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Two-Flux and Green's Function Method for Transient Radiative Transfer in a Semi-Transparent Layer

机译:半透明层中瞬态辐射传递的双通量和格林函数方法

摘要

A method using a Green's function is developed for computing transient temperatures in a semitransparent layer by using the two-flux method coupled with the transient energy equation. Each boundary of the layer is exposed to a hot or cold radiative environment, and is heated or cooled by convection. The layer refractive index is larger than one, and the effect of internal reflections is included with the boundaries assumed diffuse. The analysis accounts for internal emission, absorption, heat conduction, and isotropic scattering. Spectrally dependent radiative properties are included, and transient results are given to illustrate two-band spectral behavior with optically thin and thick bands. Transient results using the present Green's function method are verified for a gray layer by comparison with a finite difference solution of the exact radiative transfer equations; excellent agreement is obtained. The present method requires only moderate computing times and incorporates isotropic scattering without additional complexity. Typical temperature distributions are given to illustrate application of the method by examining the effect of strong radiative heating on one side of a layer with convective cooling on the other side, and the interaction of strong convective heating with radiative cooling from the layer interior.
机译:通过使用两通量法和瞬态能量方程,开发了一种使用格林函数的方法来计算半透明层中的瞬态温度。该层的每个边界暴露于热或冷辐射环境中,并通过对流加热或冷却。层的折射率大于1,并且内部反射的影响包括在假定为扩散的边界中。该分析考虑了内部发射,吸收,热传导和各向同性散射。包括与光谱有关的辐射特性,并给出了瞬态结果,以说明具有光学上薄带和厚带的两波段光谱行为。通过与精确辐射传递方程的有限差分解进行比较,验证了使用当前格林函数方法的瞬态结果对于灰色层的有效性。获得了极好的协议。本方法仅需要适度的计算时间并且合并了各向同性散射而没有额外的复杂性。通过检查层的一侧强辐射加热和另一侧的对流冷却,以及层对内部强对流加热与辐射冷却的相互作用,给出了典型的温度分布以说明该方法的应用。

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  • 作者

    Siegel Robert;

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  • 年度 1995
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