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Performance improvement of the heat recovery unit with sequential type heat pipes using TiO2 nanofluid

机译:使用TiO2纳米流体的顺序式热管热回收装置的性能改进

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摘要

This paper deals with the improvement of thermal performance of the heat recovery system in air-to-air unit by using a nanofluid of TiO particles and distilled water. The 2 experimental set-up equipped with 15 copper pipes of a 1000 mm length, 10.5 mm inner diameter, and 12 mm outer diameter was used. The evaporator section consists of 450 mm of heat pipes, the condenser section is 400 mm, and the adiabatic section is 150 mm. In experimental studies, 33% of the evaporator volumes of heat pipes were filled with working fluids. Experiments were carried out at temperatures between 25oC and 90oC by using five different cooling air-flows (40, 42, 45, 61, and 84 g/s), and two different heating powers (3 kW and 6 kW) for the evaporation section, to determine heat removed from the condensation section. Trials were performed for distilled water and nanofluid respectively, and the results were compared with each other. Results revealed that a 50% recovery in the thermal performance of the heat pipe heat recovery system was achieved in the design using TiO nanofluid as the working liquid, at a heating power of 3 kW, air 2 velocity of 2.03 m/s and air-flow of 84 g/s.
机译:本文通过使用纳米颗粒的TiO2颗粒和蒸馏水来改善空对空单元中热回收系统的热性能。使用2个实验装置,这些装置配备了15条长度为1000 mm,内径为10.5 mm,外径为12 mm的铜管。蒸发器部分由450毫米的热管组成,冷凝器部分为400毫米,绝热部分为150毫米。在实验研究中,热管蒸发器容积的33%充满了工作流体。通过使用五种不同的冷却气流(40、42、45、61和84 g / s)和两种不同的蒸发功率(3 kW和6 kW)在25oC至90oC的温度下进行实验,以确定从冷凝段带走的热量。分别对蒸馏水和纳米流体进行了试验,并将结果进行了比较。结果表明,使用TiO纳米流体作为工作液,在3 kW的加热功率,2.0的空气速度为2.03 m / s的空气中,热导管热回收系统的热性能可达到50%的回收率。流量为84 g / s。

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