期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于结构异性比的含瓦斯煤渗透各向异性研究 被引量:10
1
作者 亓宪寅 王威 《岩土工程学报》 EI CAS CSCD 北大核心 2017年第6期1030-1037,共8页
渗透率是煤层气生产中的重要参数,而原煤的结构异性导致其渗透率具有明显的方向性。假设煤体结构各向异性,建立基于结构异性比的煤体各向异性渗透模型,再进一步推导出瓦斯煤各向异性气–固耦合控制方程,并植入Comsol计算平台,系统研究... 渗透率是煤层气生产中的重要参数,而原煤的结构异性导致其渗透率具有明显的方向性。假设煤体结构各向异性,建立基于结构异性比的煤体各向异性渗透模型,再进一步推导出瓦斯煤各向异性气–固耦合控制方程,并植入Comsol计算平台,系统研究了煤体各向异性对气体扩散和渗透的影响。理论和数值研究结果表明:煤体结构异性比和平行层理方向渗透率与垂直层理方向渗透率的比值之间存在指数关系,结构异性比越大,则渗透率比值越大;恒定围压条件下,结构异性比随压力的增大而增大,平行层理方向的渗透率与垂直层理方向的渗透率比值也在增大;恒定围体积条件下,结构异性比随压力的增大而减小,平行层理方向的渗透率与垂直层理方向的渗透率比值也在减小;本文模型计算数据与渗透各向异性试验数据吻合度高,验证了本文模型的合理性,可适用恒定围岩应力、恒定储层体积等多种条件的渗透各向异性研究。 展开更多
关键词 含瓦斯煤 结构异性比 解吸附效应 渗透模型 各向异性 气–固耦合
下载PDF
A Computational Framework for Parachute Inflation Based on Immersed Boundary/Finite Element Approach
2
作者 HUANG Yunyao ZHANG Yang +3 位作者 PU Tianmei JIA He WU Shiqing ZHOU Chunhua 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2024年第4期502-514,共13页
A computational framework for parachute inflation is developed based on the immersed boundary/finite element approach within the open-source IBAMR library.The fluid motion is solved by Peskin's diffuse-interface i... A computational framework for parachute inflation is developed based on the immersed boundary/finite element approach within the open-source IBAMR library.The fluid motion is solved by Peskin's diffuse-interface immersed boundary(IB)method,which is attractive for simulating moving-boundary flows with large deformations.The adaptive mesh refinement technique is employed to reduce the computational cost while retain the desired resolution.The dynamic response of the parachute is solved with the finite element approach.The canopy and cables of the parachute system are modeled with the hyperelastic material.A tether force is introduced to impose rigidity constraints for the parachute system.The accuracy and reliability of the present framework is validated by simulating inflation of a constrained square plate.Application of the present framework on several canonical cases further demonstrates its versatility for simulation of parachute inflation. 展开更多
关键词 parachute inflation fluid-structure interaction immersed boundary method finite element method adaptive mesh refinement
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部