首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >THERMAL SOLUTIONS FOR A PLATE WITH AN ARBITRARY TEMPERATURE TRANSIENT ON ONE SURFACE AND CONVECTION ON THE OTHER: DIRECT AND INVERSE FORMULATIONS
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THERMAL SOLUTIONS FOR A PLATE WITH AN ARBITRARY TEMPERATURE TRANSIENT ON ONE SURFACE AND CONVECTION ON THE OTHER: DIRECT AND INVERSE FORMULATIONS

机译:一个表面的恒温溶液,一个表面上的任意温度瞬态和另一个表面的对流:直接和逆配方

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Thick plates that are thermally loaded on one surface with convection on the other are often encountered in engineering practice. Given this wide utility and the limitations of most existing solutions to an adiabatic boundary condition, generalized direct thermal solutions were first derived for an arbitrary surface loading as modeled by a polynomial and its coefficients on the loaded surface with convection on the other. Once formulated, the temperature solutions were then used with elasticity relationships to determine the resulting thermal stresses. Additionally, the Inverse thermal problem was solved using a least-squares determination of the aforementioned polynomial coefficients based on the direct-solution and temperatures measured at the surface with convection. Previously published relationships for a thick-walled cylinder with internal heating/cooling and external convection are also included for comparison. Given the versatility of the polynomial solutions advocated, the method appears well suited for complicated thermal scenarios provided the analysis is restricted to the time interval used to determine the polynomial and the thermophysical properties do not vary with temperature.
机译:在工程学实践中通常遇到在另一个对流的一个表面上热负载的厚板。鉴于这种宽泛的实用性和最现有的绝热性边界条件的局限性,首先是由多项式和其系数在加载的表面上建模的任意表面负载来导出的广义直接热解,另一个。一旦配制,然后将温度溶液与弹性关系一起使用以确定所得的热应力。另外,使用基于在表面在表面上测量的直接溶液和温度的最小二乘确定上述多项式系数的最小二乘法确定反向热问题。以前公布了具有内部加热/冷却和外部对流的厚壁圆筒的关系。鉴于所倡导的多项式解决方案的多功能性,该方法看起来非常适合于复杂的热场景,所以分析仅限于用于确定多项式的时间间隔,热物理性能不会随温度而变化。

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