首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >Parallelizing the discrete ordinates method (DOM) for three-dimensional radiative heat transfer calculations using a priority queuing technique
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Parallelizing the discrete ordinates method (DOM) for three-dimensional radiative heat transfer calculations using a priority queuing technique

机译:使用优先排队技术并行求解三维辐射热传递的离散坐标法(DOM)

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摘要

A parallelizing algorithm based on a priority queuing system is developed for solving the three-dimensional radiative transfer equation (RTE) using the discrete ordinates method (DOM) in an absorbing-emitting medium. The classical iterative method of initializing intensity values at processor boundaries and conducting iterations until convergence is very inefficient, and hence a better technique is desired. The method developed here is called the staged technique and relies on the careful organization and prioritization of the multiple inherently serial calculations present in the classical algorithm. A parallel performance analysis is presented for this technique, and measured values of performance metrics are compared to theoretical values. Although theoretical values exhibit possibilities of efficiencies up to 50%, the measured values are lower due to parallel logic overhead. Overall, better performance is obtained for larger problem sizes solved on a relatively small number of processors, but performance can be low outside this configuration.
机译:开发了一种基于优先级排队系统的并行算法,用于在吸收发射介质中使用离散坐标法(DOM)求解三维辐射传递方程(RTE)。在处理器边界初始化强度值并进行迭代直到收敛的经典迭代方法效率非常低,因此需要一种更好的技术。这里开发的方法称为分阶段技术,它依赖于对经典算法中存在的多个固有串行计算的精心组织和优先级划分。对此技术进行了并行性能分析,并将性能指标的测量值与理论值进行了比较。尽管理论值显示出效率高达50%的可能性,但由于并行逻辑开销,测量值较低。总体而言,对于在相对较少数量的处理器上解决的较大问题,可以获得更好的性能,但是在此配置之外,性能可能会很低。

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