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Experimental investigation of transpiration cooling for sintered woven wire mesh structures

机译:烧结金属丝网结构的蒸腾冷却实验研究

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摘要

Experiments were conducted to investigate the transpiration cooling performance of the sintered woven wire mesh structures with different porosities at various blowing ratios in this paper. All the test pieces made of stainless steel wires with the same average wire (d = 0.14 mm) were sintered after woven. In the experiments, the air applied by compressors was used to investigate the transpiration cooling performance of the structures as main flow and coolant The effects of main flow conditions and porosities of test pieces on the cooling efficiency were investigated. The cooling efficiency of the structure were calculated based on the definition of η = (T_(wa)-T_w)/(T_(wa)-T_c). The surface temperature of test pieces was measured using an infrared camera. The results showed that the main flow conditions have a little influence on the transpiration cooling performance within the range of experimental parameters. At the same time, the averaged surface temperature decreases along the main flow direction and decreases as the increase of the blowing ratio which means that the cooling efficiency increases as the blowing ratio increases. It can be considered that the transpiration cooling efficiency for test piece 55% is higher than the film cooling efficiency and the transpiration cooling efficiencies for test piece 47% and 37% may be higher than the film cooling efficiency at large blowing ratios within the range of experimental parameters in this paper. The experimental results also indicated that the conclusion obtained using porous medium in the pioneer work cannot be used directly to predict the properties of the sintered woven wire mesh structures.
机译:本文通过实验研究了不同孔隙率下不同孔隙度的烧结金属丝网结构的蒸腾冷却性能。编织后,将由平均金属丝相同(d = 0.14 mm)的不锈钢丝制成的所有试验片烧结。在实验中,利用压缩机施加的空气来研究结构作为主流和冷却剂的蒸腾冷却性能。研究了主流条件和试件孔隙率对冷却效率的影响。根据η=(T_(wa)-T_w)/(T_(wa)-T_c)的定义计算结构的冷却效率。使用红外照相机测量试件的表面温度。结果表明,在实验参数范围内,主要流动条件对蒸腾冷却性能的影响较小。同时,平均表面温度沿着主流方向降低,并且随着吹风比的增加而降低,这意味着随着吹风比的增加,冷却效率也增加。可以认为,在50℃以上的吹塑比下,试片的蒸腾冷却效率高于薄膜冷却效率,并且试片的蒸腾冷却效率高于薄膜冷却效率的47%和37%。本文的实验参数。实验结果还表明,在先驱工作中使用多孔介质得出的结论不能直接用于预测烧结机织丝网结构的性能。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2015年第12期|898-907|共10页
  • 作者单位

    National Key Laboratory of Science and Technology on Aero Engines Aero-thermodynamics, The Collaborative Innovation Center for Advanced Aero-Engine of China, Beihang University, Beijing 100191, China;

    National Key Laboratory of Science and Technology on Aero Engines Aero-thermodynamics, The Collaborative Innovation Center for Advanced Aero-Engine of China, Beihang University, Beijing 100191, China;

    National Key Laboratory of Science and Technology on Aero Engines Aero-thermodynamics, The Collaborative Innovation Center for Advanced Aero-Engine of China, Beihang University, Beijing 100191, China;

    National Key Laboratory of Science and Technology on Aero Engines Aero-thermodynamics, The Collaborative Innovation Center for Advanced Aero-Engine of China, Beihang University, Beijing 100191, China;

    National Key Laboratory of Science and Technology on Aero Engines Aero-thermodynamics, The Collaborative Innovation Center for Advanced Aero-Engine of China, Beihang University, Beijing 100191, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Transpiration cooling; Sintered metal wire mesh; Cooling efficiency; Porosity; Experiment;

    机译:蒸腾冷却;烧结金属丝网;散热效率孔隙率实验;

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