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首页> 外文期刊>International Journal of Heat and Mass Transfer >Spectral collocation method for transient thermal analysis of coupled conductive, convective and radiative heat transfer in the moving plate with temperature dependent properties and heat generation
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Spectral collocation method for transient thermal analysis of coupled conductive, convective and radiative heat transfer in the moving plate with temperature dependent properties and heat generation

机译:光谱配置方法,用于瞬态热分析,其具有随温度变化而产生热量的活动板中的传导,对流和辐射耦合热传递

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摘要

The spectral collocation method is developed and formulated to solve transient thermal process in the moving plate with temperature dependent properties and heat generation. In this moving plate, thermal conductivity and surface emissivity are assumed as linear functions of temperature; and heat transfer coefficient and heat generation are considered as power exponent functions of temperature. The time domain of energy equation is discretized by fully implicit Euler scheme; the spatial domain of energy equation is discretized by Chebyshev polynomials and Chebyshev collocation points. Numerical results by the spectral collocation method are compared with analytical solutions. This comparison indicates that the spectral collocation method can obtain very high accuracy even using few nodes. Meanwhile, the spectral collocation method can provide the exponential node convergence rate for this present problem. Moreover, the effects of various dimensionless parameters, such as Peclet number, heat generation parameters, thermal conductivity coefficient, surface emissivity coefficient, power exponent of heat transfer coefficient, convective-conductive parameter, radiative-conductive parameter and dimensionless ambient temperature on transient temperature, efficiency and effectiveness of the moving plate are comprehensively investigated.
机译:开发并制定了光谱搭配方法,以解决运动板中具有温度相关特性和生热的瞬态热过程。在该移动板中,热导率和表面发射率被假定为温度的线性函数。传热系数和发热被视为温度的幂指数函数。能量方程的时域通过完全隐式欧拉格式离散化。能量方程的空间域由Chebyshev多项式和Chebyshev搭配点离散化。将光谱搭配方法的数值结果与解析解进行比较。该比较表明,即使使用很少的节点,频谱配置方法也可以获得非常高的精度。同时,频谱搭配方法可以为该问题提供指数节点收敛速度。此外,各种无因次参数,例如佩克雷数,生热参数,导热系数,表面发射系数,传热系数的幂指数,对流传导参数,辐射传导参数和无因次环境温度对瞬态温度的影响,全面研究了移动板的效率和有效性。

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