Experimental investigation on the stability and thermophysical properties of Al2O3/DW and CuO/DW nanofluids to be utilized in an indirect water bath heater

被引:0
作者
Seyyed Reza Razavi
Mehran Sadeghalvaad
Samad Sabbaghi
机构
[1] Shiraz University,Nano Chemical Engineering Department, Faculty of Advanced Technologies
[2] Fars Science and Technology Park,Gas and Petroleum Department, Radin Faradid Petrosanat Co.
来源
Journal of Thermal Analysis and Calorimetry | 2020年 / 142卷
关键词
Nanofluid; Indirect water bath heater; Thermal conductivity; Al; O; CuO;
D O I
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中图分类号
学科分类号
摘要
In this paper, 0.5–5 mass/% of Al2O3 and CuO nano-additives were dispersed in the base water by the two stage method (with a magnetic stirrer and ultra-sonication bath) to prepare different nanofluids with enhanced thermophysical properties. These nanofluids are considered to be utilized, as the bath fluid in the shell side of an indirect water bath heater to improve the thermal performance and reduce the power consumption of the heater. The effects of ultra-sonication time, surfactants, and nanoparticle size on the well formation of nanofluids, and their stabilities were probed. Densities, shear stresses, and apparent viscosities of the nanofluids were also measured to investigate the non-Newtonian behavior of samples. In addition, effects of the temperature, PH, nanoparticle type and concentration, and nanoparticle sizes on the thermal conductivities of nanofluids were investigated. Finally, nanofluids were utilized in a large-scale indirect water bath heater and its power consumption reduction compared to that of using water, as the bath fluid was measured and reported. 5 mass/% of CuO/water nanofluid at 80 °C was found the best nanofluids with the thermal conductivity enhancement of 43.28% and heater power consumption reduction of 17.1%.
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页码:2303 / 2318
页数:15
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共 172 条
[31]  
Khatib M(2016)Synthesis and characterization of graphene acid membrane with ultrafast and selective water transport channels Int J Heat Mass Transf 97 547-275
[32]  
Arabkoohsar A(2016)Modeling and CFD simulation of volatile organic compounds removal from wastewater by membrane gas stripping using an electro-spun nanofiber membrane Int J Heat Mass Transf 5 1222-2275
[33]  
Ismail KAR(2010)The effect of the TiO Nanoscale Res Lett 95 271-1495
[34]  
Machado L(2016)/polyacrylamide nanocomposite on water-based drilling fluid properties Appl Therm Eng 32 5909-56
[35]  
Koury RNN(2016)Advances in thermal transport properties at nanoscale in China Langmuir 30 265-535
[36]  
Borelli D(2014)Enhancing thermal conductivity of fluids with nanoparticles J Mech 34 2261-170
[37]  
Devia F(2013)Experimental investigation of water based nanofluid containing copper nanoparticles across helical microtubes Int J Thermophys 35 1490-2281
[38]  
Lo Cascio E(2011)Thermal conductivities of naked and monolayer protected metal nanoparticle based nanofluids: Manifestation of anomalous enhancement and chemical effects Exp Therm Fluid Sci 545 48-117
[39]  
Schenone C(2012)Experimental study on the thermal conductivity enhancement of water based nanofluids using different types of carbon nanotubes Thermochim Acta 33 529-505
[40]  
Xiong Y(2006)Measurement of thermal conductivity of graphene-water nanofluid at below and above ambient temperatures Int Commun Heat Mass Transf 11 151-72