首页> 外文期刊>化学工学論文集 >A Solution Method of Inverse Heat Conduction Problem by a Integral Form of Non-steady Heat Conduction Equation for a Slab and its Application to the Calculation of Surface Temeprature-dependent Heat Transfer Coefficient
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A Solution Method of Inverse Heat Conduction Problem by a Integral Form of Non-steady Heat Conduction Equation for a Slab and its Application to the Calculation of Surface Temeprature-dependent Heat Transfer Coefficient

机译:一种逆热传导问题的求解方法,通过用于板坯的非稳态热传导方程的整体形式及其应用于表面抑制依赖性传热系数的计算

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摘要

A non-steady heat conduction equation based on mass co-ordinate was derived for a slab, which is convenient forconsideration of temperature dependent physical properties. Its integral form was then expressed using the differential ratio of the zero and the 1 st moments of enthalpy distribution, which provides additive relations of the internal and the surface thermal resistances. Numerical solutions for the heat conduction equation are obtained using linear temperature dependences for (thermal conductivity times density) and (integral average heat capacity), for various Biotnumber. A model equation with three parameters was applied for profiles of temperature and enthalpy. The relation between the zero and the 1 st moments of the enthalpy distribution were well correlated by the empirical equation previously reported for the concentration distribution in desorption process. The integral form of the heat conduction equation with the two above relations was applied for inverse problems of calculating temperature dependent physical properties and surface temperature dependent heat transfer coefficient from measured temperatures in a slab. Illustrations are shown for calculation of surface temperature dependent heat transfer coefficient on the water-spray cooling of a heated steel plate.
机译:基于质量坐标的非稳定的导热方程得到用于平板,这是方便地前容的温度依赖性物理性质。然后使用零焓分布的差分比和1 st矩的差异比表达其整体形式,其提供内部和表面热阻的添加剂关系。使用线性温度依赖性获得(导热时间密度)和(整体平均热容量),用于各种生物系统的数值解。应用具有三个参数的模型方程用于温度和焓的轮廓。焓分布的零和1的关系与前述解吸过程中浓度分布的浓度分布良好相关。施加具有上述关系的热导通方程的整体形式,用于计算温度依赖性物理性质和表面温度依赖性传热系数的逆问题与板坯中的测量温度。示出了用于计算表面温度依赖性传热系数对加热钢板的喷水冷却的图示。

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