气作业。当人们长时间生产天然气而储层中的剩余气体少于最佳缓冲气时,只要注入额外的缓冲气至最佳缓冲气就不会发生技术问题。将作业周期从冬季的5个月提高到冬季的3个月,结果表明,缓冲气应大于60%或应钻更多的井。同时,根据敏感性分析的结果对于井数,在操作六或八口垂直井的情况下,由于BB-HY气藏中的剩余气体增加,BB-HY气藏无法稳定注入的气。因此,BB-HY气藏在至少要钻10口垂直井才能使天然气稳定运行。这次,在BB-HY上再钻3口水平井,包括现有的2口垂直井时,发现注气和增产操作相对稳定。气藏。

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