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TKP194-80型密闭保压取心工具的研制与应用 被引量:3
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作者 赵义 刘海龙 +2 位作者 蔡家品 阮海龙 梁涛 《钻探工程》 2023年第4期77-83,共7页
密闭保压取心是一种能够保持或接近地层压力的特殊取心技术,可使岩心中流体、气体保持在原始状态。这种技术对于正确认识地质情况、计算油田可采储量、分析页岩气藏和煤层气藏机理,制定勘探开发方案有着十分重要的意义。研制TKP194-80... 密闭保压取心是一种能够保持或接近地层压力的特殊取心技术,可使岩心中流体、气体保持在原始状态。这种技术对于正确认识地质情况、计算油田可采储量、分析页岩气藏和煤层气藏机理,制定勘探开发方案有着十分重要的意义。研制TKP194-80型密闭保压取心工具,采用大通径高压球阀密封、密闭液封堵、液压差动、活塞压力补偿等关键技术,配有岩心冷冻、切割、集气等岩心后处理工艺,钻头外径215 mm,保压能力50 MPa,岩心直径80mm。在山西晋中某煤层气资源地质探井开展保压取心应用,共进行保压取心8筒,总进尺37.51 m,岩心采取率84.4%,保压成功率87.5%。研究结果表明,该取心工具保压性能可靠,技术方案可行,可为常规油气及非常规油气藏勘查开发提供技术装备支撑。 展开更多
关键词 密闭取心 低温保压 页岩气藏 煤层气藏 取心工具
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A Warming Structure for Piezoelectric Stack Working in Cryogenic Temperature 被引量:1
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作者 LIN Yufan QIN Xuguo +2 位作者 YU Yi FAN Siyun SHEN Xing 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第5期713-725,共13页
It is widely acknowledged that the performance of a piezoelectric stack would decline with the temperature decreasing,which will exert negative influence on its application in low-temperature environment.Therefore,a c... It is widely acknowledged that the performance of a piezoelectric stack would decline with the temperature decreasing,which will exert negative influence on its application in low-temperature environment.Therefore,a convenient and efficient warming structure for the piezoelectric stack is proposed in this paper to solve this problem.Based on the theoretical analysis of heat transfer,two heating modes,namely,overall heating and local heating are analyzed and compared.Moreover,experimental tests are conducted to evaluate the effectiveness of the structure.Based on the results,it can be concluded that the theoretical results are confirmed with experimental results.Besides,the temperature and performance of the piezoelectric stack are kept stable as temperature varies from 10℃to-70℃,which manifests the feasibility of the structure.Therefore,this paper could be an available reference for those engaged in cryogenic investigation of smart materials and structures. 展开更多
关键词 warming structure piezoelectric stack cryogenic temperature heat transfer
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