首页> 外文会议>ASME International Conference on Micro/Nanoscale Heat and Mass Transfer >HEAT TRANSFER CHARACTERISTICS OF CUO-WATER NANOFLUIDS JET IMPINGEMENT ON A HOT SURFACE
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HEAT TRANSFER CHARACTERISTICS OF CUO-WATER NANOFLUIDS JET IMPINGEMENT ON A HOT SURFACE

机译:Cuo水纳米流体喷射冲击热表面的传热特性

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In present study, an experimental investigation has been carried out to analyze the heat transfer characteristics of CuO- water nanofluids jets on a hot surface. A rectangular stainless steel foil (AISI-304, 0.15 mm thick) is used as a test surface is electrically heated to obtain the required initial temperature. The distribution of heat flux on the target surface is evaluated from the recorded thermal images during transient cooling. The effect of nanoparticle concentration and Reynolds number of the nanofluids jet impingement heat transfer characteristics is studied. Tests were performed for an initial surface temperature of 500°C, Reynolds number (5000≤Re≤13000), CuO-water nanofluids concentration (Φ= 0.15%, 0.6%) and nozzle to plate distance was l/d= 4.
机译:在本研究中,已经进行了实验研究,以分析了Cuo-水纳米流体喷射在热表面上的传热特性。用作测试表面的矩形不锈钢箔(AISI-304,0.15mm厚)电加热以获得所需的初始温度。在瞬态冷却期间,从记录的热图像评估目标表面上的热通量分布。研究了纳米粒子浓度和雷诺数的纳米流体射流撞击传热特性的影响。对初始表面温度进行500℃,雷诺数(5000≤R≤13000)进行试验,CuO-水纳米流体浓度(φ= 0.15%,0.6%)和喷嘴到板距离为L / D = 4。

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