首页> 外文期刊>Combustion Science and Technology >STUDY ON CATALYTIC COMBUSTION CHARACTERISTICS OF THE MICRO-ENGINE WITH DETAILED CHEMICAL KINETIC MODEL OF METHANE-AIR MIXTURE
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STUDY ON CATALYTIC COMBUSTION CHARACTERISTICS OF THE MICRO-ENGINE WITH DETAILED CHEMICAL KINETIC MODEL OF METHANE-AIR MIXTURE

机译:用甲烷-空气混合物的详细化学动力学模型研究微引擎的催化燃烧特性

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摘要

The catalytic combustion characteristics of methane-air mixture inside the combustion chamber of a micro-engine were investigated experimentally and numerically. The catalytic combustion experiments of the micro-engine coated with the supported noble metal catalysts Pt-La/gamma-Al2O3 were investigated. Numerical simulations of methane-air combustion with detailed gas phase and surface catalytic reaction kinetics, heat transfer, and leakage were investigated to interpret the experimental results of micro-engine catalytic combustion. The experimental results indicate catalytic micro-combustion of methane-air mixture is possible in the spaces approximately the length of 0.34 mm and diameter of 3 mm. Catalytic micro-combustion of methane-air mixture is demonstrated at the equivalence ratios of 0.8 and 0.2. The free-piston position traces are identical during the compression stroke, but different during the expansion stroke. The mass loss causes product temperatures to decrease faster during the expansion stroke, and significantly decreases the cycle work of the micro-engine. Some theoretical evidences are provided for the application of catalytic combustion to a power micro-electromechanical system and the extension of the micro-combustion limits.
机译:实验和数值研究了微型发动机燃烧室内甲烷-空气混合物的催化燃烧特性。研究了负载有贵金属催化剂Pt-La /γ-Al2O3的微引擎的催化燃烧实验。对甲烷-空气燃烧进行了详细的气相和表面催化反应动力学,传热和泄漏的数值模拟研究,以解释微型发动机催化燃烧的实验结果。实验结果表明,在大约0.34 mm的长度和3 mm的直径的空间中,甲烷-空气混合物的催化微燃烧是可能的。甲烷-空气混合物的催化微燃烧在当量比为0.8和0.2时得到证明。自由活塞位置迹线在压缩冲程期间相同,但在膨胀冲程期间不同。质量损失导致产品温度在膨胀冲程期间下降得更快,并显着降低了微型发动机的循环功。为将催化燃烧应用于功率微机电系统和扩展微燃烧极限提供了一些理论证据。

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