Experimental heat and mass transfer studies on horizontal falling film absorber using water-lithium bromide
Vapour absorption systems are more viable technology option in energy and environmental perspective in cooling and heating applications. Among the four major components of vapour absorption system, the absorber plays a vital role in deciding the performance, size and cost. Horizontal falling film ab...
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VINCA Institute of Nuclear Sciences
2020-01-01
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doaj-d9a54735c76e4668ad4df2dac8e7686d2021-01-02T14:27:07ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362020-01-01243 Part B1923193410.2298/TSCI180307208A0354-98361800208AExperimental heat and mass transfer studies on horizontal falling film absorber using water-lithium bromideArshi Banu P.S.0Sudharsan N.M.1Hindustan Institute of Technology and Science, Dept of Mechanical Engineering, Chennai, India + Anna University, Rajalakshmi Engineering College, Dept of Mechanical Engineering, Chennai, IndiaAnna University, Rajalakshmi Engineering College, Dept of Mechanical Engineering, Chennai, IndiaVapour absorption systems are more viable technology option in energy and environmental perspective in cooling and heating applications. Among the four major components of vapour absorption system, the absorber plays a vital role in deciding the performance, size and cost. Horizontal falling film absorbers comparatively contain good heat and mass transfer characteristics than other type of absorbers for working fluids such as water-lithium bromide. Literature shows that experimental approach of performance evaluation of absorber is more realistic and accurate than the theoretical approach. Hence in the present work, a detail experimental study has been done on horizontal tube falling film absorber using water-lithium bromide as a working fluid. The set-up consists of two major components viz. absorber and generator. Absorber contains three columns of tubes, with eight rows in each column. Detailed parametric study has been done by considering influence of spray density, cooling water-flow rate, cooling water temperature and concentration on solution temperatures, cooling water temperatures, inlet and outlet concentrations, heat flux, mass flux, heat transfer coefficient, and mass transfer coefficient with the help of plots. Results have been validated and literature gaps have been discussed.http://www.doiserbia.nb.rs/img/doi/0354-9836/2020/0354-98361800208A.pdfsolarvapour absorption refrigeration/cooling systemabsorberhorizontal falling filmspray densityheat fluxmass fluxheat transfer coefficientmass transfer coefficient |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Arshi Banu P.S. Sudharsan N.M. |
spellingShingle |
Arshi Banu P.S. Sudharsan N.M. Experimental heat and mass transfer studies on horizontal falling film absorber using water-lithium bromide Thermal Science solar vapour absorption refrigeration/cooling system absorber horizontal falling film spray density heat flux mass flux heat transfer coefficient mass transfer coefficient |
author_facet |
Arshi Banu P.S. Sudharsan N.M. |
author_sort |
Arshi Banu P.S. |
title |
Experimental heat and mass transfer studies on horizontal falling film absorber using water-lithium bromide |
title_short |
Experimental heat and mass transfer studies on horizontal falling film absorber using water-lithium bromide |
title_full |
Experimental heat and mass transfer studies on horizontal falling film absorber using water-lithium bromide |
title_fullStr |
Experimental heat and mass transfer studies on horizontal falling film absorber using water-lithium bromide |
title_full_unstemmed |
Experimental heat and mass transfer studies on horizontal falling film absorber using water-lithium bromide |
title_sort |
experimental heat and mass transfer studies on horizontal falling film absorber using water-lithium bromide |
publisher |
VINCA Institute of Nuclear Sciences |
series |
Thermal Science |
issn |
0354-9836 |
publishDate |
2020-01-01 |
description |
Vapour absorption systems are more viable technology option in energy and environmental perspective in cooling and heating applications. Among the four major components of vapour absorption system, the absorber plays a vital role in deciding the performance, size and cost. Horizontal falling film absorbers comparatively contain good heat and mass transfer characteristics than other type of absorbers for working fluids such as water-lithium bromide. Literature shows that experimental approach of performance evaluation of absorber is more realistic and accurate than the theoretical approach. Hence in the present work, a detail experimental study has been done on horizontal tube falling film absorber using water-lithium bromide as a working fluid. The set-up consists of two major components viz. absorber and generator. Absorber contains three columns of tubes, with eight rows in each column. Detailed parametric study has been done by considering influence of spray density, cooling water-flow rate, cooling water temperature and concentration on solution temperatures, cooling water temperatures, inlet and outlet concentrations, heat flux, mass flux, heat transfer coefficient, and mass transfer coefficient with the help of plots. Results have been validated and literature gaps have been discussed. |
topic |
solar vapour absorption refrigeration/cooling system absorber horizontal falling film spray density heat flux mass flux heat transfer coefficient mass transfer coefficient |
url |
http://www.doiserbia.nb.rs/img/doi/0354-9836/2020/0354-98361800208A.pdf |
work_keys_str_mv |
AT arshibanups experimentalheatandmasstransferstudiesonhorizontalfallingfilmabsorberusingwaterlithiumbromide AT sudharsannm experimentalheatandmasstransferstudiesonhorizontalfallingfilmabsorberusingwaterlithiumbromide |
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