Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Study on Energy Efficiency Characteristics of Ground Source Heat Pump with Coupled Evaporative Condensers in Different Regions

View through CrossRef
Geothermal resources are a type of green energy, primarily utilized in buildings for cooling and heating through heat pump systems. However, heat pump systems all face the challenges of high operating energy consumption and cost. In this study, in order to solve the problem of the high total energy consumption of compressors and pumps in traditional ground source heat pump systems, a new ground source heat pump system with coupled evaporative condensers (EC-GSHP) is proposed, and a calculation model was built to compare and analyze its comprehensive performance compared with a traditional ground source heat pump in different climate environments. It was concluded that in a region with balanced cooling and heating loads, the energy consumption was reduced by 48.48 kW, the cooling energy saving coefficient (CESC) was 21.09%, and the comprehensive coefficient of performance (COP) increased by 1.31. In a region where the total cooling load was greater than the total heating load, the energy consumption was reduced by 105.19 kW, the CESC was 22.98%, and the comprehensive COP increased by 1.49. In a region where the total heating load was greater than the total cooling load, the energy consumption was reduced by 47.77 kW, the CESC was 21.41%, and the comprehensive COP increased by 1.30. It can be seen that the cooling and energy saving performance of the EC-GSHP system is significantly better than that of a traditional GSHP.
Title: Study on Energy Efficiency Characteristics of Ground Source Heat Pump with Coupled Evaporative Condensers in Different Regions
Description:
Geothermal resources are a type of green energy, primarily utilized in buildings for cooling and heating through heat pump systems.
However, heat pump systems all face the challenges of high operating energy consumption and cost.
In this study, in order to solve the problem of the high total energy consumption of compressors and pumps in traditional ground source heat pump systems, a new ground source heat pump system with coupled evaporative condensers (EC-GSHP) is proposed, and a calculation model was built to compare and analyze its comprehensive performance compared with a traditional ground source heat pump in different climate environments.
It was concluded that in a region with balanced cooling and heating loads, the energy consumption was reduced by 48.
48 kW, the cooling energy saving coefficient (CESC) was 21.
09%, and the comprehensive coefficient of performance (COP) increased by 1.
31.
In a region where the total cooling load was greater than the total heating load, the energy consumption was reduced by 105.
19 kW, the CESC was 22.
98%, and the comprehensive COP increased by 1.
49.
In a region where the total heating load was greater than the total cooling load, the energy consumption was reduced by 47.
77 kW, the CESC was 21.
41%, and the comprehensive COP increased by 1.
30.
It can be seen that the cooling and energy saving performance of the EC-GSHP system is significantly better than that of a traditional GSHP.

Related Results

Thermal energy storage with tunnels in different subsurface conditions
Thermal energy storage with tunnels in different subsurface conditions
The widespread use of the underground and global climate change impact the urban subsurface temperature. Changes in the subsurface environment can affect the performance of undergr...
Experimental and Numerical Results on the Performance of a Heat Pump
Experimental and Numerical Results on the Performance of a Heat Pump
A 21 kW ground source heat pump (GSHP) operating since 2013 in Alaska is described in this paper. Six years of successful operation in an extreme climate and measured performance d...
Simulation and Economic Research of Circulating Cooling Water Waste Heat and Water Resource Recovery System
Simulation and Economic Research of Circulating Cooling Water Waste Heat and Water Resource Recovery System
Industrial circulating cooling water contains a large amount of low-quality energy, which is lost to the environment through cooling towers. It is of great significance and potenti...
Incorporating phase change materials in geothermal energy piles for thermal energy storage
Incorporating phase change materials in geothermal energy piles for thermal energy storage
Introduction Geothermal energy piles (GEPs) are foundation elements that are installed in the ground to support the weight of the building to a competent strata. Energy loops...
Thermal performance of energy barrettes in an urban environment
Thermal performance of energy barrettes in an urban environment
Energy geostructures are renewable heating and cooling technologies that promise to massively decarbonize buildings with other shallow geothermal heat exchangers. However, the perf...
IMPLEMENTATION OF A HYBRID INTERMITTENT HEAT SUPPLY SYSTEM FOR EDUCATIONAL INSTITUTIONS
IMPLEMENTATION OF A HYBRID INTERMITTENT HEAT SUPPLY SYSTEM FOR EDUCATIONAL INSTITUTIONS
The experience of introducing a hybrid intermittent heating system for educational institutions is presented. The analysis of theoretical and experimental research, modern energy t...
Effect of ocean heat flux on Titan's topography and tectonic stresses
Effect of ocean heat flux on Titan's topography and tectonic stresses
INTRODUCTIONThe thermo-mechanical evolution of Titan's ice shell is primarily controlled by the mode of the heat transfer in the ice shell and the amount of heat coming from the oc...

Back to Top