CV of Prof. Dr. Li-Zhi ZHANG
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1 CV of Prof. Dr. Li-Zhi ZHANG Affiliation: Professor, South China University of Technology, Key Lab of Enhanced Heat Transfer and Energy Conservation, China. Tel/fax: ; Li-Zhi Zhang is a Professor at South China University of Technology (Guangzhou, China). He has worked with energy recovery and heat and mass transfer topics and advanced humidity control technologies since His primary interest is on heat and moisture recovery from ventilation air with membrane technologies. His research interests also include: advanced moisture control and dehumidification technology; Modeling of heat and mass transfer in energy-related equipments; Development of novel functional materials for built environment. Current topics in his research group include membrane-based humidity control (membrane-based liquid desiccant air dehumidification and humidification), development of high moisture/vocs selectivity adsorbent, development of high thermally conductive anti-corrosion plastics. The highlight of his research is to combine the development of new functional materials with the applications of heat and mass transfer technologies. Li-Zhi Zhang received his doctor's degree in Thermal Engineering from Dalian University of Technology in China in He then conducted his postdoctoral researches in Tsinghua University (Beijing) from , and in the Hong Kong Polytechnic University from In 2003, he joined South China University of Technology as one of the youngest professor at that time in SCUT. He is now the director of the research center for Energy Saving Built Environment Technologies. Li-Zhi Zhang has published more than 100 papers in international journals. He has authored 4 books in advanced humidity control and obtained 10 patents in built environment technologies. He is currently members of the editorial board of Indoor and Built Environment, Int. J. Air Conditioning and Refrigeration, and Int. J. Low Carbon Technologies. In 2006, he received the Fok-Ying Tung Education Fund award for young researchers of Education Ministry. In 2010, he received the first grade award in Natural Science research of Education Ministry. He has given a couple of keynote speeches at international conferences and he is the editors for several conference proceedings of heat transfer and energy conservation. He is the Secretariat General of ISHTEC2012, the 4th international Symposium on Heat Transfer and Energy Conservation, which was held from Jan 6-9, 2012 in Guangzhou China (Conference Chairman Prof. Wenquan Tao, He has give 10 keynote speeches at international conferences in recent years. Publication list of Prof Zhang Lizhi (SCI 70) SCI Journal papers [1] S.M. Huang, L.Z. Zhang, L.X. Pei, Transport phenomena in a cross-flow hollow fiber membrane bundle used for liquid desiccant air dehumidification, Indoor and Built Environment, 2012, accepted. [2] L.Z. Zhang, Coupled heat and mass transfer in an application-scale cross-flow hollow fiber membrane module for air humidification, International Journal of Heat Mass Transfer, 2012, accepted. 1
2 [3] L.Z. Zhang, Progress on heat and moisture recovery with membranes: from fundamentals to engineering applications, Energy Conversion and Management, 2012, accepted. [4] L.Z. Zhang, X.R. Zhang, Q.Z. Miao, L.X. Pei, Selective permeation of moisture and VOCs through polymer membranes used in total heat exchangers for indoor air ventilation, Indoor Air, 2012, accepted. [5] Z.Y. Chen, L.Z. Zhang, H. Song, Investigating the impacts of included angles on flow and heat transfer in cross-corrugated triangular ducts with field synergy principle, Thermal Science, 2012, accepted. [6] S.M. Huang, L.Z. Zhang, K. Tang, L.X. Pei, Turbulent heat and mass transfer across a hollow fiber membrane tube bank in liquid desiccant air dehumidification, ASME Journal of Heat Transfer, 2012, 134(8): Aug. [7] L.Z. Zhang, S.M. Huang, J.H. Chi, L.X. Pei, Conjugate heat and mass transfer in a hollow fiber membrane module for liquid desiccant air dehumidification: a free surface model approach, International Journal of Heat Mass Transfer, 2012, 55(13-14): July. [8] L.X. Pei, L.Z. Zhang, Preparation and selective adsorption of core-shell desiccant for heat and moisture recovery, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2012, 406C: June. [9] S.M. Huang, L.Z. Zhang, K. Tang, L.X. Pei, Fluid flow and heat mass transfer in membrane parallel-plates channels used for liquid desiccant air dehumidification, International Journal of Heat Mass Transfer, 2012, 55(3): March. [10] L.X. Pei, Z.M. Lv, L.Z. Zhang, Selective adsorption of a novel high selective desiccant for prospective use in heat and moisture recovery for buildings, Building and Environment, 2012, 49(1): Jan. [11] L.Z. Zhang, W.C. Zhong, J.M. Chen, J.R. Zhou, Fluid flow and heat transfer in plate-fin and tube heat exchangers in transitional flow regime, Numerical Heat Transfer, Part A-Applications, 2011, 60(9): Dec [12] L.Z. Zhang, An analytical solution to heat and mass transfer in hollow fiber membrane contactors for liquid desiccant air dehumidification, ASME Journal of Heat Transfer, 2011, 133 (9): Sep. [13] L.Z. Zhang, Heat and mass transfer in a randomly packed hollow fiber membrane module: a fractal model approach, International Journal of Heat Mass Transfer, 2011, 54 (13-14): May. [14] L.Z. Zhang, S.M. Huang, Coupled heat and mass transfer in a counter flow hollow fiber membrane module for air humidification, International Journal of Heat Mass Transfer, 2011, 54(5-6): Feb [15] X.R. Zhang, L.Z. Zhang, H.M. Liu, L.X. Pei, One-step fabrication and analysis of an asymmetric cellulose acetate membrane for heat and moisture recovery, Journal of Membrane Science, 2011, 366 (1-2): Jan [16] L.Z. Zhang, Z.Y. Chen, Convective heat transfer in cross-corrugated triangular ducts under uniform heat flux boundary conditions, International Journal of Heat Mass Transfer, 2011, 54 (1-3 ): Jan. [17] L.Z. Zhang, Heat and mass transfer in a quasi-counter flow membrane-based total heat exchanger, International Journal of Heat Mass Transfer, 2010, 53(23-24): Sep. [18] L. X. Pei, W. J. Zhao, L. Z. Zhang, Preparation and characterization of porous PVDF membranes for dehumidification with PEG as additive, Journal of Applied Polymer Science, 2010, 118(5): Dec 5 [19] C.H. Liang, L.Z. Zhang, L.X. Pei, Performance analysis of a direct expansion air dehumidification system combined with membrane-based total heat recovery, Energy, 2010, 35(9): Sep. [20] L. Z. Zhang, An analytical solution for heat mass transfer in a hollow fiber membrane based air-to-air heat mass exchanger, Journal of Membrane Science, 2010, 360(1-2): Sept. [21] C.H. Liang, L.Z. Zhang, L.X. Pei, Independent air dehumidification with membrane-based total heat recovery: modeling and experimental validation, International Journal of Refrigeration, 2010, 33(2): Apr [22] L. Z. Zhang, Cai-hang Liang, Li-Xia Pei, Conjugate heat and mass transfer in membrane-formed channels in all entry regions. International Journal of Heat Mass Transfer, 2010, 53(5-6): Feb [23] L. Z. Zhang, Performance deteriorations from flow maldistribution in air-to-air heat exchangers: a parallel-plates membrane core case. Numerical Heat Transfer, Part A-Applications, 2009, 56(9): Nov 2
3 [24] L. Z. Zhang, Flow maldistribution and performance deteriorations in a membrane-based heat and mass exchanger. ASME Journal of Heat Transfer, 2009, 131(11): Nov [25] L. Z. Zhang, Flow maldistribution and thermal performance deterioration in a cross-flow air to air heat exchanger with plate-fin cores. International Journal of Heat Mass Transfer, 2009, 52(19-20): Sep [26] L. Z. Zhang, Heat and mass transfer in plate-fin enthalpy exchangers with different plate and fin materials. International Journal of Heat Mass Transfer, 2009, 52(11-12): Feb [27] L. Z. Zhang, Coupled heat and mass transfer through asymmetric porous membranes with finger-like macrovoids structure. International Journal of Heat Mass Transfer, 2009, 52(3-4): Jan [28] L. Z. Zhang, C. H. Liang, L. X. Pei, Heat and moisture transfer in application-scale parallel-plates enthalpy exchangers with novel membrane materials. Journal of Membrane Science, 2008, 325(12): Dec [29] L. Z. Zhang, A fractal model for gas permeation through porous membranes. International Journal of Heat Mass Transfer, 2008, 51(21-22): Oct. [30] L. Z. Zhang, F. Xiao, Simultaneous heat and moisture transfer through a composite supported liquid membrane. International Journal of Heat Mass Transfer, 2008, 51(9-10): May. [31] L. Z. Zhang, Heat and mass transfer in a total heat exchanger: cross-corrugated triangular ducts with composite supported liquid membrane. Numerical Heat Transfer, Part A-Applications, 2008, 53(11): Jan. [32] L. Z. Zhang, Heat and mass transfer in plate-fin sinusoidal passages with vapor-permeable wall materials. International Journal of Heat Mass Transfer, 2008, 51(3-4): Feb. [33] L. Z. Zhang, Y. Y. Wang, C. L. Wang, H. Xiang, Synthesis and characterization of a PVA/LiCl blend membrane for air dehumidification. Journal of Membrane Science, 2008, 308(1-2): Feb. [34] L. Z. Zhang, Thermally developing forced convection and heat transfer in rectangular plate-fin passages under uniform plate temperature. Numerical Heat Transfer, Part A-Applications, 2007, 52(6): Aug [35] L. Z. Zhang, Numerical study of heat mass transfer in an enthalpy exchanger with a hydrophobic-hydrophilic composite membrane core. Numerical Heat Transfer, Part A-Applications, 2007, 51(7): Mar [36] L. Z. Zhang, Laminar flow and heat transfer in plate-fin triangular ducts in thermally developing entry region. International Journal of Heat Mass Transfer, 2007, 50(7-8): April [37] L. Z. Zhang, Heat and mass transfer in a cross flow membrane-based enthalpy exchanger under naturally formed boundary conditions. International Journal of Heat Mass Transfer, 2007, 50(1-2): JAN [38] L. Z. Zhang, Effects of membrane parameters on performance of vapor permeation through a composite supported liquid membrane. Separation Science and Technology, 2006, 41(16): DEC [39] L. Z. Zhang, Mass diffusion in a hydrophobic membrane humidification/dehumidification process: the effects of membrane characteristics. Separation Science and Technology, 2006, 41(8): JUN [40] F. Li, J. L. Niu, L. Z. Zhang, A physically-based model for prediction of VOCs emissions from paint applied to an absorptive substrate. Building and Environment, 2006, 41(10): OCT [41] L. Z. Zhang, Fabrication of a Lithium Chloride solution based composite supported liquid membrane and its moisture permeation analysis. Journal of Membrane Science, 2006, 276(1-2): MAY [42] L. Z. Zhang, Investigation of moisture transfer effectiveness through a hydrophilic polymer membrane with a field and laboratory emission cell. International Journal of Heat Mass Transfer, 2006, 49(5-6): MAR [43] L. Z. Zhang, Energy performance of independent air dehumidification systems with energy recovery measures. Energy, 2006, 31(8-9): JUL [44] L. Z. Zhang, Evaluation of moisture diffusivity in hydrophilic polymer membranes: a new approach. Journal of Membrane Science, 2006, 269(1-2): FEB [45] L. Z. Zhang, Turbulent three-dimensional air flow and heat transfer in a cross-corrugated triangular duct. ASME Journal of Heat Transfer, 2005, 127(10): OCT [46] L. Z. Zhang, Convective mass transport in cross-corrugated membrane exchangers. Journal of Membrane Science, 2005, 260(1-2): SEP [47] L. Z. Zhang, Numerical study of periodically fully developed flow and heat transfer in 3
4 cross-corrugated triangular channels in transitional flow regime. Numerical Heat Transfer, Part A-Applications, 2005, 48(4): SEP [48] L. Z. Zhang, D. S. Zhu, X. H. Deng, B. Hua, Thermodynamic modeling of a novel air dehumidification system. Energy and Buildings, 2005, 37(3): MAR [49] L. Z. Zhang, J. L. Niu, Modeling VOCs emissions in a room with a single-zone multi-component multi-layer technique. Building and Environment, 2004, 39(5): MAY [50] L. Z. Zhang, J. L. Niu, Effects of substrate parameters on the emissions of volatile organic compounds from wet coating materials. Building and Environment, 2003, 38(7): JUL [51] L. Z. Zhang, J. L. Niu, Mass transfer of volatile organic compounds from painting material in a standard field and laboratory emission cell (FLEC). International Journal of Heat Mass Transfer, 2003, 46(13): JUN [52] L. Z. Zhang, J. L. Niu, A pre-cooling Munters Environmental Control cooling cycle in combination with chilled-ceiling panels. Energy, 2003, 28(3): MAR [53] L. Z. Zhang, J. L. Niu, Laminar fluid flow and mass transfer in a standard field and laboratory emission cell (FLEC). International Journal of Heat Mass Transfer, 2003, 46(1): JAN [54] L. Z. Zhang, J. L. Niu, Indoor humidity behaviors associated with decoupled cooling in hot and humid climates. Building and Environment, 2003, 38(1): JAN [55] L. Z. Zhang, J. L. Niu, Effectiveness correlations for heat and moisture transfer processes in an enthalpy exchanger with membrane cores. ASME Journal of Heat Transfer, 2002, 122(5): OCT [56] L. Z. Zhang, J. L. Niu, Performance comparisons of desiccant wheels for air dehumidification and enthalpy recovery. Applied Thermal Engineering, 2002, 22(12): AUG [57] J. L. Niu, L. Z. Zhang, 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, 2002, 29(2): FEB [58] J. L.Niu, L. Z. Zhang, H.G. Zuo, Energy savings potential of chilled-ceiling combined with desiccant cooling in hot and humid climates. Energy and Buildings, 2002, 34(5): JUN [59] J. L. Niu, L. Z. Zhang, Heat transfer and friction coefficients in corrugated ducts confined by sinusoidal and arc curves. International Journal of Heat Mass Transfer, 2002, 45(3): JAN [60] L. Z. Zhang, J. L. Niu, A numerical study of laminar forced convection in sinusoidal ducts with arc lower boundaries under uniform wall temperature. Numerical Heat Transfer, Part A: Applications, 2001, 40(1): JUL [61] J. L. Niu, L. Z. Zhang, Membrane-based enthalpy exchanger: material considerations and clarification of moisture resistance. Journal of membrane science, 2001, 189(2): AUG [62] L. Z. Zhang, J. L. Niu, Energy requirements for conditioning fresh air and the long-term savings with a membrane-based energy recovery ventilator in Hong Kong. Energy, 2001, 26(2): FEB [63] L. Z. Zhang, A three-dimensional non-equilibrium model for an intermittent adsorption cooling system. Solar Energy, 2000, 69(1): JAN [64] L. Z. Zhang, Y. Jiang and Y. P. Zhang, Membrane-based Humidity Pump: performance and limitations. Journal of membrane science, 2000, 171(2): JUN [65] Y. P. Zhang, Y. Jiang, L. Z. Zhang, et al, Analysis of thermal performance and energy savings of membrane based heat recovery ventilator. Energy, 2000, 25(6): JUN [66] L. Z. Zhang and L. Wang, Momentum and heat transfer in the adsorbent of a waste heat adsorption cooling system. Energy, 1999, 24(7): JUL [67] L. Z. Zhang and Y. Jiang, Heat and mass transfer in a membrane-based Enthalpy Recovery Ventilator. Journal of Membrane Science, 1999, 163(1): [68] L. Z. Zhang and L. Wang, Effects of coupled heat and mass transfers in adsorbent on the performance of a waste heat adsorption cooling unit. Applied Thermal Engineering, 1999, 19(2): [69] L. Z. Zhang, Design and testing of an automobile waste heat adsorption cooling system. Applied Thermal Engineering, 1999, 20(1): [70] L. Z. Zhang and L. Wang, Performance estimation of an adsorption cooling system for automobile waste heat recovery. Applied Thermal Engineering, 1997, 17(12): Books [1] Li-Zhi Zhang. Total Heat Recovery: Heat and Moisture Recovery from Ventilation Air. New York: Nova Science Publishers, Inc., ISBN 4
5 [2] Lizhi Zhang, Shuangfeng Wang, Shuanshi Fan, Zhengguo Zhang, Xuenong Gao. Advances in Heat Transfer and Energy Conservation, Proceedings of ISHTEC2012, 4th International Symposium on Heat Transfer and Energy Conservation, January 6-9, 2012, Guangzhou, China. ISBN 页, 80 万字. Academic activities [1] Session Chair, The 6th International Symposium on Heating, Ventilating, and Air conditioning, ISHVAC 09, Nanjing China, Nov 6-9, [2] Editorial board of Indoor air and Built Environment, 2009-present. [3] China regional vice president of ISBE, International Society of the Built Environment, 2009-present. [4] International Scientific committee member, VIII Minsk International Seminar "Heat Pipes, Heat Pumps, Refrigerators, Power Source, Minsk Belarus, Sep 12-15, [5] Session Chair, 2010 International Heat Transfer Congress, IHTC-14, Aug 7-13, Washington, USA. [6] Editorial board for the International Journal of Low Carbon Technologies, [7] Member of WSSET, The World Society of Sustainable Energy Technologies. [8] Session Chair, SET2011, 2011 Symposium on Sustainable Energy Technologies, Istanbul Turkey, Sep 4-7, [9] Secretariat general of ishtec2012, 4th international symposium on heat transfer and energy conservation, Guangzhou China. Jan 6-9, [10] Guest editor of Heat Transfer Engineering, Taylor and Francis, [11] Guest editor of International Journal of Low Carbon Technologies, Oxford University Press, [12] Member of International Scientific Committee, SEBUA 12, Sustainable Energy in Buildings and Urban Areas, SUSTAINABLE ENERGY IN BUILDINGS AND URBAN AREAS, October 2012, Kusadasi, Turkey. Invited Keynote Speeches [1] Li-Zhi Zhang, Heat and Mass Transfer in Membrane Bundles for Membrane-based Liquid Desiccant Air Dehumidification, SET2012, 11th Symposium on Sustainable Energy Technologies, Sep 2-5, 2012, Vancouver, Canada. [2] Li-Zhi Zhang, Performance analysis of new air conditioning systems with novel total heat (energy) exchangers, ICTEA2012, Sixth International Conference on Thermal Engineering: Theory and Application, May 29 June 1, 2012, Istanbul, Turkey. [3] Li-Zhi Zhang, Advanced indoor humidity control: new impacts on conjugated heat and mass transfer, plenary keynote speech presented at CHT-12, 12th symposium on Advances in Computational Heat Transfer, July 1-6, 2012, Bath, England, UK. [4] Li-Zhi Zhang, Heat and mass transfer problems in new moisture control technologies, plenary keynote speech presented at ishtec2012, 4th International Symposium on Heat Transfer and Energy Conservation, Jan 6-9, 2012, Guangzhou, China. 5
6 [5] Li-Zhi Zhang, Progress on Heat and Moisture Recovery from Ventilation Air: from Fundamentals to Engineering Applications, plenary keynote speech presented at VIII Minsk International Seminar "Heat Pipes, Heat Pumps, Refrigerators, Power Source, Sep 12-15, 2011, Minsk Belarus. [6] Li-Zhi Zhang, Heat and moisture recovery with membranes: from fundamentals to engineering applications, plenary keynote speech presented at SET2011, 10th Symposium on Sustainable Energy Technologies, Sep 4-7, 2011, Istanbul, Turkey. [7] Li-Zhi Zhang, New moisture control technologies in subtropical regions, Sino-German Forum on Building Energy Conservation in South China, Oct 13, 2008, Guangzhou, China. 6
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