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Convective and radiative heat loss impact on CO2 emission, O2 depletion and thermal stability in a reactive slab of variable thermal conductivity

机译:对CO 2 发射,O 2 耗尽和热稳定性在可变导热率的反应板中的热稳定性

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The impact of convective and radiative heat loss on CO emission, O depletion and thermal stability in a reactive stockpile of combustible materials is investigated. A rectangular slab of variable thermal conductivity is applied to study the reaction taking place in a stockpile. It is assumed that the slab's surface temperature is uniform throughout. Runge-Kutta-Fehlberg (RKF45) method coupled with shooting technique is applied to solve numerically derived governing equations for heat and mass transfer problem. Nusselt and Sherwood numbers at the material surface are obtained from numerical expressions for temperature fields. Graphical expressions for O emission, O depletion and temperature behavior are obtained to study and discuss quantitatively the effects of various thermo-physical parameters on CO, O and thermal stability. Thermo-physical parameters that help to reduce CO emission and hence O preservation, are identified, including those which help spontaneous combustion processes from explosions.
机译:研究了对流和辐射热损失对可燃物料反应储存中的共同发射,耗料和热稳定性的影响。应用矩形的可变导热率的矩形板,以研究储存中的反应。假设板坯的表面温度始终是均匀的。 runge-Kutta-Fehlberg(RKF45)方法耦合的拍摄技术应用于解决了用于热和传质问题的数值衍生的控制方程。材料表面的Nusselt和Sherwood数字是从温度场的数值表达式获得的。获得O发射的图形表达,o耗尽和温度行为,以定量地研究和讨论各种热物理参数对CO,O和热稳定性的影响。鉴定有助于减少CO排放和维护的热物理参数,包括那些帮助爆炸的自发燃烧过程的方法。

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