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31.
In this paper, on the basis of Boussinesq’s shallow water theory, we establish the basic equations governing the motion of a stratified fluid, a kind of the generalized Boussinesq equations. And then by way of them, we study the weak interaction of two pairs of obliquely colliding solitary waves, give the second-order approximate solutions for wave profiles and maximum amplitudes, as well as conclude that when the included angle between the directions of propagation of impinging solitary waves is less than 120°, the effect of oblique interaction is stronger than that of the head-on one, but when the angle concerned is greater than 120°, the former is slightly weaker than the latter.  相似文献   
32.
We scrutinize the approximate analytical solutions by the optimal homotopy analysis method (OHAM) for the flow and mass transfer within the Marangoni boundary layer of power-law fluids over a disk with suction and injection in the present paper. Concentration distribution on the surface of a disk varies in a power-law form. The non-Newtonian fluid flow is due to the surface concentration gradient without considering gravity and buoyancy. According to the conservation of mass, momentum and concentration, the governing partial differential equations are established, and the appropriate generalized Kármán transformation is found to reduce them to the nonlinear ordinary differential equations. OHAM is used to access the approximate analytical solution. The influences of Marangoni the number, suction/injection parameters and power-law exponent on the flow and mass transfer are examined.  相似文献   
33.
New development constraints prompted by new pollutant emissions and fuel consumption standards (Corporate Average Economy Fuel) require that automobile manufacturers develop new flow control devices capable of reducing the aerodynamic drag of motor vehicles. The solutions envisaged must have a negligible impact on the vehicle geometry. In this context, flow control by continuous suction is seen as a promising alternative. The control configurations identified during a previous 2D numerical analysis are adapted for this purpose and are tested on a 3D geometry. A local suction system located on the upper part of the rear window is capable of eliminating the rear window separation on simplified fastback car geometry. Aerodynamic drag reductions close to 17% have been obtained. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   
34.
非饱和土吸力的温度性质   总被引:6,自引:1,他引:5  
根据热力学理论,讨论非饱和土中的土吸力随温度变化的情况,得到在一般情况下非饱和土中的土吸力随着温度增加而线性减小的规律.  相似文献   
35.
基于实验研究具有周向抽吸轴对称射流拟序结构的动力学行为,定义了临界出口主速度以及超临界工况(低速工况)和亚临界工况。提出了超临界工况下,拟序结构的空间演化特征。基于功率谱确定了超、亚临界工况流动系统发生自激励振荡的速度比范围。  相似文献   
36.
The compressibility effect on the cylinder drag reduction due to air suction through the surface of a central body in a circular vortex cell is estimated on the basis of the solution of the steady Reynolds equations closed by the shear stress transfer model, together with the continuity, energy, and state equations.  相似文献   
37.
The steady laminar wall jet over a stretching surface in the presence of lateral suction or injection is considered. Similarity solutions absent in previous publications are found in some new ranges of parameters in the governing equation. The accuracy and reliability of the solutions have been checked through detailed convergence study and compared with the solutions from the numerical method and analytic method, and excellent agreement has been found. This gives the strongest evidence that those solutions...  相似文献   
38.
为了提高土壤中阳离子交换量(CEC)分析效率及分析准确度,采用乙酸铵或氯化铵-乙酸铵溶液对土壤样品进行处理,并采用振荡交换、抽滤分离的方式进行离子交换、铵离子清洗.土壤饱和吸附的铵离子用甲醛-C aC l2溶液交换后,采用氢氧化钠溶液滴定,并用p H计准确指示滴定终点,由此测定C EC含量.选用5个国家一级有效态标准物...  相似文献   
39.
研究非饱和土的强度是非饱和土理论及其工程应用的首要问题,但因复杂应力状态下基质吸力的控制技术、量测技术和吸力平衡时间等原因,非饱和土真三轴试验研究的进展迟缓. 在介绍非饱和土刚性真三轴仪、柔性真三轴仪和刚柔复合型真三轴仪的基础上,重点分析已有非饱和土刚性和柔性真三轴试验结果,总结现有非饱和土真三轴仪及其试验研究的不足,同时指出Mohr-Coulomb 强度准则和外接圆Drucker-Prager准则对非饱和土真三轴试验结果的不适用性. 应开展更多不同种类非饱和土的完整真三轴试验研究,特别是非饱和黏性土;应结合非饱和土的应力状态变量和强度特性,建立符合工程实际受力状况的非饱和土真三轴强度准则,完善非饱和土的理论基础.  相似文献   
40.
We would like to acknowledge the misprinted terms in our published paper “Boundary layer flow and heat transfer of a Casson fluid past a symmetric porous wedge with surface heat flux” [Chin. Phys. B 23 044702 (2014)]. Since only two misprints exist and the main results of the published paper are correct, we present the correct equations in this erratum.  相似文献   
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