教授
yjdai@sjtu.edu.cn
Address:上海交大机械与动力工程学院A楼406室
Office Phone:86-21-34204358
专著:
王如竹,代彦军。《太阳能制冷》化学工业出版社,2007
代彦军,葛天舒,李勇。《太阳能空调工程设计与实践》,建筑工业出版社,2017
国际期刊论文:
1.Y.J. Dai, H.F. Zhang, Experimental investigation on a solar desalination unit with humidification and dehumidification, DESALINATION, 2000, 130, 169-175.
2.Y.J. Dai, R.Z. Wang, H.F. Zhang, Parameter analysis to improve rotary desiccant dehumidification using a mathematical model. International Journal of Thermal Sciences, 2001, 40( 4), 400-408.
3.Y.J. Dai, R.Z. Wang, H.F. Zhang, Use of liquid desiccant cooling to improve the performance of vapor compression air conditioning, Applied Thermal Engineering, 2001, 21(12), 1185-1202.
4.Y.J. Dai, R.Z. Wang, Y. X. Xu, Study on a solar powered solid adsorption-desiccant cooling system used for grain storage, Renewable Energy, 2002, 25:417-430.
5.Y.J. Dai, R.Z. Wang, H.F. Zhang, Parametric analysis to improve the performance of a solar desalination unit with humidification and dehumidification, DESALINATION, 2002, 142, 107-118.
6.Y.J. Dai, K. Sumathy, Theoretical study on a cross flow direct evaporative cooler using honey-comb paper as packing materials, Applied Thermal Engineering, 2002, 22(13), 1417-1430.
7.Y.J. Dai, R.Z. Wang, L. Ni, Experimental investigation on a thermoelectric refrigerator driven by solar cells, Renewable Energy, 2003, 28(6), 949-959.
8.Y.J. Dai, H.B. Huang, R.Z. Wang, Case study of solar chimney power plants in Northwestern regions of China, Renewable Energy, 2003, 28(8), 1295-1304.
9.Y.J. Dai, R.Z. Wang, L. Ni, Experimental investigation and analysis on a thermoelectric refrigerator driven by solar cells, Solar Energy Materials and Solar cells, 2003, 77(4), 377-391.
10.Y.J. Dai, K. Sumathy, R.Z. Wang, Y.G. Li, Enhancement of natural ventilation in a solar house with a solar chimney and a solid adsorption cooling cavity, Solar Energy, 2003, 74, 65-75.
11.Y.J. Dai, K. Sumathy, Heat and mass transfer in the adsorbent of a solar adsorption cooling system with glass tube insulation, Energy, 2003, 28, 1511-1527.
12.Y.J. Dai, H.F. Zhang, Numerical simulation and theoretical analysis of heat and mass transfer in a cross flow liquid desiccant air dehumidifier packed with honey comb paper, Energy conversion and Management, 2004, 45(9-10), 1343 -1356.
13.X.J. Zhang, Y.J. Dai, R.Z. Wang, A simulation study of heat and mass transfer in a honeycombed rotary desiccant dehumidifier, Applied Thermal Engineering, 2003, 23(8), 989-1003.
14.C.H. Li, R.Z. Wang, Y.J. Dai, Simulation and economic analysis of a solar-powered adsorption refrigerator using an evacuated tube for thermal insulation, Renewable Energy, 2003, 28(2), 249-269.
15.X.Q. Zhai, Y.J. Dai, R.Z. Wang, Comparison of heating and natural ventilation in a solar house induced by two roof solar collectors, Applied thermal engineering, 2005, 25(5-6), 741-757.
16.X.Q. Zhai, Y.J. Dai, R.Z. Wang, Experimental investigation on air heating and natural ventilation of a solar air collector, Energy and Building, 2005, 37(4), 373-381.
17.X.J. Zhang, K. Sumathy, Y.J. Dai, R.Z. Wang, Parametric study on the silica gel-calcium chloride composite desiccant rotary wheel employing fractal bet adsorption isotherm, Inernational Journal of Energy Research, 2005, 29, 37-51.
18.H.L. Luo, Y.J. Dai, R.Z. Wang, et al, Year round test of a solar adsorption ice maker in Kunming, China, Energy Conversion and Management, 2005, 46(13-14), 2032-2041.
19.Y. Li, K. Sumathy, Y.J. Dai, J.H. Zhong, Experimental study on a hybrid desiccant dehumidification and air conditioning system, Transaction of ASME, Journal of solar energy engineering, 2006, 128, 77-82.
20.Q., Ma R.Z. Wang, Y.J. Dai, Performance analysis on a hybrid air-conditioning system system of a green building, Energy and Buildings, 2006, 38(5), 447-453.
21.H.L. Luo, Y.J. Dai, R.Z. Wang, Experimental investigation of a solar adsorption chiller used for grain depot cooling, Applied thermal engineering, 2006, 26(11-12), 1218-1225.
22.X.J. Zhang, K. Sumathy, Y.J. Dai, R.Z. Wang, Dynamic hygroscopic effect of the composite material used in desiccant rotary wheel, Solar Energy, 2006, 80, 1058-1061.
23.C.X. Jia, Y.J. Dai, R.Z. Wang, J.Y. Wu, Experimental comparison of two honeycombed desiccant wheels fabricated with silica gel and composite desiccant material, Energy Conversion and Management, 2006, 47(15-16), 2523-2534.
24.C.X. Jia, Y.J. Dai, R.Z. Wang, J.Y. Wu, Analysis on a hybrid desiccant air-conditioning system, Applied thermal engineering, 2006, 26, 2393-2400.
25.C.X. Jia, Y.J. Dai, R.Z. Wang, J.Y. Wu, Use of compound desiccant to develop high performance desiccant cooling system, International Journal of Refrigeration, 2007, 30, 345-353.
26.H.L. Luo, R.Z. Wang, Y.J. Dai, et al, An efficient solar adsorption chiller and its applications in low-temperature storage for grain, Solar energy, 2007, 81, 607-613.
27.Y.M. Han, R.Z. Wang, Y.J. Dai, A.H. Xiong, Studies on the light permeance characteristic of a Fresnel lens group applied in high concentration solar energy, Journal of optics A:Pure and Applied Optics, 2007, 9, 998-997.
28.X.Q. Zhai, R.Z. Wang, Y.J. Dai, J.Y. Wu, Y.X. Xu, Q. Ma, Solar integrated energy system for a green building, Energy and Buildings, 2007, 39, 985-993.
29.L. Mei, Y.J. Dai, A technical review on use of liquid-desiccant dehumidification for air-conditioning application, Renewable & Sustainable Energy Reviews, 2008, 12(3), 662-689.
30.T.S. Ge, Y. Li, R.Z. Wang, Y.J. Dai, A review of the mathematical models for predicting rotary desiccant wheel, Renewable & Sustainable Energy Reviews, 2008, 12(6), 1485-1528.
31.T.S. Ge, Y.J. Dai, R.Z. Wang, Y. Li, Experimental investigation on a one-rotor two stage desiccant cooling system, Energy, 2008, 33, 1807-1815.
32.X.Q. Zhai, R.Z. Wang, Y.J. Dai, J.Y. Wu, Q. Ma, Experience on integration of solar thermal technologies with green buildings, Renewable Energy, 2008, 33(8), 1904-1910.
33.X.Q. Zhai, R.Z. Wang, J.Y. Wu, Y.J. Dai, Q. Ma, Design and performance of a solar-powered air-conditioning system in a green building, Applied Energy, 2008, 85(5), 297-311.
34.T.S. Ge, Y. Li, R.Z. Wang, Y.J. Dai, Experimental study on a two-stage rotary desiccant cooling system, International Journal of Refrigeration, 2009, 32( 3), 498-508.
35.Z.Q. Xiong, Y.J. Dai, R.Z. Wang, Investigation on a two-stage solar liquid-desiccant (LiBr) dehumidification system assisted by CaCl2 solution, Applied Thermal Engineering, 2009, 29( 5-6), 1209-1215.
36.Y.M. Han, R.Z. Wang, Y.J. Dai, Thermal stratification within the water tank, Renewable and Sustainable Energy Reviews, 2009, 13(5): 1014-1026.
37.H. Zhai, Y.J. Dai, J.Y. Wu, R.Z. Wang, Energy and exergy analyses on a novel hybrid solar heating, cooling and power generation system for remote areas, Applied Energy, 2009, 86(9), 1395-1404.
38.T.S. Ge, Y. Li, Y.J. Dai, R.Z. Wang,Performance investigation on a novel two-stage solar driven rotary desiccant cooling system using composite desiccant materials, Solar Energy, 2010, 84(2), 157-159.
39.D. La, Y.J. Dai, Y. Li, R.Z. Wang, T.S. Ge, Technical development of rotary desiccant dehumidification and air conditioning: A review, Renewable and Sustainable Energy Reviews, 2010, 14(1), 130-147.
40.H. Zhai, Y.J. Dai, J.Y. Wu, R.Z. Wang, L.Y. Zhang , Experimental investigation and analysis on a concentrating solar collector using linear Fresnel lens, Energy Conversion and Management, 2010, 51(1), 48-55.
41.Z.Q. Xiong, Y.J. Dai, R.Z. Wang, Development of a novel two-stage liquid desiccant dehumidification system assisted by CaCl2 solution using exergy analysis method, Applied Energy, 2010, 87(5), 1495-1504.
42.T.S. Ge, Y.J. Dai, R.Z. Wang, Z.Z. Peng, Experimental comparison and analysis on silica gel and polymer coated fin-tube heat exchangers, Energy, 2010, 35, 2893-2900.
43.Z.Q. Xiong, Y.J. Dai, R.Z. Wang, Exergy Analysis of liquid desiccant dehumidification system, International Journal of Green Energy, 2010, 7(3), 241-262.
44.D. La, Y.J. Dai, Y. Li, T.S. Ge, R.Z. Wang, Study on a novel thermally driven air conditioning system with desiccant dehumidification and regenerative evaporative cooling, Building and Environment, 2010, 45(11), 2473-2484.
45.U Eicker, D. Schneider, J. Schumacher, T.S. Ge, Y.J. Dai, R.Z. Wang, Operational experiences with solar air collector driven desiccant cooling systems, Applied Energy, 2010, 87(12), 3735-3747.
46.H.L. Luo, R.Z. Wang Y.J. Dai, The effects of operation parameter on the performance of a solar-powered adsorption chiller, Applied Energy, 2010, 87(10), 3018-3022.
47.H.L. Luo, R.Z. Wang Y.J. Dai, Optimum matching of heat source temperature to a solar adsorption air-conditioning system for maximum solar cooling coefficient of performance, International Journal of Green Energy, 2010, 7(1), 91-102.
48.T.S. Ge, Y.J. Dai, R.Z. Wang,Performance study of silica gel coated fin-tube heat exchanger cooling system based on a developed mathematical model,Energy Conversion and Management, 2011, 52(6), 2329-2338.
49.W.T. Xie, Y.J. Dai, R.Z. Wang, Numerical and experimental analysis of a point focus solar collector using high concentration imaging PMMA Fresnel lens, Energy Conversion and Management, 2011, 52(6), 2417-2426.
50.D.L. Zhao, Y. Li, Y.J. Dai, R.Z. Wang, Optimal study of a solar air heating system with pebble bed energy storage, Energy Conversion and Management, 2011, 52(6), 2392-2400.
51.D. La, Y.J. Dai, Y. Li, R.Z. Wang, Case study and theoretical analysis of a solar driven two-stage rotary desiccant cooling system assisted by vapor compression air-conditioning, Solar Energy, 2011, 85(11), 2997-3009.
52.S. Deng, A. Dalibard, M. Martin, Y.J. Dai, U. Eicker, R.Z. Wang, Energy supply concepts for zero energy residential buildings in humid and dry climate, Energy Conversion and Management, 2011, 52(6), 2455-2460.
53.S. Deng, Y.J. Dai, R.Z. Wang, T. Matsuura, Y. Yasui,Comparison study on performance of a hybrid solar-assisted CO2 heat pump, Applied Thermal Engineering, 2011, 31(17-18), 3696-3705.
54.Y. Li, H.F. Li, Y.J. Dai, S.F. Gao, Lei Wei, Z.L. Li, I.G. Odinez, R.Z. Wang, Experimental investigation on a solar assisted heat pump in-store drying system, Applied Thermal Engineering, 2011, 31(10), 1718-1724.
55.W.T. Xie, Y.J. Dai, R.Z. Wang, K. Sumathy, Concentrated solar energy applications using Fresnel lenses: A review, Renewable and Sustainable Energy Reviews, 2011, 15(6), 2588-2606.
56.H. Li, Y.J. Dai, Y. Li, D. La, R.Z. Wang,Experimental investigation on a one-rotor two-stage desiccant cooling/heating system driven by solar air collectors, Applied Thermal Engineering, 2011, 31(17-18), 3677-3683.
57.T.S. Ge, Y.J. Dai, Y. Li, R.Z. Wang, Simulation investigation on solar powered desiccant coated heat exchanger cooling system, Applied Energy, 2012(93), 532-540.
58.D. La, Y.J. Dai, Y. Li, T.S. Ge, R.Z. Wang, Use of regenerative evaporative cooling to improve the performance of a novel one-rotor two-stage solar desiccant dehumidification unit, Applied Thermal Engineering, 2012 (42),11-17.
59.H. Li, Y.J. Dai, Y. Li, D. La, R.Z. Wang, Case study of a two-stage rotary desiccant cooling/heating system driven by evacuated glass tube solar air collectors, Energy and Buildings, 2012( 47), 107-112.
60.D. La, Y. Li, Y.J. Dai, T.S. Ge, R.Z. Wang, Development of a novel rotary desiccant cooling cycle with isothermal dehumidification and regenerative evaporative cooling using thermodynamic analysis method, Energy, 2012(44), 778-791
61.S. Deng, Y.J. Dai, R.Z. Wang, Performance study on hybrid solar-assisted CO2 heat pump system based on the energy balance of net zero energy apartment, Energy and Buildings, 2012( 54), 337-349
62.W.T. Xie, Y.J. Dai, R.Z. Wang,Theoretical and experimental analysis on efficiency factors and heat removal factors of Fresnel lens solar collector using different cavity receivers , Solar Energy,2012(86), 2458-2471
63.Ursula Eicker, Uwe Schürger, Max Köhler, Tianshu Ge, Yanjun Dai, Hui Li, Ruzhu Wang, Experimental investigations on desiccant wheels, Applied Thermal Engineering, 2012(42), 71-80
64.D. La, Y.J. Dai, Y. Li, Z.Y. Tang, T.S. Ge, R.Z. Wang, An experimental investigation on the integration of two-stage dehumidification and regenerative evaporative cooling, Applied Energy, 2013(102), 1218-1228,
65.M. Lin, K. Sumathy, Y.J. Dai, R.Z. Wang, Y. Chen, Experimental and theoretical analysis on a linear Fresnel reflector solar collector prototype with V-shaped cavity receiver, Applied Thermal Engineering, 2013(51), 963-972
66.Y. Zhao, T.S. Ge, Y.J. Dai, R.Z. Wang,Experimental investigation on a desiccant dehumidification unit using fin-tube heat exchanger with silica gel coating,Applied Thermal Engineering, 63,(1), 2014: 52-58
67.S. Deng, Y.J. Dai, R.Z. Wang, Performance optimization and analysis of solar combi-system with carbon dioxide heat pump, Solar Energy, 98, Part C, 2013: 212-225
68.X. Li, Y.J. Dai, Y. Li, R.Z. Wang, Performance investigation on a novel single-pass evacuated tube with a symmetrical compound parabolic concentrator, Solar Energy, 98, Part C, 2013, 275-289
69.X. Li, Y.J. Dai, Y. Li, R.Z. Wang, Comparative study on two novel intermediate temperature CPC solar collectors with the U-shape evacuated tubular absorber,Solar Energy, 93, 2013, 220-234
70.M. Lin, K. Sumathy, Y.J. Dai, R.Z. Wang, Y. Chen, Experimental and theoretical analysis on a linear Fresnel reflector solar collector prototype with V-shaped cavity receiver, Applied Thermal Engineering, 51, (1–2), 2013, 963-972
71.D. La, Y.J. Dai, Y. Li, Z.Y. Tang, T.S. Ge, R.Z. Wang, An experimental investigation on the integration of two-stage dehumidification and regenerative evaporative cooling, Applied Energy, 102, 2013, 1218-1228
72.W.T. Xie, Y.J. Dai, R.Z. Wang, Thermal performance analysis of a line-focus Fresnel lens solar collector using different cavity receivers, Solar Energy, 91, 2013, 242-255
73.T.S. Ge, Y.J. Dai, R.Z. Wang, Y. Li, Feasible study of a self-cooled solid desiccant cooling system based on desiccant coated heat exchanger, Applied Thermal Engineering, 58( 1–2), 2013, 281-290