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Analysis and Modeling of a Novel Hybrid Solid–Liquid Dehumidifier System

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REFERENCES

  • Nia , F. E. , Paassen , D. and Saidi , M. H. 2006 . Modeling and Simulation of Desiccant Wheel for Air Conditioning . Energy and Buildings , 38 ( 10 ) : 1230 – 1239 .
  • Zhang , L. Z. , Zhu , D. S. , Deng , X. H. and Hua , B. 2005 . Thermodynamic Modeling of a Novel Air Dehumidification System . Energy and Buildings , 37 ( 3 ) : 279 – 286 .
  • Maclaine-Cross , I. L. and Banks , P. J. 1972 . Coupled Heat and Mass Transfer in Regenerators—-Prediction Using an Analogy With Heat Transfer . International Journal of Heat and Mass Transfer , 15 ( 6 ) : 1225 – 1242 .
  • Zhang , L. Z. and Niu , J. L. 2003 . A Pre-Cooling Munters Environmental Control Cooling Cycle in Combination With Chilled-Ceiling Panels . Energy , 28 ( 3 ) : 275 – 292 .
  • Zheng , W. and Worek , W. M. 1993 . Numerical Simulation of Combined Heat and Mass Transfer Process in a Rotary Dehumidifier . Numerical Heat Transfer Part A , 23 ( 2 ) : 211 – 232 .
  • Niu , J. L. and Zhang , L. Z. 2002 . Effects of Wall Thickness on the Heat and Moisture Transfers in Desiccant Wheels for Air Dehumidification and Enthalpy Recovery . International Communications in Heat and Mass Transfer , 29 ( 2 ) : 255 – 268 .
  • Dai , Y. J. , Wang , R. Z. and Zhang , H. F. 2001 . Parameter Analysis to Improve Rotary Desiccant Dehumidification Using a Mathematical Model . International Journal of Thermal Science , 40 ( 4 ) : 400 – 408 .
  • Zhang , L. Z. and Niu , J. L. 2002 . Performance Comparisons of Desiccant Wheels for Air Dehumidification and Enthalpy Recovery . Applied Thermal Engineering , 22 ( 12 ) : 1347 – 1367 .
  • Yuan , W. X. and Liu , X. R. 2007 . Numerical Simulation and Analysis of a New Simple Model on Desiccant Wheel . Acta Energiae Solaris Sinica , 28 ( 3 ) : 296 – 300 . (in Chinese)
  • Collier , R. K. , Cale , T. S. and Lavan , Z. 1986 . Advanced Desiccant Material Assessment . Gas Research Institute Report , GRI-86/0182
  • Zhang , X. J. , Sumathy , K. , Dai , Y. J. and Wang , R. Z. 2005 . Parametric Study on the Silica Gel–Calcium Chloride Composite Desiccant Rotary Wheel Employing Fractal BET Adsorption . International Journal of Energy Research , 29 ( 1 ) : 37 – 51 .
  • Liu , X. H. and Jiang , Y. 2007 . Heat and Mass Transfer Model of Cross Flow Liquid Desiccant Air Dehumidifier . Energy Conversion and Management , 48 ( 2 ) : 546 – 554 .
  • Yuan , W. X. , Yang , Y. F. , Yuan , X. G. and Yang , C. X. 2009 . Hybrid Liquid and Solid Dehumidifier and Its Dehumidification Methods, Chinese Patent . ZL 200810119998.1,(in Chinese)
  • Liu , X. R. Theoretical and Numerical Research on Solid and Liquid Dehumidifiers MS Thesis, BUAA, China, 2003 (in Chinese)
  • Zhang , L. , Dang , C. B. and Hihara , E. 2010 . Performance Analysis of a No-Frost Hybrid Air Conditioning System With Integrated Liquid Desiccant Dehumidification . International Journal of Refrigeration , 33 ( 1 ) : 116 – 124 .
  • Zhang , L. , Hihara , E. , Matsuoka , F. and Dang , C. B. 2010 . Experimental Analysis of Mass Transfer in Adiabatic Structured Packing Dehumidifier/Regenerator With Liquid Desiccant . International Journal of Heat and Mass Transfer , 53 ( 9 ) : 2856 – 2863 .
  • Huang , S. M. , Zhang , L. Z. , Tang , K. and Pei , L. X. 2012 . Fluid Flow and Heat and Mass Transfer in Membrane Parallel-Plates Channels Used for Liquid Desiccant Air Dehumidification . International Journal of Heat and Mass Transfer , 55 ( 3 ) : 2571 – 2580 .
  • Zhang , L. Z. 2011 . Heat and Mass Transfer in a Randomly Packed Hollow Fiber Membrane Module: A Fractal Model Approach . International Journal of Heat and Mass Transfer , 54 ( 13–14 ) : 2921 – 2931 .
  • Zhang , L. Z. and Huang , S. M. 2011 . Coupled Heat and Mass Transfer in a Counter Flow Hollow Fiber Membrane Module for Air Humidification . International Journal of Heat and Mass Transfer , 54 ( 5–6 ) : 1055 – 1063 .
  • Liang , C. H. , Zhang , L. Z. and Pei , L. X. 2010 . Independent Air Dehumidification With Membrane-Based Total Heat Recovery: Modeling and Experimental Validation . International Journal of Refrigeration , 33 ( 2 ) : 398 – 408 .
  • Zhang , L. Z. 2010 . Heat and Mass Transfer in a Quasi-Counter Flow Membrane-Based Total Heat Exchanger . International Journal of Heat and Mass Transfer , 53 ( 23–24 ) : 5478 – 5486 .
  • Zhang , L. Z. 2008 . Heat and Mass Transfer in a total Heat Exchanger: Cross-Corrugated Triangular Ducts With Composite Supported Liquid Membrane . Numerical Heat Transfer, Part A—Applications , 53 ( 11 ) : 1195 – 1210 .
  • Zhang , L. Z. 2007 . Heat and Mass Transfer in a Cross Flow Membrane-Based Enthalpy Exchanger Under Naturally Formed Boundary Conditions . International Journal of Heat Mass Transfer , 50 ( 1–2 ) : 151 – 162 .
  • Zhang , L. Z. 2006 . Fabrication of a Lithium Chloride Solution Based Composite Supported Liquid Membrane and Its Moisture Permeation Analysis . Journal of Membrane Science , 276 ( 1–2 ) : 91 – 100 .
  • Zhang , L. Z. , Wang , Y. Y. , Wang , C. L. and Xiang , H. 2008 . Synthesis and Characterization of a PVA/LiCl Blend Membrane for Air Dehumidification . Journal of Membrane Science , 308 ( 1–2 ) : 198 – 206 .
  • Pei , L. X. , Lv , Z. M. and Zhang , L. Z. 2012 . Selective Adsorption of a Novel High Selective Desiccant for Prospective Use in Heat and Moisture Recovery for Buildings . Building and Environment, 2012 , 49 ( 1 ) : 124 – 128 .

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