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1.
Study of the Singularity Integrals and the Boundary Layer Effect in Bem
边界元法中奇异积分与边界层效应的研究
2.
Study on Boundary Layer Effect in Indirect Regular Boundary Element Analysis
间接规则化边界元分析中边界层效应的研究
3.
A Review on Reynolds Number,Blockage and Boundary Layer Effects in Automotive Wind Tunnel Tests
汽车风洞试验中的雷诺数、阻塞和边界层效应问题综述
4.
Simulation Experiment of Environmental Effects in the Atmospheric Boundary Layer
大气边界层环境影响效应的仿真试验
5.
Turbulent BL Structure: Wake, Wall layers. Inner, Outer Variables. Effects of Roughness.
紊流边界层结构:尾流,壁面层,内、变数。粗糙度效应。
6.
The Boundary of Foreign Settlement and Its Effect in Hankou
租界之“界”——汉口租界的边界与边界效应
7.
Distribution Characteristics of Coarse Aggregate in Wall-Affecting Layer of Concrete
混凝土边界效应层中粗骨料的分布特征
8.
Size and boundary effect on interfacial strength of RCC with pre-embedded crack
带裂纹碾压混凝土层面强度尺寸和边界效应
9.
Instability of Stratified Boundary Layer and Its Coupling with Gravity Waves;
有分层效应的边界层稳定性及其与重力波的相互作用
10.
Numerical Simulation of Atmospheric Boundary Layer Response to Aerosol Radiative Effect Using Lidar Measurements;
利用激光雷达资料模拟气溶胶辐射效应的大气边界层响应
11.
Simulation of Dust Aerosol Longwave Radiative Effect and Its Influence on Atmospheric Boundary Layer Using Lidar Measurements;
利用激光雷达资料模拟沙尘气溶胶长波辐射效应及其边界层影响
12.
Direct numerical simulation of compressible effects on flat-plate turbulent boundary layer
可压缩效应对平板湍流边界层影响的直接数值模拟
13.
THE NEW FORMULA OF BEM FOR CALCULATING THE DISPLACEMENTS AND THE STRESSES IN BOUNDARY LAYER
物体边界层域内位移及应力的边界元法新公式
14.
BEM for Fracture Analysis of Interfacial Crack of Thermal-barrier-coated Components & Its Application;
带隔热涂层构件界面裂纹分析边界元法及应用
15.
Property Right Boundary,Level Difference and the Efficiency of Resource Allocation of Traveling Land;
产权边界、层次差异与旅游用地资源配置效率
16.
The diffusional deposition of particles of finite diameter on the surface of a charged droplet is estimated by employing thin concentration boundary layer theory.
采用浓度边界层理论讨论了细微粒子在荷电雾滴表面上的扩散效应。
17.
The scale effects in wind tunnel modelling tests are studied.
本文通过比较大气边界层与不同比尺的模型实验,研究了风洞模型实验中的比尺效应。
18.
The effect of hydrogen on the ductility of electroless copper deposit is primarily caused by molecular hydrogen contained in voids, particularly the typeⅢ GB voids.
镀层延展性降低的主要原因是由氢气泡的缺陷效应,特别是第三类氢气泡、粒边界气泡空穴。