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Experimental Investigations on Active Cooling Thermal Protection Structure of Hydrocarbon-Fueled Scramjet Combustor in Arc Heated Facility

机译:电弧加热设施中烃燃料炒燃烧器主动冷却热保护结构的实验研究

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摘要

The active cooling thermal protection technology is the efficient method to resolve the long-duration work and reusable problems of hydrocarbon-fueled scramjet combustor, where worst thermo-mechanical loads occur. The fuel is passed through coolant channels adjacent to the heated surfaces to absorb heat from the heating exchanger panels, prior to injection into the combustor. The heating exchanger both cooled down the wall temperature of the combustor wall and heats and cracks the hydrocarbon fuel inside the panel to permit an easier combustion and satisfying combustion efficiency. The subscale active cooling metallic panels, with dimensions of 100×100 mm and different coolant channel sizes, have been tested under typical combustion thermal environment produced by arc heated Turbulent Flow Duct (TFD). The heat exchange ability of different coolant channel sizes has been obtained. The big-scale active cooling metallic panel, with dimensions of 100 × 750 mm and the coolant channel sizes of better heating exchange performance, has been made and tested in the big-scale arc heated TFD facility. The test results show that the local superheated ablation is easy to happen for the cooling fuel assigned asymmetrically in the bigscale active cooling metallic panel, and the cooling fuel rate can reduce 8%~10% after spraying the Thermal Barrier Coating (TBC) in the heating surface.
机译:主动冷却热保护技术是解决碳氢化合物汽轮燃烧器燃烧器的长期工作和可重复使用问题的有效方法,其中发生了最差的热机械负载。燃料通过与加热表面相邻的冷却剂通道来通过,以在注入燃烧器之前从加热交换器板中吸收热量。加热交换器均在燃烧器壁的壁温度下冷却并裂解面板内的烃燃料,以允许更容易的燃烧并满足燃烧效率。在通过电弧加热湍流流量管道(TFD)产生的典型燃烧热环境下测试了尺寸为100×100mm和不同的冷却剂通道尺寸的亚电压活性冷却金属板。已经获得了不同冷却剂通道尺寸的热交换能力。大型有源冷却金属板,尺寸为100×750毫米,冷却剂通道尺寸的更好的加热交换性能,并在大型电弧加热TFD设施中进行了测试。测试结果表明,在BIGSCALE活性冷却金属板中不对称地分配的冷却燃料,局部过热消融易于发生,冷却燃料速率在喷射热障涂层(TBC)后可以减少8%〜10%加热表面。

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