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Premixed combustion of methane-air mixture stabilized over porous medium: A 2D numerical study

机译:在多孔介质上稳定的甲烷-空气混合物的预混燃烧:二维数值研究

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The advancing development of small portable devices and miniaturization of electronic components such as smartphones, laptops, Global Positioning Systems (GPS), Unmanned Aerial Vehicles (UAVs) and sensors have led to an increasing demand for small scale power generators, such as the Ultra Micro Gas Turbine (UMGT). This study focuses on the two dimensional numerical investigation of premixed methane -air flames stabilized over a porous medium in a cylindrical combustion chamber which is a fundamental part of an UMGT. A reduced skeletal mechanism of methane combustion including 17 species and 73 reactions was employed for the simulations. The main objective of the present work is to investigate the effect of important parameters such as incoming mixture mass flow rate, equivalence ratio, reactants' initial temperature, thermal conductivity and porosity of flame holder on the combustion process. Results show that combustion can be considerably affected by the flame holder, especially because under certain conditions it could lead to considerable heat losses and eventually flame quenching. Generally when the burning velocity is much higher than the incoming flow velocity, the flame lays on the surface of the porous medium and heat is lost through the flame holder causing a decrease in the flame temperature. On the other hand, when the flame is slightly lifted from the flame holder, heat is dispersed to the outer wall and through axial conduction the porous medium is heated up, allowing the mixture to increase its temperature before combustion. Finally the effect of the thermal conductivity and porosity of the porous medium are analysed, showing that the more insulating the flame holder is, the less heat losses occur. (C) 2016 Elsevier Ltd. All rights reserved.
机译:小型便携式设备的不断发展和智能手机,笔记本电脑,全球定位系统(GPS),无人机(UAV)和传感器等电子组件的小型化导致对诸如Ultra Micro等小型发电机的需求不断增长燃气轮机(UMGT)。这项研究的重点是在圆柱形燃烧室中多孔介质上稳定的预混合甲烷-空气火焰的二维数值研究,该燃烧室是UMGT的基本组成部分。简化的甲烷燃烧骨架机理包括17种和73个反应,用于模拟。本工作的主要目的是研究重要参数的影响,例如进入混合物的质量流量,当量比,反应物的初始温度,导热系数和火焰保持器的孔隙率对燃烧过程的影响。结果表明,火焰受火焰保持器的影响很大,特别是因为在某些条件下,它可能导致大量的热损失,并最终导致火焰熄灭。通常,当燃烧速度远高于进入的流速时,火焰位于多孔介质的表面,热量通过火焰保持器散失,从而导致火焰温度降低。另一方面,当火焰从火焰保持器中略微升起时,热量散布到外壁,并且通过轴向传导,多孔介质被加热,从而使混合物在燃烧之前升高其温度。最后,分析了多孔介质的热导率和孔隙率的影响,表明火焰保持器越隔热,发生的热损失就越少。 (C)2016 Elsevier Ltd.保留所有权利。

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