Simulation of a high efficiency multi-bed adsorption heat pump.
Author(s) : TEGROTENHUIS W. E., HUMBLE P. H., SWEENEY J. B.
Type of article: Article
Summary
Attaining high energy efficiency with adsorption heat pumps is challenging due to thermodynamic losses that occur when the sorbent beds are thermally cycled without effective heat recuperation. The multibed concept described here enables high efficiency by effectively transferring heat from beds being cooled to beds being heated. A simplified lumped-parameter model and detailed finite element analysis are used to simulate a sorption compressor, which is used to project the overall heat pump coefficient of performance. Results are presented for ammonia refrigerant and a nano-structured monolithic carbon sorbent specifically modified for the application. The effects of bed geometry and number of beds on system performance are explored, and the majority of the performance benefit is obtained with four beds. Results indicate that a COP of 1.24 based on heat input is feasible at AHRI standard test conditions for residential HVAC equipment. When compared on a basis of primary energy input, performance equivalent to SEER 13 or 14 are theoretically attainable with this system. [Reprinted with permission of Elsevier. Copyright 2012.]
Details
- Original title: Simulation of a high efficiency multi-bed adsorption heat pump.
- Record ID : 30003696
- Languages: English
- Source: Applied Thermal Engineering - vol. 37
- Publication date: 2012/05
- DOI: http://dx.doi.org/10.1016/j.applthermaleng.2011.11.012
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