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Investigation On Heat Transfer Properties Of Water Based TiO2-ZnO Nanofluids

机译:水基TiO2-ZnO纳米流体传热性能研究

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Nanofluids in heat transfer applications exhibit effective performance over conventional heat transfer fluids. High thermal loads due to miniaturization in a wide variety of applications offers technological challenges in designing efficient thermal management systems. Traditional heat transfer fluids such as air, water, engine oil, and ethylene glycol (EG) have very low thermal conductivities of 0.03, 0.613, 0.145 and 0.253 W/ mK respectively. The poor thermal conductivity of these fluids is an obstacle in improving heat transfer and compactness of the heat exchangers. Determination of properties of nanofluids and its performance in water based base fluids has been studied by many researchers. However the heat transfer performance of mixed nanofluids ie., hybrid nanofluids is yet to be e xplored. TiO2 and ZnO nanofluids were prepared at 0.5%, 1.5% and 2.0% volume concentration. Thermal conductivity estimated for temperature range of 30-70uC. Significant enhancement of both heat transfer rate and effectiveness of heat exchanger was noticed with TiO2 nanofluids at 2.0% volume concentration and with 1.5% volume concentration of TiO2-ZnO hybrid nanofluids.
机译:传热应用中的纳米流体表现出对常规传热流体的有效性。由于各种应用中的小型化引起的高热载荷提供了设计高效的热管理系统的技术挑战。传统的传热流体如空气,水,发动机油和乙二醇(例如)具有0.03,0.613,0.145和0.253W / mk的非常低的热导体。这些流体的差的导热性差是提高热交换器的热传递和紧凑性的障碍。许多研究人员研究了纳米流体性能及其在水基液体中的性能。然而,混合纳米流体的传热性能即,杂交纳米流体尚未成为E Xporored。制备0.5%,1.5%和2.0%体积浓度的TiO 2和ZnO纳米流体。导热率估计为30-70uc的温度范围。用TiO2纳米流体以2.0%体积浓度为2.0%纳米流体,并含有1.5%的TiO 2-ZnO杂交纳米流体的纳米流体,对热转移率和热交换器的有效性显着提高。

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