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Research status on thermal simulation experiment and several issues of concern

机译:热模拟实验的研究现状及关注的几个问题

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We study the research status of thermal simulation experiment and put forward three issues worthy of attention and five important development directions. Classification according to thermal simulation system is the most widely used classification scheme. Different thermal simulation experimental systems have their own characteristics, and according to different experimental purpose, a suitable thermal simulation experiment system can be selected according to different experimental purposes. The closed experimental system is more suitable for the thermal simulation experiment of humic source rocks. The online analysis of open system has unique advantages in the study of volatile components. The semi-open system is the most closest to the thermal simulation system of the thermal evolution of the source rocks in the actual geological condition. Three key issues are presented concerning the thermal simulation experiment are presented. The first is the influence of water on the thermal simulation experiment. The second is whether convincing isotope reversal can be presented expect Fischer–Tropsch synthesis. The third is that, in the study of the thermal simulation experiment, the model of hydrocarbon generation must be built in combination with the actual geological background. Five key development directions concerning the thermal simulation experiment are proposed. The first is thermal simulation experimental study on a relatively low temperature and a long time with water participation. The second is experimental research on thermal simulation of unconventional petroleum. The third is a study on the development of pore microcracks in source rocks and the correlation of the interaction of fluid discharge in thermal simulation experiments. The fourth is an experimental study on thermal simulation of carbonate source rock. The fifth is an experimental study of thermal simulation related to abnormal pressure.
机译:研究了热模拟实验的研究现状,提出了三个值得关注的问题和五个重要的发展方向。根据热模拟系统进行分类是最广泛使用的分类方案。不同的热模拟实验系统各有特点,根据不同的实验目的,可以根据不同的实验目的选择合适的热模拟实验系统。封闭实验系统更适合于腐殖质烃源岩的热模拟实验。开放系统的在线分析在研究挥发性成分方面具有独特的优势。在实际地质条件下,半开放系统是最接近源岩热演化的热模拟系统。提出了与热模拟实验有关的三个关键问题。首先是水对热模拟实验的影响。第二个问题是,在费托合成过程中,是否可以提出令人信服的同位素逆转。第三,在热模拟实验研究中,必须结合实际地质背景建立成烃模型。提出了有关热模拟实验的五个关键发展方向。首先是在较低的温度和长时间的水分参与下进行的热模拟实验研究。二是非常规石油热模拟实验研究。第三是在热模拟实验中研究烃源岩中孔隙微裂纹的发展以及流体排放相互作用的相互关系。第四是碳酸盐岩热模拟实验研究。第五是与异常压力有关的热模拟实验研究。

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