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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigation of surface vibration effects on increasing the stability and heat transfer coeffcient of MWCNTs-water nanofluid in a flexible double pipe heat exchanger
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Experimental investigation of surface vibration effects on increasing the stability and heat transfer coeffcient of MWCNTs-water nanofluid in a flexible double pipe heat exchanger

机译:表面振动效应对柔性双管热交换器MWCNTS水纳米流体稳定性和传热系数的实验研究

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摘要

Highlights?Effect of imposing mechanical vibration on a heat exchanger with nanofluids is studied for the first time.?Imposing mechanical vibrations increase heat transfer coefficient while decrease nanoparticles deposition.?A flexible heat exchanger made of PVDF is manufactured.AbstractNanoparticles deposition is one of the most challenges for industrial use of nanofluids. In the present study, the heat transfer enhancement of Multi Wall Carbon Nano Tube, MWCNT-water nanofluid in a double pipe heat exchanger due to vibrating walls is examined for different mass fractions. This work is performed by a flexible double pipe heat exchanger made of PVDF. The forced vibration on the outer surface of the heat exchanger is imposed by electro-dynamic vibrators. Results demonstrate that imposing the vibrations increases the heat transfer coefficient remarkably, while decreases the nanoparticles deposition. Heat transfer increases by increasing the nanofluid temperature, mass flow rate, nano fluid mass fraction and vibtation
机译:<![cdata [ 亮点 第一次研究了纳米流体的热交换器上施加机械振动的影响。 强加机械振动增加传热系数,同时降低纳米粒子沉积。 < CE:PARA ID =“P0015”View =“全部”>制造PVDF制成的柔性热交换器。 抽象 纳米粒子沉积是纳米流体的工业用途挑战之一。在本研究中,针对不同的质量级分检查了多壁碳纳米管的热传递增强,在双管热交换器中的双管热交换器中的MWCNT-水纳米流体。这项工作是由PVDF制成的柔性双管热交换器进行的。热交换器外表面上的强制振动由电动振动器施加。结果表明,施加振动显着增加了传热系数,同时降低了纳米颗粒沉积。通过增加纳米流体温度,质量流速,纳米液体分数和振动来增加传热增加

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