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This paper presents a study of the dynamic behavior of a vapor compression heat pump for residential water heating.
The design and performance of a solar (and/or natural gas) powered adsorption (desiccant-vapor) heat pump for residential cooling (and heating) is described.
Air-source heat pumps for residential heating are more widely used than geothermal heat pumps mainly due to their lower installation costs.
Every day, water is trucked in from deep wells and then pumped into residential tanks.
The largest amount is for a $1-billion-a-year program that funds rebates and subsidies — on products including solar panels, industrial equipment and energy-efficient swimming pool pumps — for residential and commercial customers of utilities.
This development validates scalability and application of microscale heat exchanger technology for absorption heat pumps at residential-scale capacities.
This paper presents a research methodology for investigating the performance of multi-source heat pump systems in residential buildings in cold regions.
The compressor is intended to replace the conventional mechanical compressor in a CO2 heat pump for the residential heating or combined heat and power market.
To design a high efficiency magnetocaloric heat pump for the residential sector, we focused on the improvement of the performance of the regenerator bed.
A simulation study of hybrid solar-geothermal heat pump system for residential applications using carbon dioxide was carried out under different operating conditions.
These parameters form a technical triangle, which should be used as a comprehensive instrument to enable heat pump integration into residential district heating.
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