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Heat Transfer Enhancement with Al2O3 Nanofluids and Twisted Tapes in a Pipe for Solar Thermal Applications

机译:用Al2O3纳米流体和用于太阳能热应用的管子中的绞合带的热传递增强

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Solar thermal energy is currently used for low temperature heating applications using flat plate collectors. The absorbed solar energy is transferred to the working fluid flowing in the pipe. The performance of the system is influenced by heat transfer from tube to working fluid, with minimum convective losses, which has to be considered as one of the primary design factor. In tube and channel flows, to enhance the rate of heat transfer to the working fluid, passive augmentation techniques such as twisted tapes and swirl generators are used in the fluid flow path. In this paper, convective heat transfer analysis for a horizontal circular pipe with fluid in mixed laminar flow range is performed using experimental simulation under constant heat flux boundary condition. The variation of heat transfer coefficient and pressure drop in the pipe flow for water and water based Al2O3 nanofluids at different volume concentrations and twisted tapes are studied. The dependence of particle concentration and Reynolds number for enhancement in heat transfer and increase in the pumping power due to pressure drop is analysed in the range of parameters considered.
机译:目前使用平板收集器目前用于低温加热应用的太阳能热能。吸收的太阳能被转移到流入管中的工作流体。该系统的性能受到从管到工作流体的热传递的影响,具有最小的对流损耗,这必须被认为是主要设计因素之一。在管和通道流动中,为了提高加热转移到工作流体的速率,在流体流动路径中使用被动增强技术,例如扭曲胶带和旋流发生器。本文在恒温磁通边界条件下使用实验模拟进行了混合层流程中流体的水平圆形管的对流传热分析。研究了用于不同体积浓度和扭胶带的水和水基Al 2 O 3纳米流体中的热传递系数和压力下降的变化。在考虑的参数范围内分析了粒子浓度和雷诺数来增强的粒子浓度和雷诺数的依赖性和泵浦功率增加。

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