Article ID Journal Published Year Pages File Type
1551259 Solar Energy 2010 9 Pages PDF
Abstract

A solar-assisted chemical heat-pump dryer has been designed, fabricated and tested. The performance of the system has been studied under the meteorological conditions of Malaysia. The system consists of four main components: solar collector (evacuated tubes type), storage tank, solid–gas chemical heat pump unit and dryer chamber. A solid–gas chemical heat pump unit consists of reactor, condenser and evaporator. The reaction used in this study (CaCl2–NH3). A simulation has been developed, and the predicted results are compared with those obtained from experiments. The maximum efficiency for evacuated tubes solar collector of 80% has been predicted against the maximum experiment of 74%. The maximum values of solar fraction from the simulation and experiment are 0.795 and 0.713, respectively, whereas the coefficient of performance of chemical heat pump (COPh) maximum values 2.2 and 2 are obtained from simulation and experiments, respectively. The results show that any reduction of energy at condenser as a result of the decrease in solar radiation will decrease the coefficient of performance of chemical heat pump as well as decrease the efficiency of drying.

Related Topics
Physical Sciences and Engineering Energy Renewable Energy, Sustainability and the Environment
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