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An adaptive emission model for Monte Carlo simulations in highly inhomogeneous media represented by stochastic particle fields

机译:用于由随机粒子场表示的高度非均匀介质中的蒙特卡罗模拟的自适应发射模型

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摘要

Traditional Monte Carlo ray-tracing (MCRT) methods for continuous participating media are not applicable in media represented by point masses (or stochastic particles) frequently encountered in combustion modeling. In the authors' previous work several ray models and particle models have been proposed for radiation simulations in such media. In the present paper an efficient emission scheme is developed for MCRT in highly inhomogeneous media represented by particle fields. Ray energies are limited to a narrow range to reduce statistical error, by having particles emit numbers of photons proportional to their emissive power (including combination of weak particles). A method to evaluate the radiative heat source, required by the overall energy equation, is also developed. A particle field representing the highly inhomogeneous medium in a turbulent jet flame is employed to test the proposed methods. (c) 2006 Elsevier Ltd. All rights reserved.
机译:对于连续参与的介质,传统的蒙特卡洛射线追踪(MCRT)方法不适用于以燃烧模型中经常遇到的点质量(或随机粒子)为代表的介质。在作者先前的工作中,已经提出了几种射线模型和粒子模型,用于在这种介质中进行辐射模拟。在本文中,针对由粒子场表示的高度非均匀介质中的MCRT,开发了一种有效的发射方案。通过使粒子发出与其发射功率成正比的光子数量(包括弱粒子的组合),将射线能量限制在一个狭窄的范围内,以减少统计误差。还开发了一种评估整体能量方程所需的辐射热源的方法。代表湍流喷射火焰中高度不均匀介质的粒子场用于测试所提出的方法。 (c)2006 Elsevier Ltd.保留所有权利。

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