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Numerical assessment into the hydrothermal and entropy generation characteristics of biological water-silver nano-fluid in a wavy walled microchannel heat sink

机译:波纹壁微通道散热器中生物水银纳米流体的水热和熵产特性的数值评估

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The objective of this numerical assessment is to examine the hydrothermal and irreversibility behaviour of a biologically synthesized water-silver nano-fluid in a wavy microchannel heat sink (MCHS). The green tea leaf extract is utilized to prepare silver nanoadditives. The impacts of nanoadditives volume fraction, Reynolds number, amplitude and wavelength of the channel on the convective heat transfer coefficient, CPU surface temperature, pumping power, as well as the thermal, frictional, and total irreversibilities are investigated. The results show that enhancing the Reynolds number and nanoadditives fraction intensifies the performance of heat sink by boosting the convective heat transfer coefficient of the working fluid which favorably reduces the CPU surface temperature and the rate of thermal and total irreversibilities and importantly leads to the temperature uniformity of the CPU surface. However, increase in Reynolds number adversely affects both the pumping power and the frictional irreversibility in the system. In addition, it is found that the nano-fluid always has a better cooling performance in comparison with the pure water. Moreover, it is reported that augmenting the wavelength results in an increase in the hydrothermal performance of nano-fluid and decrease in the global total entropy generation rate.
机译:此数值评估的目的是检查波浪状微通道散热器(MCHS)中生物合成的水银纳米流体的水热和不可逆行为。绿茶叶提取物用于制备银纳米添加剂。研究了纳米添加剂的体积分数,雷诺数,通道的振幅和波长对对流换热系数,CPU表面温度,泵浦功率以及热,摩擦和总不可逆性的影响。结果表明,通过提高工作流体的对流传热系数,提高雷诺数和纳米添加剂的比例可增强散热器的性能,从而有利地降低了CPU表面温度以及热量和总不可逆性的比率,并重要地导致了温度均匀性的CPU表面。然而,雷诺数的增加不利地影响系统中的泵送功率和摩擦不可逆性。另外,发现与纯水相比,纳米流体总是具有更好的冷却性能。此外,据报道,增加波长导致纳米流体的水热性能增加并且整体总熵产生速率降低。

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