Al2O3/水纳米流体和TiO2/水纳米流体强化管壳式换热器的换热性能

Md. Rahmat Ullah, Tanvir Muhammad Ishtiaq, M. Mamun
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引用次数: 9

摘要

纳米流体是一种具有增强热物理特性的潜在传热流体,近年来在不同的传热装置中进行了实验,以获得更好的传热性能。对湍流条件下γ-Al2O3/水和TiO2/水纳米流体在管壳式换热器中的换热特性进行了数值研究。研究了悬浮纳米颗粒的雷诺数、体积浓度和颗粒类型对热特性的影响。结果表明,在基液中加入纳米颗粒可以显著增强传热特性。γ-Al2O3/water的对流换热系数最大提高了41.8%,TiO2/water的对流换热系数最大提高了37%。纳米颗粒的引入比基液具有更高的粘度,这最终会增加压降,但目前还没有发现压降相当高。纳米流体是一种具有增强热物理特性的潜在传热流体,近年来在不同的传热装置中进行了实验,以获得更好的传热性能。对湍流条件下γ-Al2O3/水和TiO2/水纳米流体在管壳式换热器中的换热特性进行了数值研究。研究了悬浮纳米颗粒的雷诺数、体积浓度和颗粒类型对热特性的影响。结果表明,在基液中加入纳米颗粒可以显著增强传热特性。γ-Al2O3/water的对流换热系数最大提高了41.8%,TiO2/water的对流换热系数最大提高了37%。纳米颗粒的引入比基液具有更高的粘度,这最终会增加压降,但目前还没有发现压降相当高。
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Heat transfer enhancement in shell and tube heat exchanger by using Al2O3/water and TiO2/water nanofluid
Nanofluids, potential heat transfer fluid with enhanced thermophysical properties are recently being experimented in different heat transfer device for better performance. Heat transfer characteristics of γ-Al2O3/water and TiO2/water nanofluids has been numerically investigated in a shell and tube heat exchanger under turbulent flow condition. The effects of Reynolds number, volume concentration of suspended nanoparticles, and particle type on the heat characteristics has been investigated. Based on the results, addition of naoparticles to the base fluid causes the significant enhancement of heat transfer characteristics. For γ-Al2O3/water maximum improvement in convective heat transfer coefficient is 41.8% while TiO2/water shows maximum 37% increment. The introduction of nanoparticle incorporates more viscosity than base fluid which eventually increases the pressure drop, but the drop has not been found to be considerably high.Nanofluids, potential heat transfer fluid with enhanced thermophysical properties are recently being experimented in different heat transfer device for better performance. Heat transfer characteristics of γ-Al2O3/water and TiO2/water nanofluids has been numerically investigated in a shell and tube heat exchanger under turbulent flow condition. The effects of Reynolds number, volume concentration of suspended nanoparticles, and particle type on the heat characteristics has been investigated. Based on the results, addition of naoparticles to the base fluid causes the significant enhancement of heat transfer characteristics. For γ-Al2O3/water maximum improvement in convective heat transfer coefficient is 41.8% while TiO2/water shows maximum 37% increment. The introduction of nanoparticle incorporates more viscosity than base fluid which eventually increases the pressure drop, but the drop has not been found to be considerably high.
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