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An Integrated Technology Development Plan for Solvent-based Recovery of Heavy Oil

机译:溶剂型重油恢复综合技术开发计划

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ExxonMobil and its Canadian affiliate Imperial Oil Resources are pursuing an integrated research program targeted at developing the next generation of heavy oil recovery processes which utilize hydrocarbon solvents as a mobilizing agent. The key benefits of solvent-based processes are improved environmental performance, improved economics and recovery of resource that is impractical with thermal processes. The integrated research program encompasses fundamental laboratory work, analytical modeling, advanced numerical modeling, scaled physical modeling in the laboratory, a solvent-only pilot which is in the design phase, an operating solvent- assisted SAGD pilot and a first commercial scale application of a solvent-assisted cyclic steam stimulation (CSS) process known as Liquid Addition for Steam Enhanced Recovery (LASER). This paper provides a systematic review of the scope, technical challenges, benefits and successes of research efforts in each of the areas cited above. In general, the results of laboratory modeling and simulation studies are strongly supportive of the potential success of solvent-assisted and solvent- based recovery processes. Reliably demonstrating solvent recovery processes at the field scale remains a key challenge that can only be addressed through well designed field pilot programs and enhanced reservoir surveillance programs for commercial scale applications. These challenges are highlighted in the paper utilizing specific examples from the integrated research program. In conclusion, there are some very significant technical challenges that need to be addressed before solvent-assisted and solvent-based heavy oil recovery processes will be broadly commercialized. Nonetheless, consideration of the results across the full breadth of ExxonMobil's integrated technology program provides strong support that a new generation of solvent recovery processes will emerge as an economically competitive option for heavy oil recovery with significant environmental benefits relative to today's thermal recovery processes .
机译:埃克森美孚及其加拿大联盟帝国石油资源正在追求综合研究计划,该计划旨在开发利用烃溶剂作为动员剂的下一代重油回收过程。基于溶剂的过程的关键益处是改善的环境性能,改善了热处理不切实际的资源的经济学和恢复。综合研究计划包括基本实验室工作,分析建模,先进的数值模型,在实验室中进行了缩放的物理造型,是在设计阶段的溶剂飞行员,操作溶剂辅助的SAGD飞行员和第一商业规模应用溶剂辅助循环蒸汽刺激(CSS)加工称为蒸汽增强恢复(激光)。本文提供了对上述每个领域的研究工作的范围,技术挑战,益处和成功的系统审查。通常,实验室建模和仿真研究的结果强烈支持溶剂辅助和基于溶剂的回收过程的潜在成功。可靠地展示现场规模的溶剂恢复过程仍然是一个关键挑战,只能通过精心设计的现场试点计划和增强的商业规模应用程序的增强储存器监控程序来解决。这些挑战是利用综合研究计划的具体例子突出的。总之,在溶剂辅助和基于溶剂的重油回收过程将广泛商业化之前需要解决的一些非常重要的技术挑战。尽管如此,对埃克森美孚综合技术综合技术方案的全广度的结果提供了强大的支持,即新一代溶剂恢复过程将成为一种经济竞争选项,以便具有相对于当今热量恢复过程具有重要的环境益处。

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