Simulation Study of Ignition Characteristics of Impinging Sprays in Constant Volume Chamber

S. Rehman, S. Alam
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Abstract

The present study involves the simulation of a constant volume, non-premixed, hot surface spray combustion of diesel fuel for a given set of injection pressure, compressed air pressure (cylinder air pressure) and hot surface temperature (hot plate temperature) and their effects on ignition delay period. Fuel injection pressure was varied from 100 bar 300 bar in steps of 100 bar, cylinder air pressure in the range of 20 bar to 40 bar (in steps of 10 bar) and hot surface temperature from 623 K to 723 K (50 K steps). The problem was solved using 2D axisymmetric geometry. A structured mesh of about 1.24 lac nodal points was created and tested for grid independency. For solving flow behavior, a pressure solver was used with a turbulence model of k-ε with enhanced wall functions. While a volumetric eddy dissipation model was used to solve combustion phenomena. Ignition delay period was calculated with the help of static temperature versus time plot. It is found that keeping any two operating parameters constant, third operating parameter is inversely proportional to ignition delay period. The results of the present simulation study are in a fairly good agreement with the experimental studies at same operating conditions.
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定容室中撞击喷雾点火特性的仿真研究
在给定的喷射压力、压缩空气压力(气缸空气压力)和热表面温度(热板温度)条件下,对柴油机的定容、非预混热表面喷射燃烧进行了模拟,并分析了它们对点火延迟期的影响。燃油喷射压力从100 bar到300 bar不等,以100 bar为一个步骤,气缸气压在20 bar到40 bar之间(以10 bar为一个步骤),热表面温度从623 K到723 K (50 K步骤)。利用二维轴对称几何求解了该问题。创建了一个约1.24 lac节点的结构化网格,并进行了网格独立性测试。为了求解流动特性,采用了带有增强壁面函数的k-ε湍流模型的压力求解器。而燃烧现象则采用体积涡旋耗散模型。利用静态温度-时间图计算了点火延迟时间。结果表明,在保持任意两个工作参数不变的情况下,第三个工作参数与点火延迟时间成反比。本文的模拟研究结果与相同工况下的实验研究结果吻合较好。
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