Analysis of exergetic performance for a solar air heater with metal foam fins

被引:12
作者
Farhan, Ammar A. [1 ]
Obaid, Zain Alabdeen H. [2 ]
Hussien, Sally Q. [1 ]
机构
[1] Univ Baghdad, Energy Engn Dept, Baghdad 10071, Iraq
[2] Univ Anbar, Renewable Energy Res Ctr, Anbar, Iraq
关键词
exergetic analysis; exergetic efficiency; metal foam fin; solar air heater; COLLECTOR SYSTEMS; ABSORBER PLATE; RIB ROUGHNESS; ENERGY; OPTIMIZATION; EFFICIENCY;
D O I
10.1002/htj.21769
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this experimental study, an exergetic analysis is presented for solar air heaters (SAHs) that have absorber plates equipped with different fin arrangements. The following two types of fins were used: solid fins (conventional) and metal foam fins. Longitudinal, staggered, and corrugated fin arrangements in SAHs were investigated under the weather conditions experienced in Baghdad, Iraq in February to April 2018. The exergy efficiency and exergy loss of the SAHs were evaluated for five air mass flow rates ranging from 0.011 to 0.059kg/s. Based on the exergy analysis, SAHs with metal foam fins are more efficient than those with solid fins. In addition, corrugated metal foam fins introduce more turbulent flow than the other fin configurations. It was found that the exergy loss and the exergy efficiency were directly proportional to the values of solar irradiance and air mass flow rates. At solar noon, the maximum values for exergy change were 127 and 89W/m(2) for air mass flow rates of 0.011 and 0.059kg/s, respectively.
引用
收藏
页码:3190 / 3204
页数:15
相关论文
共 50 条
[31]   Double pass solar air heater with aerofoil and bio-inspired fins: A numerical analysis of thermohydraulic performance [J].
Vyas, Sagar ;
Sharma, Amit Kumar ;
Rai, Anant Kumar .
ENERGY, 2024, 311
[32]   Energetic and exergetic efficiency analysis of a v-corrugated solar air heater integrated with twisted tape inserts [J].
Farhan, Ammar A. ;
Ali, Aljubury Issam M. ;
Ahmed, Hamdi E. .
RENEWABLE ENERGY, 2021, 169 :1373-1385
[33]   Analytical Investigation on Solar Air Heater with Fins and Twisted Tapes [J].
Kumar, Rajesh ;
Chand, Prabha .
INTERNATIONAL JOURNAL OF HEAT AND TECHNOLOGY, 2019, 37 (01) :33-40
[34]   Exergetic performance analysis of solar air heater with inverted L-shape ribs as roughness element [J].
Chaudhari, Manmohan ;
Sharma, Sohan lal ;
Debbarma, Ajoy .
ARCHIVES OF THERMODYNAMICS, 2023, 44 (03) :241-267
[35]   NUMERICAL ANALYSIS OF EFFECT OF IMPINGING JET ON COOLING OF SOLAR AIR HEATER WITH LONGITUDINAL FINS [J].
Pazarlioglu, Hayati Kadir ;
Ekiciler, Recep ;
Arslan, Kamil .
HEAT TRANSFER RESEARCH, 2021, 52 (11) :47-61
[36]   Augmenting the Thermal Performance of Solar Air Heater with Absorber Plate Roughened with Pin-Fins [J].
Khelkar, Ashish B. ;
Syrti, Kynjrilang ;
Das, Rajat Subhra ;
Sarkar, Bikash Kumar .
2022 7TH INTERNATIONAL CONFERENCE ON MECHANICAL ENGINEERING AND ROBOTICS RESEARCH, ICMERR, 2022, :179-185
[37]   Exergetic performance evaluation of solar air heater having arc shape oriented protrusions as roughness element [J].
Yadav, Sanjay ;
Kaushal, Maneesh ;
Varun ;
Siddhartha .
SOLAR ENERGY, 2014, 105 :181-189
[38]   Analysis of a solar air heater for augmented thermohydraulic performance using helicoidal spring shaped fins-A numerical study [J].
Arunkumar, H. S. ;
Kumar, Shiva ;
Karanth, K. Vasudeva .
RENEWABLE ENERGY, 2020, 160 :297-311
[39]   Experimental performance evaluation of an impinging jet with fins type solar air heater [J].
Abhishek Kumar Goel ;
Shailendra Narayan Singh .
Environmental Science and Pollution Research, 2021, 28 :19944-19957
[40]   Experimental Performance Analysis of Solar Air Heater With Innovative Perforated Semi-Conical Ribs [J].
Shankar, Ravi ;
Kumar, Rajeev ;
Pandey, Arun Kumar ;
Thakur, Deep Singh .
JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 2025, 147 (03)