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Experimental study of an integral catalytic combustor: Heat exchanger for Stirling engines

机译:整体式催化燃烧器的实验研究:斯特林发动机的热交换器

摘要

The feasibility of using catalytic combustion with heat removal for the Stirling engine to reduce exhaust emissions and also improve heat transfer to the working fluid was studied using spaced parallel plates. An internally air-cooled heat exchanger was placed between two noble metal catalytic plates. A preheated fuel-air mixture passed between the plates and reacted on the surface of the catalyzed plates. Heat was removed from the catalytic surface by radiation and convection to the aircooled heat exchangers to control temperature and minimize thermal nitrogen oxide emissions. Test conditions were inlet combustion air temperatures from 850 to 900 K, inlet velocities of about 10 m/s, equivalence ratios from 0.5 to 0.9, and pressures from 1.3x10 to the 5th power to 2.0x10 to the 5th power Pa. Propane fuel was used for all testing. Combustion efficiencies greater than 99.5 percent were measured. Nitrogen oxide emissions ranged from 1.7 to 3.3 g NO2/kg fuel. The results demonstrate the feasibility of the concept and indicate that further investigation of the concept is warranted.
机译:使用间隔的平行板研究了斯特林发动机使用催化燃烧除热来减少废气排放并改善向工作流体的传热的可行性。内部空气冷却的热交换器放置在两个贵金属催化板之间。预热的燃料-空气混合物在板之间通过并在催化板的表面上反应。通过辐射和对流到空气冷却的热交换器将热量从催化表面除去,以控制温度并使氮氧化物的热排放最小化。测试条件为进气燃烧空气温度为850至900 K,进气速度约为10 m / s,当量比为0.5至0.9,压力为1.3x10至5功率至2.0x10至5功率Pa。用于所有测试。测量的燃烧效率大于99.5%。氮氧化物排放量为1.7至3.3克NO2 / kg燃料。结果证明了该概念的可行性,并表明有必要对该概念进行进一步的研究。

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    Bulzan D. L.;

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  • 年度 1982
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