Experimental study of effects of different heat sources on the performance of the hybrid multiple-effect diffusion solar still
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作者:
Yeo, Se-Dong
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Korea Inst Machinery & Mat, Dept Plant Safety Technol, Daejeon 34103, South KoreaKorea Inst Machinery & Mat, Dept Plant Safety Technol, Daejeon 34103, South Korea
Yeo, Se-Dong
[1
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Lim, Byung-Ju
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Korea Inst Machinery & Mat, Dept Plant Safety Technol, Daejeon 34103, South KoreaKorea Inst Machinery & Mat, Dept Plant Safety Technol, Daejeon 34103, South Korea
Lim, Byung-Ju
[1
]
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Lee, Ga-Ram
[1
,2
]
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Park, Chang-Dae
[1
,2
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机构:
[1] Korea Inst Machinery & Mat, Dept Plant Safety Technol, Daejeon 34103, South Korea
[2] Univ Sci & Technol, Dept Plant Syst & Machinery, Daejeon 34113, South Korea
This study proposes a hybrid multiple-effect diffusion solar still (HMED) operating with various heat sources, such as solar thermal energy, electric heater and waste heat. The performance characteristics of the HMED may differ with the type of evaporation heat source used even with the same amount of thermal energy supplied (Q(in)). The effects of the different type of heat sources on the production of distillate and thermal efficiency (performance ratio, PR) of the HMED are experimentally analysed in the Republic of Korea (latitude 36.40 degrees N and longitude 127.36 degrees E). The experimental results show that the HMED can be operated with not only solar energy but also with waste heat or combination of them. The PR of the HMED is the lowest for solar heat (0.18 - 0.71) and the highest for waste heat (2.32), even though Q(in) from waste heat is lower (6 - 9 MJ) than global solar radiation (11 - 23 MJ/m(2)). The effect of the thermal insulation of both glass sidewalls on the productivity is larger for solar energy (16.7% enhancement) than for waste heat (5.3% enhancement). A lower initial depth of the seawater in the basin increases the productivity, but an optimum depth exists. The optimum feed flow rate of seawater to the multiple-effect diffusion section (MED) increases with Q(in), but its optimum ratio to the amount of evaporation in each effect-plate of the MED may be within a range of 4.6 - 2.8, regardless of Q(in).
机构:
Aligarh Muslim Univ, ZH Coll Engn & Technol, Mech Engn Dept, Heat Transfer & Solar Energy Lab, Aligarh 202002, Uttar Pradesh, IndiaAligarh Muslim Univ, ZH Coll Engn & Technol, Mech Engn Dept, Heat Transfer & Solar Energy Lab, Aligarh 202002, Uttar Pradesh, India
Jamil, Basharat
Akhtar, Naiem
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Aligarh Muslim Univ, ZH Coll Engn & Technol, Mech Engn Dept, Heat Transfer & Solar Energy Lab, Aligarh 202002, Uttar Pradesh, IndiaAligarh Muslim Univ, ZH Coll Engn & Technol, Mech Engn Dept, Heat Transfer & Solar Energy Lab, Aligarh 202002, Uttar Pradesh, India
机构:
Larbi Ben Mhidi Univ, Sustainable Dev & Environm Protect Lab, Oum El Bouaghi, AlgeriaLarbi Ben Mhidi Univ, Sustainable Dev & Environm Protect Lab, Oum El Bouaghi, Algeria
Rahmani, Ahmed
Saadi, Zine
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Renewable Energy Dev Ctr CDER, Renewable Energy Res Unit Saharan Area URERMS, Adrar, AlgeriaLarbi Ben Mhidi Univ, Sustainable Dev & Environm Protect Lab, Oum El Bouaghi, Algeria
Saadi, Zine
Keblouti, Ouahid
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Univ Sci & Technol Houari Boumediene USTHB, Lab Mat & Chem Proc Sci LSMPC, Algiers, AlgeriaLarbi Ben Mhidi Univ, Sustainable Dev & Environm Protect Lab, Oum El Bouaghi, Algeria
机构:
Natl Engn Sch Gabes, Res Unit Environm Catalysis & Proc Anal, Omar Ibn El Khattab Ave, Gabes 6029, TunisiaNatl Engn Sch Gabes, Res Unit Environm Catalysis & Proc Anal, Omar Ibn El Khattab Ave, Gabes 6029, Tunisia
Khaoula, Hidouri
Ali, Benhmidene
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Natl Engn Sch Gabes, Res Unit Environm Catalysis & Proc Anal, Omar Ibn El Khattab Ave, Gabes 6029, TunisiaNatl Engn Sch Gabes, Res Unit Environm Catalysis & Proc Anal, Omar Ibn El Khattab Ave, Gabes 6029, Tunisia
Ali, Benhmidene
Bechir, Chouachi
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Natl Engn Sch Gabes, Res Unit Environm Catalysis & Proc Anal, Omar Ibn El Khattab Ave, Gabes 6029, TunisiaNatl Engn Sch Gabes, Res Unit Environm Catalysis & Proc Anal, Omar Ibn El Khattab Ave, Gabes 6029, Tunisia
Bechir, Chouachi
2017 INTERNATIONAL CONFERENCE ON GREEN ENERGY & CONVERSION SYSTEMS (GECS),
2017,