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Thermal effect caused by low temperature oxidation of heavy crude oil and its in-situ combustion behavior

机译:低温氧化重型原油及其原位燃烧行为引起的热效应

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摘要

To investigate the thermal effect caused by low temperature oxidation (LTO) of one heavy crude oil in porous media, a combustion tube (CT) system coupled with a self-designed experimental scheme was adopted. Also, the in-situ combustion (ISC) performance of this heavy oil as well as alterations in oil properties before and after ISC was comprehensively evaluated. The results showed that there existed the apparent thermal effect induced by LTO within the researched ignition temperature (180-320 degrees C), and heat release became greater with the ignition temperature. It should be noted that the oxidation reaction rate of the heavy oil was rose remarkably releasing substantial heat when the ignition temperature was increased to 240 from 180 degrees C. The heavy oil was combusted under the ignition temperature of 350 degrees C, and the combustion front advanced sustainably. Some basic parameters during ISC, including apparent atomic H/C ratio, oxygen utilization, fuel consumption, etc., were determined, which made it accessible to predict field test performances. And the values of these parameters and post-mortem images of the CT test reflected the superior ISC performance of the heavy oil. The alterations in oil properties pre-ISC and post-ISC indicated that the produced oil encountered strong LTO reactions and thermal cracking reactions forming a considerable number of lighter oxygen-containing compounds. Comparison of differential scanning calorimetry (DSC) profiles of the crude oil and produced oil revealed that the ISC process made the heavy oil greatly upgrade.
机译:为了研究多孔介质中一个重原油的低温氧化(LTO)引起的热效应,采用与自行设计实验方案联接的燃烧管(CT)系统。此外,本次重油的原位燃烧(ISC)的性能以及ISC之前和之后的油性能的改变是全面的评估。结果表明,LTO在研究的点火温度(180-320℃)内存在表观热效应,并且随着点火温度,热释放变得更大。应该注意的是,当点火温度从180℃下降至240时,重油的氧化反应速率显着释放出大量热量。在350℃的点火温度下燃烧重油,燃烧前部可持续发展。确定了ISC期间的一些基本参数,包括表观原子H / C比,氧气利用,燃料消耗等,这使得可以预测现场测试性能。并且这些参数的值和CT测试的验尸图像反映了重油的优异ISC性能。石油特性的改变前ISC和后型术后表明,所生产的油遇到强烈的LTO反应和形成相当数量的含氧的化合物的热裂解反应。差分扫描量热法(DSC)型材的比较原油和生产油的型材显示ISC工艺使重油大大升级。

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