Title of article :
An Experimental Investigation of Parabolic Trough Collector using Industrial-grade Multiwall Carbon Nanotube- H2O Based Nanofluid
Author/Authors :
Gautam, P.M Mechanical Engineering Department - Government Engineering College - Dahod, India , Chudasama, M.K Mechanical Engineering Department - Government Engineering College - Dahod, India
Pages :
9
From page :
112
To page :
120
Abstract :
Solar thermal systems for heating have a high level of reliability. The usage of parabolic trough collectors (PTC) for domestic applications is still quite limited; furthermore, commercial utilization of nanofluids in these applications is rare. The influence of MWCNT nanofluid as a heat transfer fluid on the efficiency of a locally developed parabolic trough collector was examined experimentally. The effect of surfactant on nanofluid stability was also investigated, and it was revealed that nanoparticles could be evenly suspended in base fluid for at least 10 days and less than one month using Triton X-100. Experiments were also conducted to determine the optimal quantity of Triton X-100 surfactant; it is possible to make nanoparticles stable for 28 days in base fluid with the ratio of Triton X-100 to MWCNT as 0.5:1. At 2.0, 3.0, and 4.0 L/min flow rates, MWCNT/H2O is used at three-particle concentrations of 0.1 %, 0.2 %, and 0.3 % by weight. The experiment is carried out under outdoor operating conditions. With 3 L/min at 0.2 wt. %, MWCNT nanofluid achieves a maximum thermal efficiency that is 22 % greater than the water. The findings provide important information about the commercialization of a locally developed PTC.
Farsi abstract :
ﺳﯿﺴﺘﻢ ﻫﺎي ﺣﺮارﺗﯽ ﺧﻮرﺷﯿﺪي ﺑﺮاي ﮔﺮﻣﺎﯾﺶ داراي ﻗﺎﺑﻠﯿﺖ اﻃﻤﯿﻨﺎن ﺑﺎﻻﯾﯽ ﻫﺴﺘﻨﺪ. اﺳﺘﻔﺎده از ﮐﻮﻟﮑﺘﻮرﻫﺎي ﺳﻬﻤﯽ )PTC( ﺑﺮاي ﮐﺎرﺑﺮدﻫﺎي داﺧﻠﯽ ﻫﻨﻮز ﮐﺎﻣﻼً ﻣﺤﺪود اﺳﺖ. ﻋﻼوه ﺑﺮ اﯾﻦ ، اﺳﺘﻔﺎده ﺗﺠﺎري از ﻧﺎﻧﻮﺳﯿﺎﻻت در اﯾﻦ ﺑﺮﻧﺎﻣﻪ ﻫﺎ ﻧﺎدر اﺳﺖ. ﺗﺎﺛﯿﺮ ﻧﺎﻧﻮﺳﯿﺎل MWCNT ﺑﻪ ﻋﻨﻮان ﯾﮏ ﺳﯿﺎل اﻧﺘﻘﺎل ﺣﺮارت ﺑﺮ ﺑﺎزده ﯾﮏ ﮐﻮﻟﮑﺘﻮر ﺳﻬﻤﻮي ﻣﺤﻠﯽ ﺗﻮﺳﻌﻪ ﯾﺎﻓﺘﻪ ﺑﻪ ﺻﻮرت ﺗﺠﺮﺑﯽ ﻣﻮرد ﺑﺮرﺳﯽ ﻗﺮار ﮔﺮﻓﺖ. ﺗﺄﺛﯿﺮ ﺳﻮرﻓﺎﮐﺘﺎﻧﺖ ﺑﺮ ﭘﺎﯾﺪاري ﻧﺎﻧﻮﺳﯿﺎﻻت ﻧﯿﺰ ﻣﻮرد ﺑﺮرﺳﯽ ﻗﺮار ﮔﺮﻓﺖ و ﻣﺸﺨﺺ ﺷﺪ ﮐﻪ ﻧﺎﻧﻮذرات را ﻣﯽ ﺗﻮان ﺑﺎ اﺳﺘﻔﺎده از ﺗﺮﯾﺘﻮن 100-X ﺑﻪ ﻣﺪت 10 روز و ﮐﻤﺘﺮ از ﯾﮏ ﻣﺎه ﺑﻪ ﻃﻮر ﻫﻤﮕﻦ در ﻣﺎﯾﻊ ﭘﺎﯾﻪ ﻣﻌﻠﻖ ﮐﺮد. آزﻣﺎﯾﺸﺎﺗﯽ ﻧﯿﺰ ﺑﺮاي ﺗﻌﯿﯿﻦ ﻣﻘﺪار ﺑﻬﯿﻨﻪ ﺳﻮرﻓﮑﺘﺎﻧﺖ ﺗﺮﯾﺘﻮن 100-X اﻧﺠﺎم ﺷﺪ. ﻣﯽ ﺗﻮان ﻧﺎﻧﻮذرات را ﺑﻪ ﻣﺪت 28 روز در ﺳﯿﺎل ﭘﺎﯾﻪ ﺑﺎ ﻧﺴﺒﺖ 100-Triton X ﺑﻪ 0.5: 1 MWCNT ﭘﺎﯾﺪار ﮐﺮد. در ﺳﺮﻋﺖ ﺟﺮﯾﺎن 2.0 ، 3.0 و 4.0 ﻟﯿﺘﺮ در دﻗﯿﻘﻪ ، MWCNT/H2O در ﺳﻪ ﻏﻠﻈﺖ ﻫﺎي ذره اي 0.1 درﺻﺪ ، 0.2 درﺻﺪ و 0.3 درﺻﺪ وزﻧﯽ اﺳﺘﻔﺎده ﻣﯽ ﺷﻮد. اﯾﻦ آزﻣﺎﯾﺶ در ﺷﺮاﯾﻂ ﻋﻤﻠﯿﺎﺗﯽ در ﻓﻀﺎي ﺑﺎز اﻧﺠﺎم ﻣﯽ ﺷﻮد. ﺑﺎ 3 ﻟﯿﺘﺮ در دﻗﯿﻘﻪ در 0.2 وزﻧﯽ. ٪ ، ﻧﺎﻧﻮﺳﯿﺎل MWCNTﺣﺪاﮐﺜﺮ ﺑﺎزده ﺣﺮارﺗﯽ را ﺑﺪﺳﺖ ﻣﯽ آورد ﮐﻪ 22درﺻﺪ ﺑﯿﺸﺘﺮ از آب اﺳﺖ. ﯾﺎﻓﺘﻪ ﻫﺎ اﻃﻼﻋﺎت ﻣﻬﻤﯽ در ﻣﻮرد ﺗﺠﺎري ﺳﺎزي PTCﺗﻮﺳﻌﻪ ﯾﺎﻓﺘﻪ ﻣﺤﻠﯽ اراﺋﻪ ﻣﯽ دﻫﺪ.
Keywords :
Thermal Performance , Solar energy , Parabolic trough collector , Surfactant , Nanofluids
Journal title :
International Journal of Engineering
Serial Year :
2022
Record number :
2698712
Link To Document :
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