首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >Exact solution of heat conduction in a two-domain parallelepiped with an orthotropic layer and its application to the estimation of the three-dimensional thermal conductivity tensor and volumetric heat capacity of the orthotropic layer
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Exact solution of heat conduction in a two-domain parallelepiped with an orthotropic layer and its application to the estimation of the three-dimensional thermal conductivity tensor and volumetric heat capacity of the orthotropic layer

机译:具有正交层的双结构型的热传导的精确溶液及其应用于估计正交层的三维导热张量和体积热容量

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The three-dimensional exact solution of heat conduction in a two-layer composite is found applying the method of separation of variables. One layer is onthotropic and the other layer is isotropic. This solution is used to calculate sensitivity coefficients with respect to the thermophysical properties of the onhotropic layer at fourteen thermocouple locations. Numerical experiments are carried out to solve a parameter estimation problem that involves the estimation of the thermal conductivities in the x-, y-, and z-directions, the volumetric heat capacity of the orthotropic layer, the effective thermal conductivity of the isotropic layer, and the heat flux input. The exact solution is used to generate temperature readings at fourteen thermocouple locations. First, the parameter estimation problem is solved using the exact temperatures and a hybrid algorithm to estimate the thermal properties and the heat flux. Second, random noise is added to the exact temperatures and the thermal properties and heat flux are estimated using the same hybrid algorithm. It is found that when using the exact temperatures, the minimized quadratic functional has a value of 2.4×10{sup}(-16) (°C){sup}2 and the estimated properties agree to the ninth decimal place with the "exact" properties.
机译:发现两层复合材料中的热传导的三维精确溶液应用于分离变量的方法。一层是近滴注,另一层是各向同性的。该溶液用于在十四个热电偶位置处相对于榫粒层的热理性质来计算灵敏度系数。进行数值实验以解决参数估计问题,涉及涉及X-,Y和Z方向的热导率,正交层的容积热容量,各向同性层的有效导热率的估计的参数估计问题。和热通量输入。确切的解决方案用于在十四个热电偶位置产生温度读数。首先,使用精确的温度和混合算法来解决参数估计问题以估计热性质和热通量。其次,将随机噪声添加到精确的温度,并且使用相同的混合算法估计热性能和热通量。结果发现,当使用精确的温度时,最小化的二次功能具有2.4×10 {sup}( - 16)(°C){sup} 2的值,并且估计的属性同意第九位与“精确的小数“ 特性。

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