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机轮动力滑水机理分析 被引量:16
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作者 余治国 李曙林 朱青云 《空军工程大学学报(自然科学版)》 CSCD 2004年第5期9-11,共3页
应用动量定理,分别建立机轮在水膜较薄和较厚两种情况下的动力滑水临界速度公式。分析结果表明:在水膜较薄时充气压力决定滑水临界速度;当水膜较厚时充气压力对滑水临界速度已无意义,并讨论了水膜厚度对滑水临界速度的影响。
关键词 动力滑水 膜厚度 临界速度
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轿车轮胎动力滑水分析 被引量:36
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作者 季天剑 高玉峰 陈荣生 《交通运输工程学报》 EI CSCD 北大核心 2010年第5期57-60,共4页
基于弹性流体动力润滑理论,将轮胎、路表水膜和路面作为一个弹性流体动力润滑系统,研究了轮胎的动力滑水问题。在轮胎上建立坐标系,则轮胎是静止的而水膜是运动的,推导了控制动力滑水的Reynolds方程、水膜厚度方程和变形方程,采用复合... 基于弹性流体动力润滑理论,将轮胎、路表水膜和路面作为一个弹性流体动力润滑系统,研究了轮胎的动力滑水问题。在轮胎上建立坐标系,则轮胎是静止的而水膜是运动的,推导了控制动力滑水的Reynolds方程、水膜厚度方程和变形方程,采用复合直接迭代求解方法,并编制了计算程序,分析了轿车轮胎在沥青路面上行驶的动力滑水。分析结果表明:随着行驶速度的增大,能够引起动力滑水的路表水膜厚度不断减小,当行驶速度为120km.h-1时,路表水膜厚度为2mm就会发生动力滑水。 展开更多
关键词 汽车工程 轮胎 动力滑水 弹性流体动力
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Computational Simulation of Hypervelocity Penetration Using Adaptive SPH Method
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作者 QIANG Hongfu MENG Lijun 《Transactions of Tianjin University》 EI CAS 2006年第B09期75-78,共4页
The normal hypervelocity impact of an Al-thin plate by an Al-sphere was numerically simulated by using the adaptive smoothed particle hydrodynamics (ASPH) method. In this method, the isotropic smoothing algorithm of s... The normal hypervelocity impact of an Al-thin plate by an Al-sphere was numerically simulated by using the adaptive smoothed particle hydrodynamics (ASPH) method. In this method, the isotropic smoothing algorithm of standard SPH is replaced with anisotropic smoothing involving ellipsoidal kernels whose axes evolve automatically to follow the mean particle spacing as it varies in time, space, and direction around each particle. Using the ASPH, the anisotropic volume changes under strong shock condition are captured more accurately and clearly. The sophisticated features of meshless and Lagrangian nature inherent in the SPH method are kept for treating large deformations, large inhomogeneities and tracing free surfaces in the extremely transient impact process. A two-dimensional ASPH program is coded with C++. The developed hydrocode is examined for example problems of hypervelocity impacts of solid materials. The results obtained from the numerical simulation are compared with available experimental ones. Good agreement is observed. 展开更多
关键词 adaptive SPH hypervelocity penetration meshfree method numerical simulation
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Exploration of uniform heat flux on the flow and heat transportation of ferrofluids along a smooth plate: Comparative investigation 被引量:2
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作者 Muhammad Usman Muhammad Hamid +2 位作者 Syed Tauseef Mohyud Din Asif Waheed Wei Wang 《International Journal of Biomathematics》 SCIE 2018年第4期57-75,共19页
The paper is devoted to a new extension in Gegenbauer wavelet method (GWM) to investigate the transfer of heat and MHD boundary-layer flow of ferrofluids beside a flat plate with velocity slip. A homogenous model st... The paper is devoted to a new extension in Gegenbauer wavelet method (GWM) to investigate the transfer of heat and MHD boundary-layer flow of ferrofluids beside a flat plate with velocity slip. A homogenous model study is conducted in which we assumed the heat transfer and forced convective flow of ferrofluids along a flat plate with a uniform wall heat flux. In the direction of transverse to plate, a magnetic field is imposed. Three various magnetic nanoparticle types including Mn-ZnFe204, CoFe204, Fe3O4 are incorporated inside the base fluid. Two types of base fluids (water and kerosene) with bad thermal conductivity as compared to nanoparticles of solid magnetic have been assumed. The mathematical model is tackled via modified Gegenbauer wavelet method (MGWM). A simulation is accomplished for individual ferrofluid mixture by assuming the prevailing impacts of uniform and slip heat fluxes. The variation of heat transfers and skin friction were also observed at the surface of the plate and we analyzed the better heat transfer for every mixture. Kerosene-based magnetite (Fe304) delivers the better rate of heat transfer at wall due to its association with the kerosene-based Mn-Zn and cobalt ferrites. The slip velocity and magnetic field effects on the temperature, dimensionless velocity, rate of heat transfer and skin friction are examined for various magnetic nanoparticles inside the kerosene oil and water. We observed that the primary influence of magnetic field reduces the dimensionless surface temperature and accelerates the dimensionless velocity as compared to the hydrodynamic case, thus enhancing the rate of heat transfer and skin friction ferrofluids. Moreover, a detailed evaluation of outcomes obtained by MGWM, already published work and numerical RK-4 were found to be in excellent agreement. The error and convergence analysis are presented. Comparison of results,graphical plots, error and convergence analysis reveal the appropriateness of proposed method. The proposed algorithm can be extended for other nonlinear problems. 展开更多
关键词 Gegenbauer polynomials collocation method FERROFLUIDS heat flux numericalsolution.
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MD simulation of nanometric cutting of copper with and without water lubrication 被引量:5
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作者 CHEN YunHui HAN Huang +1 位作者 FANG FengZhou HU XiaoTang 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第6期1154-1159,共6页
Three-dimensional molecular dynamics(MD)simulation was carried out to understand the mechanism of water lubrication in nanometric cutting.The water-lubricated cutting was compared with the dry cutting process in terms... Three-dimensional molecular dynamics(MD)simulation was carried out to understand the mechanism of water lubrication in nanometric cutting.The water-lubricated cutting was compared with the dry cutting process in terms of lattice deformation,cutting force,heat and pressure distribution,and machined surface integrity.It was found that water molecules effectively reduce the friction between the tool and workpiece,the heat in the cutting zone and the pressure being generated on the tool surface,thus leading to prolonged tool life.Water molecules also enlarged the pressure-affected area,which decreased the roughness of the machined surface. 展开更多
关键词 molecular dynamics cutting tools
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