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Backward Monte Carlo Simulations in Radiative Heat Transfer

机译:辐射传热的反向蒙特卡洛模拟

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Standard Monte Carlo methods trace photon bundles in a forward direction, and may become extremely inefficient when radiation onto a small spot and/or onto a small direction cone is desired. Backward tracing of photon bundles is known to alleviate this problem if the source of radiation is large, but may also fail if the radiation source is collimated and/or very small. In this paper various implementations of the backward Monte Carlo method are discussed, allowing efficient Monte Carlo simulations for problems with arbitrary radiation sources, including small collimated beams, point sources, etc., in media of arbitrary optical thickness.
机译:标准的蒙特卡洛方法沿向前方向跟踪光子束,当需要向小光斑和/或向小方向的圆锥进行辐射时,光子束的效率可能极低。如果辐射源很大,光子束的向后跟踪可以缓解此问题,但是如果辐射源经过准直和/或非常小,也可能会失败。在本文中,将讨论后向蒙特卡洛方法的各种实现方式,从而可以对任意辐射源(包括较小的准直光束,点源等)在任意光学厚度的介质中进行有效的蒙特卡洛仿真。

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