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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Evaluation of energy efficiency options in steam assisted gravity drainage oil sands surface facilities via process integration
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Evaluation of energy efficiency options in steam assisted gravity drainage oil sands surface facilities via process integration

机译:通过过程集成评估蒸汽辅助重力排水油砂地面设施的能效选择

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摘要

While new technologies are being developed for extracting unconventional oil, in the near term economic benefits and footprint reduction can be achieved by enhancing the energy efficiency of existing facilities. The objective of this work is to evaluate energy efficiency opportunities for in situ extraction of Canada's oil sands resource using pinch analysis. Modifications to an original plant design are analyzed in order to estimate utility savings beyond those obtained for the initial process configuration. The modifications explored in this paper are estimated to deliver energy savings of up to 6% beyond 'business as usual'. This corresponds to GHG emissions reduction of approximately 5%. However, in some cases, this increase in energy savings comes at the cost of increasing demand for make-up water and volume of disposal water. Surplus generation of steam beyond heating requirements in the water treatment system leads to energy inefficiencies. Additional cost and energy savings are obtained by reducing or eliminating the use of glycol in the cooling circuit. (C) 2015 Published by Elsevier Ltd.
机译:尽管正在开发用于开采非常规石油的新技术,但在短期内可以通过提高现有设施的能源效率来实现经济效益和减少足迹。这项工作的目的是使用夹点分析评估加拿大油砂资源原位开采的能源效率机会。分析对原始工厂设计的修改,以估算除初始工艺配置所节省的费用以外的其他用途。据估计,本文探讨的修改将使能源节约比“一切照旧”节省多达6%。这相当于减少了约5%的温室气体排放。但是,在某些情况下,节能的增加是以补充水和处理水的需求增加为代价的。水处理系统中超出加热要求的多余蒸汽产生会导致能源效率低下。通过减少或消除冷却回路中乙二醇的使用,可以获得额外的成本和能源节省。 (C)2015由Elsevier Ltd.出版

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