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Title: Study of optimal sizing for residential sorption heat pump system

Abstract

Gas-driven sorption heat pumps (GDSHP) show significant potential to reduce primary energy use, associated emissions and energy costs for space heating and domestic hot water production in residential applications. This study considered a bivalent heating system consisting of a sorption heat pump and a condensing boiler, and focuses on the optimal heating capacity of each of these components relative to each other. Two bivalent systems were considered: one based on a solid chemisorption cycle (GDSHPA), and one based on a resorption cycle (GDSHPB). Simulations of year-round space heating loads for two single-family houses, one in New York and the other Minnesota, were carried out and the seasonal gas coefficient of performance (SGCOP) calculated. The sorption heat pump’s design heating capacity as a fraction of the bivalent system’s total heating capacity was varied from 0 to 100%. Results show that SGCOP was effectively constant for sorption heat pump design capacity greater than 41% of the peak bivalent GDSHPA design capacity in Minnesota, and 32% for GDSHPB. In New York, these values were 42% and 34% for GDSHPA and GDSHPB respectively. The payback period was also evaluated based on postulated sorption heat pump component costs. The fastest payback was achieved with sorptionmore » heat pump design capacity between 22 and 44%.« less

Authors:
 [1];  [2]; ORCiD logo [2];  [3]
  1. SaltX Technology, Stockholm (Sweden); Dalarna Univ., Borlange (Sweden); Mälardalen Univ., Västerås (Sweden)
  2. Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States)
  3. Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States); Purdue Univ., West Lafayette, IN (United States)
Publication Date:
Research Org.:
Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)
Sponsoring Org.:
USDOE Office of Energy Efficiency and Renewable Energy (EERE)
OSTI Identifier:
1502521
Grant/Contract Number:  
AC05-00OR22725
Resource Type:
Accepted Manuscript
Journal Name:
Applied Thermal Engineering
Additional Journal Information:
Journal Volume: 150; Journal Issue: C; Journal ID: ISSN 1359-4311
Publisher:
Elsevier
Country of Publication:
United States
Language:
English
Subject:
42 ENGINEERING

Citation Formats

Blackman, Corey, Gluesenkamp, Kyle R., Malhotra, Mini, and Yang, Zhiyao. Study of optimal sizing for residential sorption heat pump system. United States: N. p., 2019. Web. doi:10.1016/j.applthermaleng.2018.12.151.
Blackman, Corey, Gluesenkamp, Kyle R., Malhotra, Mini, & Yang, Zhiyao. Study of optimal sizing for residential sorption heat pump system. United States. https://doi.org/10.1016/j.applthermaleng.2018.12.151
Blackman, Corey, Gluesenkamp, Kyle R., Malhotra, Mini, and Yang, Zhiyao. Fri . "Study of optimal sizing for residential sorption heat pump system". United States. https://doi.org/10.1016/j.applthermaleng.2018.12.151. https://www.osti.gov/servlets/purl/1502521.
@article{osti_1502521,
title = {Study of optimal sizing for residential sorption heat pump system},
author = {Blackman, Corey and Gluesenkamp, Kyle R. and Malhotra, Mini and Yang, Zhiyao},
abstractNote = {Gas-driven sorption heat pumps (GDSHP) show significant potential to reduce primary energy use, associated emissions and energy costs for space heating and domestic hot water production in residential applications. This study considered a bivalent heating system consisting of a sorption heat pump and a condensing boiler, and focuses on the optimal heating capacity of each of these components relative to each other. Two bivalent systems were considered: one based on a solid chemisorption cycle (GDSHPA), and one based on a resorption cycle (GDSHPB). Simulations of year-round space heating loads for two single-family houses, one in New York and the other Minnesota, were carried out and the seasonal gas coefficient of performance (SGCOP) calculated. The sorption heat pump’s design heating capacity as a fraction of the bivalent system’s total heating capacity was varied from 0 to 100%. Results show that SGCOP was effectively constant for sorption heat pump design capacity greater than 41% of the peak bivalent GDSHPA design capacity in Minnesota, and 32% for GDSHPB. In New York, these values were 42% and 34% for GDSHPA and GDSHPB respectively. The payback period was also evaluated based on postulated sorption heat pump component costs. The fastest payback was achieved with sorption heat pump design capacity between 22 and 44%.},
doi = {10.1016/j.applthermaleng.2018.12.151},
journal = {Applied Thermal Engineering},
number = C,
volume = 150,
place = {United States},
year = {Fri Jan 04 00:00:00 EST 2019},
month = {Fri Jan 04 00:00:00 EST 2019}
}

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Works referenced in this record:

Modelling and experimental analysis of a GAX NH 3 –H 2 O gas-driven absorption heat pump
journal, June 2016


Experimental study of gas engine driven air to water heat pump in cooling mode
journal, June 2010


Ground-source pump system for heating and cooling: Review and thermodynamic approach
journal, April 2017

  • Lucia, Umberto; Simonetti, Marco; Chiesa, Giacomo
  • Renewable and Sustainable Energy Reviews, Vol. 70
  • DOI: 10.1016/j.rser.2016.11.268

Techno-economic review of solar heat pump systems for residential heating applications
journal, January 2018

  • Poppi, Stefano; Sommerfeldt, Nelson; Bales, Chris
  • Renewable and Sustainable Energy Reviews, Vol. 81
  • DOI: 10.1016/j.rser.2017.07.041

Absorption heating technologies: A review and perspective
journal, October 2014


A method for the choice of the optimal balance-point temperature of air-to-water heat pumps for heating
journal, July 2014


Seasonal performance evaluation of electric air-to-water heat pump systems
journal, November 2015


Sizing effects on the energy performance of reversible air-source heat pumps for office buildings
journal, March 2017


Sizing strategy of on–off and modulating heat pump systems based on annual energy analysis
journal, May 2016


Annual simulation, energy and economic analysis of hybrid heat pump systems for residential buildings
journal, April 2016


Capacity control in air–water heat pumps: Total cost of ownership analysis
journal, October 2014


Energy and economic analysis of different heat pump systems for space heating
journal, March 2012

  • Busato, Filippo; Lazzarin, Renato M.; Noro, Marco
  • International Journal of Low-Carbon Technologies, Vol. 7, Issue 2
  • DOI: 10.1093/ijlct/cts016

Cost optimal analysis of heat pump technology adoption in residential reference buildings
journal, December 2013


Experimental evaluation of a novel absorption heat pump module for solar cooling applications
journal, March 2015


Advanced solid sorption air conditioning modules using monolithic carbon–ammonia pair
journal, April 2003


Preliminary experimental characterization of a three-phase absorption heat pump
journal, May 2013


Working pairs for resorption refrigerator
journal, October 2011


Techno-economic feasibility of high-temperature high-lift chemical heat pumps for upgrading industrial waste heat
journal, October 2002


Ultra-low-emission steam boiler constituted of reciprocal flow porous burner
journal, April 2011


Condensing boilers in buildings and plants refurbishment
journal, April 2012


Users Manual for TMY3 Data Sets (Revised)
report, May 2008


Investigation on non-equilibrium performance of composite adsorbent for resorption refrigeration
journal, July 2016


Performance of a resorption cycle for recovering the waste heat from vehicles
journal, January 2015