Development and validation of a desiccant wheel model calibrated under transient operating conditions

Applied Thermal Engineering - Tập 61 - Trang 469-480 - 2013
Muzaffar Ali1,2, Vladimir Vukovic1, Mukhtar Hussain Sahir2, Daniele Basciotti1
1Energy Department, Austrian Institute of Technology, Giefinggasse 2, 1210 Vienna, Austria
2Mechanical Engineering Department, University of Engineering and Technology, Taxila, Pakistan

Tài liệu tham khảo

ARI, 2005 Omobayode Abe, 2005 ARI, 1998 Ciepliski, 1998, Some recommendations for improvements to ASHRAE Standard 84-1991, ASHRAE Trans., 104, 1651 Simonson, 1999, Energy wheel effectiveness: part I – development of dimensionless groups, Int. J. Heat Mass Transfer, 42, 2161, 10.1016/S0017-9310(98)00325-1 Simonson, 1999, Energy wheel effectiveness: part II – correlations, Int. J. Heat Mass Transfer, 42, 2171, 10.1016/S0017-9310(98)00327-5 Abe, 2006, Effectiveness of energy wheels from transient measurements: part I—prediction of effectiveness and uncertainty, Int. J. Heat Mass Transfer, 49, 52, 10.1016/j.ijheatmasstransfer.2005.08.002 Abe, 2006, Effectiveness of energy wheels from transient measurements: part II—Results and verification, Int. J. Heat Mass Transfer, 49, 63, 10.1016/j.ijheatmasstransfer.2005.08.009 Kang, 1989, High performance solid desiccant cooling cycles, Trans. ASME, 111, 176 Charoensupaya, 1988, Parametric study of an open-cycle adiabatic, solid, desiccant cooling system, Energy, 13, 739, 10.1016/0360-5442(88)90106-5 Zheng, 1993, Numerical simulation of combined heat and mass transfer processes in a rotary dehumidifier, Numer. Heat Transfer, Part A, 23, 211, 10.1080/10407789308913669 Nia, 2006, Modeling and simulation of desiccant wheel for air conditioning, Energy Build., 38, 1230, 10.1016/j.enbuild.2006.03.020 Ge, 2008, A review of the mathematical models for predicting rotary desiccant wheel, Renewable Sustainable Energy Rev., 12, 1485, 10.1016/j.rser.2007.01.012 Kodama, 2001, The use of psychometric charts for the optimization of a thermal swing desiccant wheel, Appl. Therm. Eng., 21, 1657, 10.1016/S1359-4311(01)00032-1 Fontanella, 2012, Calibration and validation of a solar thermal system model in Modelica, Build. Simul., 5, 293, 10.1007/s12273-012-0070-y M. Ali, V. Vukovic, M.H. Sahir, Methodology for automated optimization of HVAC system configurations, in: 41st International KGH Congress on HVAC&R, Belgrade, Serbia, December 1–3, 2010. Modelica and the Modelica Association. Available from: http://www.modelica.org (accessed 18.04.11). Dymola, Dynamic Modeling Laboratory. Available from: http://www.3ds.com/products/catia/portfolio/dymola (accessed 18.04.11). ASHRAE, 2009 Parsons, 1987 Kodama, 1995, Performance evaluation for a thermal swing honeycomb rotor using a humidity chart, J. Chem. Eng. Jpn., 28, 19, 10.1252/jcej.28.19 Narayanan, 2011, Comparative study of different desiccant wheel designs, Appl. Therm. Eng., 31, 1613, 10.1016/j.applthermaleng.2011.01.043 Gao, 2005, Theoretical analysis of dehumidification process in a desiccant wheel, Heat Mass Transfer, 41, 1033, 10.1007/s00231-005-0663-4 A.A. Pesaran, A.F. Mills, Moisture transport in silica gel packed beds. Available from: http://www.nrel.gov/docs/legosti/old/2388.pdf. Beccali, 2003, Simplified models for the performance evaluation of desiccant wheel dehumidification, Int. J. Energy Res., 27, 17, 10.1002/er.856 Zheng, 1995, Performance optimization of rotary dehumidifier, J. Sol. Energy Eng., 117, 40, 10.1115/1.2847724 Ge, 2010, A mathematical model for the performance of a compound desiccant wheel (a model of compound desiccant wheel), Appl. Therm. Eng., 30, 1005, 10.1016/j.applthermaleng.2010.01.012 Chung, 2009, Optimization of desiccant wheel speed and area ratio of regeneration to dehumidification as a function of regeneration temperature, Sol. Energy, 83, 625, 10.1016/j.solener.2008.10.011 Antonellis, 2010, Simulation, performance analysis and optimization of desiccant wheel, Energy Build., 42, 1386, 10.1016/j.enbuild.2010.03.007 M. Wetter, Modelica library for building heating, ventilation and air-conditioning systems, in: Proceedings of 7th Modelica Conference, Como, Italy, September 20–22, 2009. ASHRAE, 2008 Kodama, 1994, Temperature profile and optimal rotation speed of a honeycomb rotor adsorber operated with thermal swing, J. Chem. Eng. Jpn., 27, 644, 10.1252/jcej.27.644 White, 2011, Characterization of desiccant wheels with alternative materials at low regeneration temperatures, Int. J. Refrigeration, 34, 1786, 10.1016/j.ijrefrig.2011.06.012 Yamaguchi, 2013, Numerical and experimental performance analysis fo rotary desiccant wheels, Int. J. Heat Mass Transfer, 60, 51, 10.1016/j.ijheatmasstransfer.2012.12.036 EnergyBase, Energy Concept – Efficiency Through Innovation. Available from: http://www.energybase.at/eng/im_energiekonzept.html (accessed 16.04.11). Siemens, DESIGO Building Automation System. Available from: http://www.big-u.org/catalog/siemens/DESIGO%20V4%20system%20description.pdf (accessed 20.09.10). Palensky, 2005 E+E Elektronik, Serie EE29/EE31. Available from: http://www.pruemmfeuchte.de/templates/pruemmtempl/pdf/polymersensoren/e_und_e/DB_EE31-29_de.pdf (accessed 16.08.11). M. Wetter, GenOpt Generic Optimization Program, User Manual. Available from: http://gundog.lbl.gov/GO/download/manual-2-1-0.pdf (accessed 16.08.10).