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基于纳米流控系统的封隔器胶筒肩部防护装置及其弹性层应用特性
引用本文:窦益华,李羿瑭,邢星,章娅菲.基于纳米流控系统的封隔器胶筒肩部防护装置及其弹性层应用特性[J].石油钻采工艺,2020,42(4):408-413.
作者姓名:窦益华  李羿瑭  邢星  章娅菲
作者单位:1.西安石油大学机械工程学院
基金项目:国家自然科学基金项目“蜂窝骨架纳米流控超高温试油与完井封隔器胶筒力学性能多尺度耦合研究”(编号:51974246);国家自然科学基金项目“多级液体渗透纳米多孔介质系统的能量吸收/转换机理研究”(编号:51806173);陕西省自然科学基础研究计划项目“蜂窝骨架纳米流控弹性材料力学性能及能量转换机理研究”(编号:2020JM-538);陕西省高校科协青年人才托举计划项目“纳米流控封隔器胶筒力学性能及能量转换机理研究”(编号:2019042)
摘    要:针对封隔器胶筒因肩部应力集中导致的密封失效问题,提出了一种基于纳米流控系统的封隔器胶筒肩部防护装置。该肩部防护装置由楔形金属环和环形弹性层组成,弹性层具有独特的压力-体积变化特性和压力传递性能,可消除封隔器胶筒肩部应力集中现象。以ZSM-5型沸石与甘油所构成的纳米流控系统填充弹性层,通过压力-位移特性测试实验,研究了弹性层的可重复使用性及不同加载速率下系统的压力阈值及最大压力下的有效形变量。结果表明ZSM-5型沸石-甘油配方具有良好的可重复使用性,可以作为肩部防护装置环形弹性层的填料。加载速率在0.01~0.1 mm/s范围内变化时,弹性层压力阈值可稳定在17±2 MPa范围内;不同加载速率下,最大压力下的有效形变量均大于58 mm3/g,加载速率越大,变形量越大,符合弹性层的性能需求。通过调整纳米多孔介质与功能流体的配方,环形弹性层的性能在很大范围内可调,适用于多种复杂工况。

关 键 词:封隔器胶筒    肩部防护装置    纳米流控系统    功能流体    压力-体积特性

Shoulder protection device based on nanofluidic system for packer rubber and the application performance of its elastic layer
Affiliation:1.Mechanical Engineering College, Xi’an Shiyou University, Xi’an 710065, Shaanxi, China2.Petroleum Engineering Research Institute, PetroChina Tarim Oilfield Company, Korla 841000, Xinjiang, China
Abstract:To deal with the seal failure caused by stress concentration at the shoulder of packer rubber, this paper proposed a kind of shoulder protection device based on nanofluidic system for packer rubber. This shoulder protection device is composed of wedge-shaped metal ring and ring-like elastic layer. The elastic layer has unique pressure-volume change characteristics and pressure transmission performance, which can eliminate the phenomenon of stress concentration at the shoulder of packer rubber. After filling the elastic layer with the nanofluidic system which is composed of ZSM-5 zeolite and glycerine, this paper carried out pressure-displacement characteristic tests to study the reusability of elastic layer, as well as the pressure threshold of the system under different loading rates and the effective deformation under the maximum pressure. It is indicated that ZSM-5 zeolite-glycerine formula is of great reusability, and it can be used as the filling of ring-like elastic layer of shoulder protection device. When the loading rate varies between 0.01 and 0.1 mm/s, the pressure threshold of the elastic layer can be kept stable in the range of 17±2 MPa. At different loading rates, the effective deformation under the maximum pressure is larger than 58 mm3/g. The higher the loading rate is, the larger the deformation is, which satisfies the performance requirement of elastic layer. By adjusting the formulas of nanometer porous medium and functional fluid, the properties of the ring-like elastic layer are adjustable in a quite large range, so it is applicable to various complex working conditions.
Keywords:
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