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OpenMP parallel computing of 2D TiC combustion synthesis process using an explicit finite-volume scheme

机译:使用明确的有限体积方案,OpenMP并行计算2D TIC燃烧合成过程

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This paper analyzes from a numerical point of view the ignition and propagation of the combustion front during the exothermic TiC combustion synthesis of a material made of pressed titanium and carbide particles when thermophysical properties are either assumed constant or temperature and conversion rate dependent. A two-dimensional cylindrical geometry is considered. The heat supply is prescribed on one, two or three sides of the physical domain. A one-step kinetics is used to describe the reaction Ti+C→TiC in a solid phase and leads to the computation of the conversion rate. A coupling with a non-linear heat equation which takes into account the heat generated by the exothermic kinetics and the two allotropic phase-changes is considered. An explicit finite-volume discretization of the coupled system is constructed and analyzed. Time-step's stability condition is given for a general expression of the thermo-physical characteristics. A discrete maximum principle is reported. Open MP API was used to parallelize the numerical software written in C. An average speedup of three was obtained on an intel quad-core processor i7-2600. The ignition time and the fraction of unreacted material are systematically computed and compared for several heat supply scenario.
机译:本文从数值观点分析了在热神族和碳化物颗粒制成的燃烧燃烧合成中燃烧前面的燃烧前面的点火和传播,当热神族和碳化物颗粒仍然是恒定的或温度和转化率。考虑二维圆柱形几何形状。热源在物理域的一个,两侧或三个边上规定。一种步骤动力学用于描述固相中的反应Ti + C→TiC,并导致转换率的计算。考虑了考虑了由放热动力学产生的热量和两个同种异性相变的非线性热方程的耦合。构建和分析耦合系统的显式有限体积离散化。时间步骤的稳定性条件用于热物理特性的一般表达。报告了离散的最大原则。 Open MP API用于并行化C中编写的数字软件。在英特尔四核处理器I7-2600上获得了三个的平均速度。系统地计算并比较了未反应材料的点火时间和分数,并比较了几种热源场景。

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