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Studies on the Effects of Interphase Heat Exchange during Thermal Explosion in a Combustible Dusty Gas with General Arrhenius Reaction-Rate Laws

机译:通用阿雷尼乌斯反应速率定律研究可燃气体中热爆过程中相间换热的影响

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A mathematical model for thermal explosion in a combustible dusty gas containing fuel droplets with general Arrhenius reaction-rate laws, convective and radiative heat losses, and interphase heat exchange between gas and inert solid particles is investigated. The objective of the study is to examine the effects of interphase heat exchange between the gas and solid particles on (i) ignition of reacting gas, (ii) accumulation of heat by the solid particles during combustion process (iii) evaporation of the liquid fuel droplets, and (iv) consumption of reacting gas concentration. The equations governing the physical model with realistic assumptions are stated and nondimensionalised leading to an intractable system of first-order coupled nonlinear differential equations, which is not amenable to exact methods of solution. Therefore, we present numerical solutions as well as different qualitative effects of varying interphase heat exchange parameter. Graphs and Table feature prominently to explain the results obtained.
机译:研究了一种具有可燃性粉尘气体的热爆炸数学模型,该粉尘气体包含具有一般Arrhenius反应速率定律,对流和辐射热损失以及气体与惰性固体颗粒之间的相间热交换的燃料滴。该研究的目的是检查气体和固体颗粒之间的相间热交换对(i)反应气体着火,(ii)燃烧过程中固体颗粒的热量积聚(iii)液体燃料的蒸发的影响滴;(iv)消耗反应气体浓度。陈述并控制了具有实际假设的物理模型的方程,并且将其进行无量纲化,从而导致一阶耦合非线性微分方程的棘手系统,不适合精确的求解方法。因此,我们提出了数值解以及变化的相间热交换参数的不同定性效果。图形和表格突出地说明了获得的结果。

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