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助剂对电磁原位加热稠油储层温度分布的影响 被引量:2
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作者 肖界先 高德利 王正旭 《石油机械》 北大核心 2023年第2期72-78,137,共8页
为了解决电磁原位加热导热、导电性能差的稠油储层时存在温度偏低的问题,提出了基于助剂注入的电磁原位加热技术,并建立了考虑稠油储层热性质随温度动态变化的电热耦合数学模型,开展了电磁加热室内试验以验证数学模型的准确性,比较了助... 为了解决电磁原位加热导热、导电性能差的稠油储层时存在温度偏低的问题,提出了基于助剂注入的电磁原位加热技术,并建立了考虑稠油储层热性质随温度动态变化的电热耦合数学模型,开展了电磁加热室内试验以验证数学模型的准确性,比较了助剂注入前、后储层的电场和温度分布以评估电磁加热性能,最后分析了助剂导电和导热性质对储层温度分布的影响规律。研究结果表明:室内试验证实了电热耦合数学模型的准确性,助剂注入后电磁原位加热稠油储层的温度明显升高;在一定径向范围内,助剂电导率的增大有助于提高储层温度;储层径向温度随着助剂比热容和导热系数的减小而升高。研究结果证实了基于助剂注入的电磁原位加热技术在解决加热温度偏低的问题上可行。 展开更多
关键词 稠油开采 电磁原位加热 助剂注入 模拟试验 温度分布 电热耦合
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Formation and wear behaviors of in-situ Al3Ti/Al composites using aluminum and titanium fibers under electromagnetic induction heating 被引量:1
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作者 MA Jun NIU Li-bin +2 位作者 WU Hong GAO Chong AN Yu-jiao 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第12期3594-3602,共9页
Under various electromagnetic induction heating powers,different Al3Ti/Al composites were fabricated by in-situ synthesis method from aluminum and titanium fibers.Microstructures and particles distribution of the comp... Under various electromagnetic induction heating powers,different Al3Ti/Al composites were fabricated by in-situ synthesis method from aluminum and titanium fibers.Microstructures and particles distribution of the composites were examined by XRD,SEM and EDS.The results show that no other intermetallic compounds beside Al3Ti can be in-situ synthesized.Around the titanium fibers,the reaction zones and diffusion zones can be obviously found.Due to the stirring of the electromagnetic function,the formation of the micro-cracks inside the reaction zone was conducive to the peeling off of the Al3Ti particles,and ensures the continuous reaction between liquid aluminum and titanium fibers,as well as the diffusion of Al3Ti particles.At the same time,there were secondary splits of Al3Ti particles located in diffusion zones.Two-body abrasion test shows that with the increase of induction heating power,the wear rates of the composites reduced and the number of grooves decreased. 展开更多
关键词 in-situ synthesis induction heating Al3Ti intermetallic particle distribution wear behaviors
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