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Absorption heat pump for space applicationsIn the first part, the performance of the Absorption Heat Pump (AHP) with water-sulfuric acid and water-magnesium chloride as two new refrigerant-absorbent fluid pairs was investigated. A model was proposed for the analysis of the new working pairs in a heat pump system, subject to different temperature lifts. Computer codes were developed to calculate the Coefficient of Performance (COP) of the system with the thermodynamic properties of the working fluids obtained from the literature. The study shows the potential of water-sulfuric acid as a satisfactory replacement for water-lithium bromide in the targeted temperature range. The performance of the AHP using water-magnesium chloride as refrigerant-absorbent pair does not compare well with those obtained using water-lithium bromide. The second part concentrated on the design and testing of a simple ElectroHydrodynamic (EHD) Pump. A theoretical design model based on continuum electromechanics was analyzed to predict the performance characteristics of the EHD pump to circulate the fluid in the absorption heat pump. A numerical method of solving the governing equations was established to predict the velocity profile, pressure - flow rate relationship and efficiency of the pump. The predicted operational characteristics of the EHD pump is comparable to that of turbomachinery hardware; however, the overall efficiency of the electromagnetic pump is much lower. An experimental investigation to verify the numerical results was conducted. The pressure - flow rate performance characteristics and overall efficiency of the pump obtained experimentally agree well with the theoretical model.
Document ID
19940015593
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Nguyen, Tuan
(Lamar Univ. Beaumont, TX, United States)
Simon, William E.
(Lamar Univ. Beaumont, TX, United States)
Warrier, Gopinath R.
(Lamar Univ. Beaumont, TX, United States)
Woramontri, Woranun
(Lamar Univ. Beaumont, TX, United States)
Date Acquired
September 6, 2013
Publication Date
December 1, 1993
Subject Category
Energy Production And Conversion
Report/Patent Number
NAS 1.26:194693
NASA-CR-194693
Accession Number
94N20066
Funding Number(s)
CONTRACT_GRANT: NAG9-613
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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