首页> 外文会议>ASME/JSME Joint Fluids Engineering Conference >PREDICTING SKIN FRICTION FOR TURBULENT FLOW OVER RANDOMLY-ROUGH SURFACES USING THE DISCRETE-ELEMENT METHOD: PART Ⅰ―SURFACE CHARACTERIZATION
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PREDICTING SKIN FRICTION FOR TURBULENT FLOW OVER RANDOMLY-ROUGH SURFACES USING THE DISCRETE-ELEMENT METHOD: PART Ⅰ―SURFACE CHARACTERIZATION

机译:采用离散元素法预测随机粗糙表面上随机粗糙表面的湍流:部分Ⅰ表面表征

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The discrete-element method for predicting skin friction for turbulent flow over rough surfaces considers the drag on the surface to result from the combination of the skin friction on the flat part of the surface and the drag on the individual roughness elements mat protrude into the boundary layer. To adequately analyze flow over a randomly-rough surface using the discrete-element method, the blockage fraction and the roughness element cross-section area distributions as a function of height must be measured. Taylor, in 1983, proposed a method for evaluating the blockage fraction and cross-sectional areas distributions, assuming circular cross sections, using two-dimensional profilometer traces. With the advent of three-dimensional profilometery, the geometry of a randomly-rough surface can be completely characterized. Two randomly-rough surfaces found on high-hour gas-turbine blades were characterized using a Taylor-Hobson Form Talysurf Series 2 profilometer. A method for using the three-dimensional profilometer output to determine the geometry input required in the discrete-element method for randomly-rough surfaces is presented in this paper, Part 1. Part 2 extends the validation of the discrete-element roughness method to closely-packed, randomly-rough surfaces. The procedure for handling randomly-rough surfaces is described, and the characterizations for the surfaces used to validate the discrete element model in Part 2 are presented.
机译:用于预测粗糙表面湍流湍流皮肤摩擦的离散元件方法认为表面上的拖动,从表面的平坦部分的组合和各个粗糙度元件垫的拖曳到边界中的拖动层。为了使用离散元件方法充分分析随机粗糙表面上的流动,必须测量作为高度函数的堵塞分数和粗糙度截面区域分布。 1983年,泰勒提出了一种使用二维轮廓仪迹线的圆形横截面来评估堵塞分数和横截面积分布的方法。随着三维轮廓测量的出现,可以完全表征随机粗糙表面的几何形状。在高时气汽轮机刀片上发现的两个随机粗糙的表面使用Taylor-Hobson Talysurf系列2型轮廓仪表征。本文提出了一种用三维轮廓计输出来确定随机粗糙表面的离散元件方法所需的几何输入,第1.部分2延伸了密切的离散元粗糙度方法的验证 - 包装,随机粗糙的表面。描述了处理随机粗糙表面的过程,并呈现用于验证第2部分中的离散元件模型的表面的特性。

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