Desiccant cooling system thesis proposal

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Desiccant cooling system thesis proposal 740 CrossRef    
   Jia CX, Dai

Aneel (2002) Atlas Nacional de Energia Eltrica do Brasil. Agncia Nacional de Energia Eltrica, Braslia

Angrisani G, Capozzoli A, Minichiello F, Roselli C, Sasso M (2011) Desiccant wheel regenerated by thermal energy within the microgenerator: experimental assessment within the performances. Appl Energ 88:1354–1365 CrossRef

Aristov YI, Gordeeva LG (2009) “Salt within the porous matrix” adsorbents: kind of the phase composition and sorption characteristics. Kinet Catal 50(1) 65–72

Aristov YI, Tokarev MM, Restuccia G, Cacciola G (1996) Selective water sorbents for multiple applications, CaCl2 limited in micropores of silica-gel: sorption characteristics. React Kinet Catal Lett 59(2):335–342 CrossRef

Aristov YI (2013) Challenging Offers of fabric Science for Adsorption Heat Transformation: An Exam, Appl Therm Eng 50(2):1610–1618

Bellia L, Mazzei P, Minichiello F, Palma D (2000) Method with desiccant wheel for Italian climates. Int J Arch Sci 1(4):193–213

Berglund LG (1988) Thermal comfort: review of recent research, In: Mejavik IB, Banister EW, Morrison JB (erection disorder) Ecological ergonomics. Taylor Francis, London

Boudoukan P, Wurtz E, Joubert P (2010) Comparison relating to the conventional and recirculation modes in desiccant cooling cycles and deriving critical efficiencies of components. Energy 35(2):1057–1067 CrossRef

Brandemuehl MJ, Katejanekarn T (2004) Dehumidification characteristics of monetary building applications. ASHRAE Trans 110(2) 65–76

Camargo Junior (2009) Resfriamento Evaporativo (erection disorder) Cincia Moderna, Rio de Janeiro

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Casas W, Schmitz G (2005) Encounters obtaining a gas driven, desiccant aided ac system with geothermal power power power energy with an office.

Desiccant cooling system thesis proposal Humidity changer for ac

Energ Build 37:493–501 CrossRef

Chung TW, Chung CC (1998) Rise in the quantity of adsorption on modified silica-gel by using neutron flux irradiation. Chem Eng Sci 53(16):2967–2972 CrossRef

Chung JD, Lee DY (2009) Aftereffect of Desuccant Isotherm across the Performance in the Desiccant Wheel. Int J Refrig 32:720–726

Czachorsy W, Wurm J (1996) Check out desiccant as well as heat exchange matrices, gas research institute, Report GRI-97/0148. Plusieurs Plaines, Illinois

Czanderna AW(1992) Polymers as Advanced Materials for Desiccant Applications, 1: Commerically Available Polymers, Desiccant Cooling and Dehumidification, ASHRAR, Atlanta, GA, USA, 88–97

Dhar PL, Singh SK (2001) Studies on solid desiccant based hybrid air-conditioning systems. Appl Therm Eng 21:119–134 CrossRef

Elsayed SS, Hamamoto Y, Prasad Akisawa A (2008). Research in to the air cycle refrigerator driving ac system integrated desiccant system. Int J Refrig (31) 189–196

Finocchiaro P, Becalli M, Nocke B (2012) Advanced solar aided desiccant and evaporative ac outfitted with wet heat exchangers. Sol Energ 86:608–618 CrossRef

Ge TS, Dai YJ, Wang RZ, Li Y (2008) Experimental analysis round the one-rotor two-stage rotary desiccant ac. Energy 33:1807–1815 CrossRef

Ge TS, Li Y, Wang RZ, Dai YJ (2009) Experimental practice a couple-stage rotary desiccant ac. Int J Refrig 32:498–508 CrossRef

Ghali K (2008) Energy savings potential in the hybrid desiccant dehumidification ac system in Beirut.

Desiccant cooling system thesis proposal 213    
   Berglund LG

Energ Convers Manage 49:3387–3390 CrossRef

Goodish T (2001) Indoor ecological quality. Lewis Publishers, Boca Raton

Harriman LGIII (2002) Dehumidification equipment advances. ASHRAE J August 22–29

Jeong JW, Mumma SA (2005) Practical thermal performance correlations for molecular sieve and silica-gel loaded enthalpy wheels. Appl Therm Eng 25:719–740 CrossRef

Jia CX, Dai YJ, Wu YJ, Wang RZ (2006) Research in to the hybrid desiccant air-conditioning system. Appl Therm Eng 26:2393–2400 CrossRef

Jia CX, Dai YJ, Wu YJ, Wang RZ (2006) Experimental comparison of two honeycombed desiccant wheels fabricated with silica-gel and composite desiccant material. Energ Convers Manage 47:2523–2534 CrossRef

Kang TS (1985) Adiabatic desiccant open cooling cycles. M.S. Thesis, College of Nsw

Kanoglu M, Bolatturk A, Aluntop N (2007) Aftereffect of ambient conditions around the second law performance in the open desiccant cooling process. Renew Energy 32:931–946 CrossRef

Khattar M, Ramanan M, Swami M (1985) Fan cycling effects on ac moisture removal performance in warm, moist climates. In: Proceedings within the worldwide symposium on moisture and humidity, Washington D.C

Khedari J, Rawangkul R, Chimchavee W, Hirunlab J, Watanasungsuit A (2003) Functionality study utilizing agriculture waste as desiccant for ac system. Renew Energy (28) 1617–1628

Kubota M, Hanada T, Yabe S, Kuchar D, Matsuda M (2011) Water Desorption Behavior of desiccant rotor under microwave irradiation, Appl Therm Eng 31:1482–1486

Kuehn TH, Ramsey JW, Threlkeld JL (1998) Thermal ecological engineering, 3rd edn. Prentice-Hall, New-Jersey

La D, Dai YJ, Li Y, Wang RZ, Ge TS (2010) Technical advancement of rotary desiccant dehumidification and ac: an exam. Renew Sustain Energ Rev 14:130–147 CrossRef

La D, Li Y, Dai YJ, Ge TS, Wang RZ (2012) Advancement of a manuscript rotary desiccant cooling cycle with isothermal dehumidification and regenerative evaporative cooling using thermodynamic analysis method. Energy 44:778–791 CrossRef

Ladisch MR (1997) Biobased adsorbents for drying of gases. Enzyme Microb Technol 20(3):162–164 CrossRef

Lee J, Lee DY (2012) Sorption characteristics in the novel polymeric desiccant. Int J Refrig 35:1940–1949 CrossRef

Lof GOG, Cler G, Queensland T (1988) Performance in the Solar Desiccant System. J Sol Energ Eng 110:165–171

Maclaine-Mix IL (1985) High-performance adiabatic desiccant open-cooling cycles. J Sol Energ Eng 107:102–104 CrossRef

Mathiowitz E, Jacob E, Jong YS, Hekal TM, Spano W, Guemonprez E (2001) Novel desiccants according to designed polymeric blends. J Appl Polym Sci 80(3):317–327 CrossRef

McLay B, (1989) Analysis and simulation in the advanced open-cycle solid desiccant ac. M.S. Thesis, Colorado Condition College

Niu JL, Zhang LZ, Zuo HG (2002) Energy savings potential of chilled ceiling together with desiccant cooling in hot and moist climates. Energy and Structures 34:487–495

Nbrega CE, Brum NCL (2009) Modeling and simulation of warmth and enthalpy recovery wheels. Energy 34:2063–2068 CrossRef

Nbrega CEL, Brum NCL, (2009b) Influence of isotherm shape over desiccant cooling cycle performance. Heat Trans Eng 30(4) 322–328

Nbrega CE, Brum NCL (2012) An research to the heat and mass transfer roles in air dehumidification by solid desiccants. Energ Build 50:251–258 CrossRef

Nbrega CE, Sphaier LA (2012) Modeling and simulation in the desiccant-Brayton cascade refrigeration cycle. Energ Build 55:575–584 CrossRef

Ostrovskii NM, Chumakova NA, Bukhavtsova NM, Vernikovskaya NV, Arsitov YI (2007) Theor Found Chem Eng 41(1):83–90 CrossRef

Parsons Ken (2003) Human thermal Environments. Taylor Francis, London

Pennington NA (1955) Humidity changer for ac. USA patemt 2(700):537

Rady MA (2009) Heat and mass transfer within the composite bed or silica-gel and macro encapsulated PCM for performance of dehumidification of desiccant beds made up of silica-gel and thermal energy storage particles. Heat Mass Transf 45(5):545–561 CrossRef

Rady M, Huzayyin AS, Arquis E, Monneyron P, Lebot C, Palomo E (2009) Study of warmth and mass transfer in dehumidifying desiccant bed with macro-encapsulated phase change materials. Renew Energ 34:718–726 CrossRef

Rutheven D (1984) Concepts of adsorption and adsorption processes. Wiley, New You can

Sand Junior, Fischer JC (2005) Active desiccant integration with packaged rooftop Air conditioning equipment. Appl Therm Eng 25:3138–3148 CrossRef

Spatz M, Yana Motta S, Achaicha N (2011) Low weather change potential refrigerants for stationary ac applications. In: Proceedings within the 23rd worldwide congress of refrigeration and air-conditioning, Prague, Czech Republic, paper 919

Sphaier LA, Nbrega CE (2012) Parametric analysis of components effectiveness on desiccant cooling systems performance. Energy 38:157–166 CrossRef

Tashiro Y, Kubo M, Katsumi Y, Meguro Y, Komeya K (2004) Assessment of adsorption-desorption characteristics of adsorbents for adsorptive desiccant cooling systems. J Mater Sci 39(9):1315–1319 CrossRef

Thoruwa TFN, Johnstone CM, Grant AD, Cruz JE (2000) Functionality study utilizing agriculture waste as desiccant for ac system. Renew Energ 19:513–520 CrossRef

Tokarev M, Gordeeva L, Romannikov V, Glaznev I, Aristov Y (2002) New composite sorbent Cacl2 in mesopores for sorption cooling/heating. Int J Therm Sci 4:470–474 CrossRef

Worek WM, Moon CJ (1988) Desiccant integrated hybrid vapour compression cooling performance sensitivity to outdoors conditions. Heat Recovery Syst CHP 8(6):489–501 CrossRef


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