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871.
Numerical solution of viscous flow past a solid sphere with the control volume formulation 总被引:1,自引:0,他引:1
The control volume formulation with the QUICK finite difference scheme is used to solveincompressible liquid flow past a solid sphere in terms of stream function and vorticity.Several tech-nical points are addressed on improving the accuracy and efficiency of numerical simulation of similarproblems of fluid flow.In particular,the importance of suitable specification of the distortion func-tion to enforcing the far field boundarv conditions is emphasized. 相似文献
872.
Environmental etch damage to automotive coatings, and scratch and mar of these coatings are an important element of customer satisfaction as well as a significant warranty repair consideration for automotive companies. The conditions that result in environmental etch are examined and a laboratory test proposed. Data from this test are compared to automotive hoods exposed in Florida. The performance of various crosslinking chemistries is discussed and the requirements for improved environmental etch are outlined. Scratch and mar performance of these systems is also reviewed. We have found that coatings respond to physical stress by elastic recovery, by plastic flow and by brittle fracture. Classifying types of damage in this way is important for understanding the chemistry needed for improved scratch and mar of coatings. 相似文献
873.
874.
Drag force is a key parameter in the numerical modeling of gas-particle flow in circulating fluidized beds. The reliability of current drag force correlations over the regime of fast fluidization has, however, not been thoroughly investigated. In this article, a drag force correlation accounting for the clustering effects for Geldart A particles is used to simulate the behaviors typical of fast fluidization, including dynamic evolution of clusters as well as time- averaged axial and lateral voidage profiles. Diverse images of clusters are captured and the time-averaged profiles of voidage are shown to be in quantitative agreement with the present empirical correlation. The results based on different constitutive correlations of drag force show the importance of the choice of drag force in modeling fast-fluidized beds. This drag force correlation, based on a simple averaging assumption, could give some basic insights about the magnitude of the drag reduction. 相似文献
875.
多孔介质内部热质传递的等效耦合扩散模型的推导及其应用 总被引:1,自引:2,他引:1
基于Whitaker的体积平均方程,在不附加任何新的假设的基础上,对多孔介质内部热质传递的等效耦合扩散模型进行推导,得出了多孔介质内部热质传递的等效耦合扩散模型。并应用该模型对瓷质砖体干燥过程进行了数值模拟,模拟结果与实验结果十分吻合。 相似文献
876.
为了研究随外界环境条件改变聚苯乙烯(EPS)冻土路基温度场变化特征,运用ABAQUS有限元分析方法,对多年冻土区EPS隔热路基的温度场进行了数值模拟.计算时采用改变EPS铺设位置,模拟路面下多年冻土季节最大融深在路基修筑完工后8 a内随时间的变化.通过对计算结果分析得出,在多年冻土区路基中铺设保温材料对路面下多年冻土具有明显的保护作用.当EPS铺设在路堤底部时,路堤温度场分布比较均匀,路堤内部都为正温,在EPS板下,路基温度都为负温,说明EPS有效阻止了边坡和路面传入的热量.因此,如果要修筑EPS隔热路基,应将EPS板铺设于路堤底部. 相似文献
877.
The electrodiffusion technique was performed in order to investigate the shear rate on a scraped surface heat exchanger. Microelectrodes were placed inside: the walls of the outer cylinder; the inlet and outlet bowls; the rotor and the blades. Highly viscous Newtonian fluid (Emkarox HV45 solutions) and non-Newtonian model fluid (aqueous solutions of CMC) were used. The electrodiffusion method allowed us to measure wall shear rates. Maximum shear rate was observed at the scraping surface and caused by blades scraping, high shear rate was also measured on the leading edge of the blades. In the other parts of the exchanger, shear rate remained low but the development of Taylor vortices completely modified the scraped surface heat exchangers behaviour inside the surface of the bowls. A dimensionless representation of the friction factor was established for the inner and outer wall surface of the exchanger. 相似文献
878.
879.
齿轮泵挤出技术在橡塑行业的应用与发展 总被引:2,自引:0,他引:2
简要介绍了齿轮泵的结构、性能及工作原理,从齿轮泵挤出机的发展,齿轮泵挤出系统向压延机喂料,齿轮泵与MCTD挤出机相结合三个方面,讲述了其在橡塑行业中应用的优越性及缺憾。 相似文献
880.
The evaporative heat transfer of the non-boiling annular two-phase flow of air-water in a small vertical tube with uniform wall heat flux was studied both theoretically and experimentally. A simplified two-phase flow boundary layer model was used to calculate the thickness of the water film attached to the wall, and from the liquid film thickness the evaporative heat transfer coefficients of the annular two-phase flow were obtained. Theoretical equations and semi-theoretical equations were proposed for predicting the evaporative heat transfer of the annular two-phase flow of air-water in a small vertical tube. The semi-theoretical prediction agrees well with the experimental data. The mechanism of the heat transfer enhancement is the evaporation of the thin liquid film attached on the wall. 相似文献