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A Laboratory study of single-well steam-assisted gravity drainage process

机译:单井蒸汽辅助重力排水过程的实验室研究

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摘要

An investigation of the optimization of startup procedure for single-well steam-assisted gravity drainage (SW-SAGD) wasmade as the project economics are influenced significantly by the early production response. An experimental investigation of two early-time processes namely cyclic steam injection and steam circulation to imrove reservoir heating is discussed and compared to continuous steam injection as well as other well configurations like vertica injection-horizontal producer and horizontal injector-horizontal producer. Crushed limestone saturated with heavy oil (12.8 deg API) and water was packed in a laboratory model for the experiments. The effectiveness of the methods is compared within themselves and to conventional steam-assisted gravity drainage (SAGD) by measuring the size of the steam chamber as a function of time. The steam chamber area for cycic steam injection is slightly greater than that of steam circulation case. Furthermore, numerical simulation studies of different early-time processes were conducted and compared to the experimental data using a commercial simulator. It was observed that the numerical model results underestimated the cumulative oil recovery and the steam chamber size. Results from this study, including cumulative recoveries, temperature distributions, and production rates display the differences between the methods.
机译:作为项目经济学的单井蒸汽辅助重力排水(SW-SAGD)的启动程序优化的调查是通过早期生产响应显着影响。讨论了两个早期过程的实验研究即,循环蒸汽喷射和蒸汽循环与Imrove储层加热的蒸汽循环,与连续蒸汽喷射以及类似于Vertica注射水平的生产者和水平注射器水平的生产者的其他井配置。用重油(12.8℃)和水饱和烧碎的石灰石在实验模型中填充了实验。通过测量作为时间的函数的函数,将方法的有效性和传统的蒸汽辅助重力引流(SAGD)进行比较。用于CICIC蒸汽喷射的蒸汽室区域略大于蒸汽循环壳体。此外,使用商业模拟器进行不同早期过程的数值模拟研究,并与实验数据进行比较。观察到数值模型结果低估了累积的溢油和蒸汽室尺寸。本研究的结果,包括累积回收率,温度分布和生产率,显示了方法之间的差异。

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