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纳米圆柱体与平面粘着接触的分子动力学模拟 被引量:5
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作者 朱世俊 刘更 刘天祥 《西北工业大学学报》 EI CAS CSCD 北大核心 2007年第3期461-466,共6页
用分子动力学方法模拟了不同半径的刚性圆柱体压头与弹性基体的粘着接触过程。给出了接触力、静态结构因子及压头与基体最小间隙随压头位移的变化关系,以及接触区域的von Mises应力分布。结果表明,在突跳接触与接触分离时,随着压头尺寸... 用分子动力学方法模拟了不同半径的刚性圆柱体压头与弹性基体的粘着接触过程。给出了接触力、静态结构因子及压头与基体最小间隙随压头位移的变化关系,以及接触区域的von Mises应力分布。结果表明,在突跳接触与接触分离时,随着压头尺寸的增大,粘着滞后现象越明显。高应力区出现在接触区域两边,且当压头半径减小时,von Mises应力随着压入深度的增大而迅速增大,说明粘着力对小尺寸压头的接触过程影响较大。 展开更多
关键词 分子动力学 纳米圆柱体 粘着接触
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考虑Steigmann-Ogden表面的纳米圆柱解析模型 被引量:1
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作者 杨博 高梦园 王冠楠 《固体力学学报》 CAS CSCD 北大核心 2022年第2期168-176,共9页
基于Steigmann-Ogden(S-O)表面理论,研究了圆柱形纳米材料在径向对压荷载作用下的力学性能.利用级数展开求解材料内部的弹性控制方程,获得了考虑表面效应时的域内解析表达式.当所得结果忽略表面弯曲刚度参数时可退化为Gurtin-Murdoch(G... 基于Steigmann-Ogden(S-O)表面理论,研究了圆柱形纳米材料在径向对压荷载作用下的力学性能.利用级数展开求解材料内部的弹性控制方程,获得了考虑表面效应时的域内解析表达式.当所得结果忽略表面弯曲刚度参数时可退化为Gurtin-Murdoch(G-M)表面模型.用文献中有限元数值结果和实验结果对本理论进行退化验证,结果得到良好一致性.在此基础上,讨论了表面弯曲刚度参数和圆柱尺寸大小对材料特性的影响.结果显示:考虑了表面弯曲刚度参数的S-O模型和G-M模型在应力分布中有很大的不同.另外,随着圆柱尺寸的减小,其表面效应对材料的力学特性的影响逐渐增大. 展开更多
关键词 纳米圆柱体 Steigmann-Ogden表面模型 均匀径向对称荷载 解析表达式
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Numerical investigation of laminar heat transfer and nanofluid flow between two porous horizontal concentric cylinders 被引量:8
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作者 Mehdi MIRZAEYAN Davood TOGHRAIE 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第7期1976-1999,共24页
In this study, the laminar heat transfer and nanofluid flow between two porous horizontal concentric cylinders was investigated. The problem is investigated in two different geometries and the Re=10, 25, 50, 75, 100 a... In this study, the laminar heat transfer and nanofluid flow between two porous horizontal concentric cylinders was investigated. The problem is investigated in two different geometries and the Re=10, 25, 50, 75, 100 and volume fraction 0, 0.2%, 0.5%, 2% and 5% that related to copper nanoparticles, and porous medium porosity of 0.5 and 0.9. Compared to the first geometry, the convective coefficient in the second geometry increases by 8.3%, 7% and 5.5% at Reynolds numbers of 100, 75 and 50, respectively. Comparison of the outlet temperatures for two heat fluxes of 300 and 1200 W/m^2 indicates a 2.5% temperature growth by a fourfold increase in the heat fluxes. Also, the higher Nusselt number is associated with the second geometry occurring at porosities of 0.9 and 0.5, respectively. In both geometries, the Nusselt number values at the porosity of 0.9 are higher, which is due to the increased nanofluid convection at higher porosities. The velocity of the nanofluid experiences a two-fold increase at the outlet compared to its inlet velocity in the first geometry and for both porosities. Similarly, a three-fold increase was achieved in the second geometry and for both porosities. 展开更多
关键词 porous horizontal concentric cylinders nanofluid flow PERMEABILITY heat transfer
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Natural Convection of Nanofluid in Cylindrical Enclosure Filled with Porous Media
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作者 Manal Hadi A1-Hafidh Hayder Ibrahim Mohammed 《Journal of Energy and Power Engineering》 2013年第12期2263-2272,共10页
A numerical study has been carried out to investigate the effect of aspect ratio on heat transfer by natural convection of nanofluid taking Cu nano particles and the water as based fluid. The flow is laminar, steady s... A numerical study has been carried out to investigate the effect of aspect ratio on heat transfer by natural convection of nanofluid taking Cu nano particles and the water as based fluid. The flow is laminar, steady state, axisymmetric two-dimensional in a vertical cylindrical channel filled with porous media. Heat is generated uniformly along the center of the channel with its vertical surface remain with cooled constant wall temperature and insulated horizontal top and bottom surfaces. The governing equations which used are continuity, momentum and energy equations using Darcy law and Boussinesq's approximation which are transformed to dimensionless equations. The finite difference approach is used to obtain all the computational results using the MATLAB-7 program. The parameters affected on the system are Rayleigh number ranging within (10≤ Ra ≤ 103), aspect ratio (1 ≤ As 〈 5) and the volume fraction (0 ≤0 〈 0.2). The results obtained are presented graphically in the form of streamline and isotherm contour plots and the results show that as ~ increase from 0.01 to 0.2 the value of the mean Nusselt number increase 50.4% for Ra = 1,000. 展开更多
关键词 Laminar natural convection NANOFLUID porous media vertical cylinder heat generation.
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