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首页> 外文期刊>International journal of hydrogen energy >Design and numerical analysis of a 3 kWe flameless microturbine combustor for hydrogen fuel
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Design and numerical analysis of a 3 kWe flameless microturbine combustor for hydrogen fuel

机译:3 kWe氢燃料无焰微型涡轮燃烧室的设计和数值分析

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In this work, a new 3 kWe flameless combustor for hydrogen fuel is designed and analyzed using CFD simulation. The strategy of the design is to provide a large volumetric combustion for hydrogen fuel without significant rise of the temperature. The combustor initial dimensions and specification were obtained from practical design procedures, and then optimized using CFD simulations. A three-dimensional model for the designed combustor is constructed to further analysis of flameless hydrogen combustion and consideration that leads to disappearance of flame-front and flameless combustion. The key design parameters including aerodynamic, temperature at walls and flame, NOx, pressure drop, combustion efficiency for the hydrogen flame is analyzed in the designed combustor. To well demonstrate the combustor, the NOx and entropy destruction and finally energy conversion efficiency, and overall operability in the microturbine cycle of hydrogen flameless combustor is compared with a 3 kWe design counterpart for natural gas. The findings demonstrate that hydrogen flameless combustion is superior to derive the microturbines with significantly lower NOx, and improvements in energy efficiency, and cycle overall efficiency with low wall temperatures guaranteeing the long-term operation of combustor and microturbine parts. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中,使用CFD仿真设计并分析了一种用于氢燃料的新型3 kWe无焰燃烧室。该设计策略是在不显着升高温度的情况下为氢燃料提供大体积燃烧。燃烧室的初始尺寸和规格是从实际设计程序中获得的,然后使用CFD仿真进行了优化。为所设计的燃烧器建立了三维模型,以进一步分析无焰氢燃烧,并考虑导致无焰燃烧和无焰燃烧的消失。在设计的燃烧室中分析了关键的设计参数,包括空气动力学,壁温和火焰温度,NOx,压降,氢火焰的燃烧效率。为了很好地证明燃烧室,将无氢氢气无焰燃烧室的NOx和熵破坏以及最终的能量转换效率以及微涡轮循环的总体可操作性与3kWe设计的天然气进行了比较。研究结果表明,氢无焰燃烧优于使用微型燃气轮机,可显着降低NOx的排放,并提高了能源效率,并以较低的壁温实现了循环整体效率,从而确保了燃烧室和微型燃气轮机部件的长期运行。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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