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首页> 外文期刊>WSEAS Transactions on Heat and Mass Transfer >Stabilization Operation Region and Operational Variables Effect on a Reciprocal Flow Burner
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Stabilization Operation Region and Operational Variables Effect on a Reciprocal Flow Burner

机译:往复式燃烧器的稳定操作区域和操作变量影响

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A reciprocal gas flow burner is computationally simulated for obtaining its stable operation region in terms of equivalence ratio and filtration velocity, for two energy losses configurations schemes. Equivalence ratio and filtration velocity were considered over the range [0.1, 1.0] and [0.25, 1.0] (m/s). The one-dimensional mathematical model consider that porous media is made by alumina bolls of 5.6 mm diameter, which fill up a quartz hollow cylinder of 5 cm diameter and 50 cm high. The mathematical model includes total mass preservation laws, momentum and enthalpy for the solid as for the gas. Combustion is modeled through global chemical reaction in one step. Chemical kinetic of methane combustion is treated on the base of Arrhenius approximation. It is considered besides that system heat transport occurs at conditions without local thermal equilibrium and includes convections mechanisms, conduction and thermal radiation. Lateral heat losses from the system to environment through cylinder lateral surface were studied at two scenarios: reactor coupled with and without heat exchangers. Mathematical model are discretized by finite differences method through implicit scheme and its solution reached by TDMA algorithm. Uniform grid with 801 nodes and time step △t = 0.01 (s) gave solution independence. Results demonstrated increased stabilization in temperature profile, thus increased stabilization region for the reactor coupled with heat exchangers.
机译:对于两种能量损失配置方案,通过计算模拟了往复式气流燃烧器,以求出其当量比和过滤速度方面的稳定工作区域。在[0.1,1.0]和[0.25,1.0](m / s)范围内考虑当量比和过滤速度。一维数学模型认为,多孔介质是由直径为5.6 mm的氧化铝bo制成的,填充了直径为5 cm,高度为50 cm的石英空心圆柱体。数学模型包括总质量守恒定律,固体和气体的动量和焓。通过一步的整体化学反应来模拟燃烧。甲烷燃烧的化学动力学基于Arrhenius近似进行处理。此外,还考虑了系统传热发生在没有局部热平衡的条件下,并且包括对流机制,传导和热辐射。在两种情况下研究了从系统通过圆柱体侧面到环境的侧向热损失:带和不带热交换器的反应堆。通过隐式有限差分法将数学模型离散化,并通过TDMA算法求解。具有801个节点且时间步长△t = 0.01(s)的均匀网格给出了解的独立性。结果表明,温度分布的稳定性增加,因此与热交换器相连的反应器的稳定区域增加。

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