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      A simple analytical method to estimate all exit parameters of a cross-flow air dehumidifier using liquid desiccant

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          Abstract

          The dehumidifier is a key component in liquid desiccant air-conditioning systems. Analytical solutions have more advantages than numerical solutions in studying the dehumidifier performance parameters. This paper presents the performance results of exit parameters from an analytical model of an adiabatic cross-flow liquid desiccant air dehumidifier. Calcium chloride is used as desiccant material in this investigation. A program performing the analytical solution is developed using the engineering equation solver software. Good accuracy has been found between analytical solution and reliable experimental results with a maximum deviation of +6.63% and −5.65% in the moisture removal rate. The method developed here can be used in the quick prediction of the dehumidifier performance. The exit parameters from the dehumidifier are evaluated under the effects of variables such as air temperature and humidity, desiccant temperature and concentration, and air to desiccant flow rates. The results show that hot humid air and desiccant concentration have the greatest impact on the performance of the dehumidifier. The moisture removal rate is decreased with increasing both air inlet temperature and desiccant temperature while increases with increasing air to solution mass ratio, inlet desiccant concentration, and inlet air humidity ratio.

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          Application of a solar desiccant/collector system for water recovery from atmospheric air

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            An effectiveness model of liquid-desiccant system heat/mass exchangers

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              Thermodynamic analysis of a counter flow adiabatic dehumidifier with different liquid desiccant materials

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                Author and article information

                Contributors
                Journal
                J Advanc Res
                J Advanc Res
                Journal of Advanced Research
                Elsevier
                2090-1232
                2090-1224
                30 March 2013
                March 2014
                30 March 2013
                : 5
                : 2
                : 175-182
                Affiliations
                Mechanical Power Engineering Department, Faculty of Engineering, Tanta University, Egypt
                Author notes
                [* ]Tel.: +20 1005852335. mahgoub.m@ 123456gmail.com
                Article
                S2090-1232(13)00029-5
                10.1016/j.jare.2013.02.002
                4294733
                16af8532-508b-4f12-ba73-8603fc75192b
                © 2013 Cairo University. Production and hosting by Elsevier B.V. All rights reserved.

                This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).

                History
                : 16 December 2012
                : 5 February 2013
                : 23 February 2013
                Categories
                Original Article

                dehumidifier,regenerator,liquid desiccant,analytical solution,structured packing bed,desiccant cooling

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