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An inverse radiation boundary design problem for an enclosure filled with an emitting, absorbing, and scattering media

机译:装有发射,吸收和散射介质的外壳的逆辐射边界设计问题

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This work is an inverse radiative design problem in which the objective is to determine the spatial distribution of heat source strengths which produces a desired temperature and heat flux distribution on the design surface. The furnace whose walls are diffuse-grey is assumed to be filled with an absorbing, emitting, and scattering medium. The function to be minimized is the sum of squares of the differences between the desired and calculated radiative heat fluxes at the design surface. Radiative heat flux calculations are accomplished by means of the Modified Discrete Transfer Method MDTM using the correction factors suggested by Coelho and Carvalho [P.J. Coelho, M.G. Carvalho, Conservative formulation of the discrete transfer method, ASME J. Heat Transfer, 119 (1997) 118-128.] and Cumber [P.S. Cumber, Improvements to the discrete transfer method of calculating radiative heat transfer, Int. J. Heat Mass Transfer, 38 (12) (1995) 2251-2258.]. For inverse design calculations the Conjugate Gradient Method CGM is employed, in which the sensitivity coefficients are defined and used as needed by the algorithm. Our investigation shows that the presented algorithm is able to estimate heater strengths accurately. (c) 2006 Elsevier Ltd. All rights reserved.
机译:这项工作是一个逆辐射设计问题,其目的是确定热源强度的空间分布,该热源强度在设计表面上产生所需的温度和热通量分布。假定炉壁为灰色的扩散炉充满了吸收,发射和散射介质。要最小化的函数是设计表面上所需辐射热通量和计算辐射热通量之差的平方和。辐射热通量的计算是通过修正离散传递法MDTM并使用Coelho和Carvalho建议的校正因子来完成的。 M.G. Coelho Carvalho,离散转移方法的保守配方,ASME J. Heat Transfer,119(1997)118-128。]和Cumber [P.S. Cumber,对计算辐射热传递的离散传递方法的改进,Int。 J.热传质,38(12)(1995)2251-2258。对于逆向设计计算,采用共轭梯度法CGM,其中定义了灵敏度系数,并根据算法需要使用了灵敏度系数。我们的研究表明,提出的算法能够准确估算加热器的强度。 (c)2006 Elsevier Ltd.保留所有权利。

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