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首页> 外文期刊>Journal of turbomachinery >Analysis of the Thermomechanical Stresses in Double-Wall Effusion Cooled Systems
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Analysis of the Thermomechanical Stresses in Double-Wall Effusion Cooled Systems

机译:双壁喷淋冷却系统中的热机械应力分析

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In this study, thermal stresses in a double-wall cooling system are analyzed. We consider an infinite flat double-wall geometry and assume that it can be represented by an axisymmetric unit cell, wherein the thermal loadings and deformation at the boundaries are determined by periodicity conditions. A thermal model is initially developed to obtain the thermal fields using a combination of empirical correlations and computational fluid dynamics (CFD) analysis. The thermal fields are then analyzed such that both the first-order and higher order approximations are determined. A theoretical solution is derived assuming that the temperature gradient takes place only across the outer skin using the first-order approximations. The solution yields an equibiaxial stress state in the skins, which are driven by the thermal curvature of the outer skin. To investigate other geometrical features and higher order approximations, a finite element model is used to solve Fourier's law of heat conduction and mechanical equilibrium equations. The numerical and theoretical results are found to be in excellent agreement. We determine that the increase of distance between pedestals reduces the stresses. Furthermore, the stress concentration factor at the fillet increases with the increase of both the radius and pedestal diameter and the decrease of the skin thickness. Increasing the number of film holes limits stresses to the external surface of the outer skin. The increase of the Reynolds number in the impingement hole increases the Biot number in the outer skin, which increases the stresses. The higher order approximations of the heat transfer coefficients play a minor role.
机译:在这项研究中,分析了双壁冷却系统中的热应力。我们考虑无限平坦的双壁几何结构,并假设它可以由轴对称单元表示,其中边界处的热载荷和变形由周期性条件确定。最初开发了一个热模型,以结合经验相关性和计算流体力学(CFD)分析获得热场。然后分析热场,以便确定一阶和高阶近似值。假设使用第一阶近似仅在整个蒙皮上发生温度梯度,则得出理论解。该溶液在蒙皮中产生等双轴应力状态,该状态由外蒙皮的热曲率驱动。为了研究其他几何特征和高阶近似,使用了有限元模型来求解热传导和机械平衡方程的傅立叶定律。发现数值和理论结果非常吻合。我们确定,基座之间距离的增加会减小应力。此外,圆角处的应力集中系数随着半径和基座直径的增加以及表皮厚度的减小而增加。膜孔数量的增加限制了外皮外表面的应力。撞击孔中雷诺数的增加会增加外皮中的比奥数,从而增加应力。传热系数的高阶近似起次要作用。

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