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Energy and cost management of different mixing ratios and morphologies on mono and hybrid nanofluids in collector technologies

Tao, Hai (författare)
School of Computer and Information, Qiannan Normal University for Nationalities, Duyun, Guizhou, People's Republic of China; College of Information and Artificial Intelligence, Nanchang Institute of Science and Technology, Nanchang, People's Republic of China; Institute for Big Data Analytics and Artificial Intelligence (IBDAAI), Universiti Teknologi MARA, Shah Alam, Selangor, Malaysia
Aldlemy, Mohammed Suleman (författare)
Department of Mechanical Engineering, College of Mechanical Engineering Technology, Benghazi, Libya
Alawi, Omer A. (författare)
Department of Thermofluids, School of Mechanical Engineering, Universiti Teknologi Malaysia, UTM Skudai, Johor Bahru, Malaysia
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Kamar, Haslinda Mohamed (författare)
Department of Thermofluids, School of Mechanical Engineering, Universiti Teknologi Malaysia, UTM Skudai, Johor Bahru, Malaysia
Homod, Raad Z. (författare)
Department of Oil and Gas Engineering, Basrah University for Oil and Gas, Basrah, Iraq
Mohammed, Hussein A. (författare)
Department of Thermofluids, School of Mechanical Engineering, Universiti Teknologi Malaysia, UTM Skudai, Johor Bahru, Malaysia; WA School of Mines-Minerals, Energy & Chemical Engineering, Curtin University, Bentley, WA, Australia
K. A. Mohammed, Mustafa (författare)
Radiological Techniques Department, Al-Mustaqbal University College, Babylon, Iraq
Mallah, Abdul Rahman (författare)
Department of Engineering, Reykjavik University, Reykjavík, Iceland
Al-Ansari, Nadhir, 1947- (författare)
Luleå tekniska universitet,Geoteknologi
Yaseen, Zaher Mundher (författare)
Civil and Environmental Engineering Department, King Fahd University of Petroleum & Minerals, Dhahran, Saudi Arabia; Interdisciplinary Research Center for Membranes and Water Security, King Fahd University of Petroleum & Minerals, Dhahran, Saudi Arabia
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 (creator_code:org_t)
2023-01-24
2023
Engelska.
Ingår i: Engineering Applications of Computational Fluid Mechanics. - : Taylor & Francis. - 1994-2060 .- 1997-003X. ; 17:1
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • The flat-plate solar collector (FPSC) three-dimensional (3D) model was used to numerically evaluate the energy and economic estimates. A laminar flow with 500 ≤ Re ≤ 1900, an inlet temperature of 293 K, and a solar flux of 1000 W/m2 were assumed the operating conditions. Two mono nanofluids, CuO-DW and Cu-DW, were tested with different shapes (Spherical, Cylindrical, Platelets, and Blades) and different volume fractions. Additionally, hybrid nanocomposites from CuO@Cu/DW with different shapes (Spherical, Cylindrical, Platelets and Blades), different mixing ratios (60% + 40%, 50% + 50% and 40% + 60%) and different volume fractions (1 volume%, 2 volume%, 3 volume% and 4 volume%) were compared with mono nanofluids. At 1 volume% and Re = 1900, CuO-Platelets demonstrated the highest pressure drop (33.312 Pa). CuO-Platelets achieved the higher thermal enhancement with (8.761%) at 1 vol.% and Re = 1900. CuO-Platelets reduced the size of the solar collector by 25.60%. Meanwhile, CuO@Cu-Spherical (40:60) needed a larger collector size with 16.69% at 4 vol.% and Re = 1900. CuO-Platelets with 967.61, CuO – Cylindrical with 976.76, Cu Platelets with 983.84, and Cu-Cylindrical with 992.92 presented the lowest total cost. Meanwhile, the total cost of CuO – Cu – Platelets with 60:40, 50:50, and 40:60 was 994.82, 996.18, and 997.70, respectively.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Maskinteknik -- Energiteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Mechanical Engineering -- Energy Engineering (hsv//eng)

Nyckelord

solar collector
mono-nanofluids
hybrid-nanofluids
thermal performance
cost analysis
Soil Mechanics
Geoteknik

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