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Thermal Hydraulic Analysis Using GIS on Application of HTR to Thermal Recovery of Heavy Oil Reservoirs

机译:基于HTR的GIS热力水力分析在稠油油藏热采中的应用

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At present, large water demand and carbon dioxide (CO2) emissions have emerged as challenges of steam injection for oil thermal recovery. This paper proposed a strategy of superheated steam injection by the high-temperature gas-cooled reactor (HTR) for thermal recovery of heavy oil, which has less demand of water and emission of CO2. The paper outlines the problems of conventional steam injection and addresses the advantages of superheated steam injection by HTR from the aspects of technology, economy, and environment. A Geographic Information System (GIS) embedded with a thermal hydraulic analysis function is designed and developed to analyze the strategy, which can make the analysis work more practical and credible. Thermal hydraulic analysis using this GIS is carried out by applying this strategy to a reference heavy oil field. Two kinds of injection are considered and compared wet steam injection by conventional boilers and superheated steam injection by HTR. The heat loss, pressure drop, and possible phase transformation are calculated and analyzed when the steam flows through the pipeline and well tube and is finally injected into the oil reservoir. The result shows that the superheated steam injection from HTR is applicable and promising for thermal recovery of heavy oil reservoirs.
机译:目前,大量注水和二氧化碳(CO2)排放已成为注蒸汽以热采油的挑战。本文提出了一种高温气冷堆(HTR)注入过热蒸汽的策略,以对水和二氧化碳排放量较少的重油进行热回收。本文概述了常规蒸汽注入的问题,并从技术,经济和环境等方面阐述了HTR过热蒸汽注入的优势。设计并开发了具有热水力分析功能的地理信息系统(GIS)来分析该策略,从而使分析工作更加实用和可靠。通过将此策略应用于参考稠油油田,可以使用此GIS进行热力水力分析。考虑了两种喷射方式,并比较了传统锅炉的湿蒸汽喷射方式和HTR的过热蒸汽喷射方式。当蒸汽流过管道和井管并最终注入油藏时,会计算和分析热量损失,压降以及可能的相变。结果表明,HTR注入过热蒸汽是可行的,有望用于稠油油藏的热采。

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