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首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >The evaluation of CO2-based vapour extraction (VAPEX) process for heavy-oil recovery
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The evaluation of CO2-based vapour extraction (VAPEX) process for heavy-oil recovery

机译:基于CO2的蒸气萃取(VAPEX)工艺用于重油回收的评估

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Vapor extraction (VAPEX) has been proposed as an alternative for heavy-oil recovery in reservoirs where thermal methods face technical and economic problems. In VAPEX, a pair of horizontal injector-producer wells is employed. The gaseous hydrocarbon solvent (normally propane or a mixture of methane–propane or propane–butane) is injected from the top well and the diluted oil drains downward by gravity to the bottom producer. Recently, the idea of incorporation of CO2 into the gaseous hydrocarbon mixture has emerged. Incorporation of CO2 is believed to make the process more economical and environmentally and technically attractive. CO2 is cheaper than the hydrocarbon gases and has higher solubility into the heavy oil than most of the hydrocarbon gases. It also adds value to the environmental side of the process as CO2 can be sequestered while improving the VAPEX performance at the same time. Moreover, the addition of CO2 to the injected gas increases the dew point of the solvent mixture, and solvent mixtures with higher dew point can be used in heavy-oil reservoirs with higher pressure in which the mixture of hydrocarbon gases may partly condense, which decreases the VAPEX efficacy. Thus, the advantage of incorporating CO2 into the injected solvent is threefold. The objective of this work, therefore, is to simulate the performance of the VAPEX process when different solvent mixtures, including hydrocarbon gases and CO2, are incorporated with the aim of improving its performance. The design and the major results of the simulation for the CO2-based VAPEX process are discussed.
机译:在热法面临技术和经济问题的储层中,已经提出了蒸气提取(VAPEX)作为重油采收的替代方案。在VAPEX中,使用了一对水平的注采井。从顶井注入气态烃溶剂(通常为丙烷或甲烷-丙烷或丙烷-丁烷的混合物),稀释后的油在重力作用下向下排至底部生产商。最近,出现了将CO 2掺入气态烃混合物中的想法。据信,CO 2的掺入使该过程更经济,在环境和技术上更具吸引力。 CO2比碳氢化合物气体便宜,并且比大多数碳氢化合物气体在重油中的溶解度更高。由于可以隔离二氧化碳,同时提高VAPEX的性能,因此也增加了过程的环境价值。此外,向注入的气体中添加CO2会增加溶剂混合物的露点,并且露点较高的溶剂混合物可用于压力较高的重油油藏中,其中烃类气体的混合物可能会部分冷凝,从而降低了VAPEX功效。因此,将CO 2掺入注入的溶剂中的优点是三倍的。因此,这项工作的目的是在加入不同的溶剂混合物(包括烃类气体和CO2)时模拟VAPEX工艺的性能,以提高其性能。讨论了基于CO2的VAPEX工艺的设计和仿真的主要结果。

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