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An experimental investigation of heat transfer characteristics of water based Al2O3 nanofluid operated shell and tube heat exchanger with air bubble injection technique

机译:气泡注入技术的水基Al2O3纳米流体管壳式换热器传热特性的实验研究

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The thermal performance of shell and tube heat exchangers has been enhanced with the use of different techniques. Air bubble injection is one such promising and inexpensive technique that enhances the heat transfer characteristics inside shell and tube heat exchanger by creating turbulence in the flowing fluid. In this paper, experimental study on heat transfer characteristics of shell and tube heat exchanger was done with the injection of air bubbles at the tube inlet and throughout the tube with water based Al 2 O 3 nanofluids i.e. (0.1%v/v and 0.2%v/v). The outcomes obtained for both the concentrations at two distinct injection points were compared with the case when air bubbles were not injected. The outcomes revealed that the heat transfer characteristics enhanced with nanoparticles volumetric concentration and the air bubble injection. The case where air bubbles were injected throughout the tube gave maximum enhancement followed by the cases of injection of air bubbles at the tube inlet and no air bubble injection. Besides this, water based Al 2 O 3 nanofluid with 0.2%v/v of Al 2 O 3 nanoparticles gave more enhancement than Al 2 O 3 nanofluid with 0.1%v/v of Al 2 O 3 nanoparticles as the enhancement in the heat transfer characteristics is directly proportional to the volumetric concentration of nanoparticles in the base fluid. The heat transfer rate showed an enhancement of about 25-40% and dimensionless exergy loss showed an enhancement of about 33-43% when air bubbles were injected throughout the tube. Moreover, increment in the heat transfer characteristics was also found due to increase in the temperature of the hot fluid keeping the flow rate of both the heat transfer fluids constant.
机译:管壳式换热器的热性能通过使用不同的技术得到了增强。气泡注入是一种有前途且廉价的技术,其通过在流动的流体中产生湍流来增强壳管式热交换器内部的传热特性。在本文中,通过在管入口处和整个管内注入水基Al 2 O 3纳米流体,即(0.1%v / v和0.2% v / v)。将在两个不同注入点的两种浓度下获得的结果与未注入气泡的情况进行了比较。结果表明,传热特性随纳米颗粒体积浓度和气泡注入而增强。整个管中注入气泡的情况得到最大的增强,其次是在管入口处注入气泡并且没有气泡注入的情况。除此之外,具有0.2%v / v Al 2 O 3纳米颗粒的水基Al 2 O 3纳米流体比具有0.1%v / v Al 2 O 3纳米颗粒的Al 2 O 3纳米流体具有更多的增强作用。特性与基础液中纳米颗粒的体积浓度成正比。当将气泡注入整个管中时,传热率显示出约25-40%的增强,无因次的热能损失显示出约33-43%的增强。此外,还发现由于热流体的温度升高而使两种传热流体的流量保持恒定,所以传热特性增加。

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