TY - JOUR
T1 - In-situ performance test and simulation of an air source heat pump
AU - Baik, Young Jin
AU - Chang, Young Soo
AU - Kim, Youngil
PY - 2000/11
Y1 - 2000/11
N2 - In this study, in-situ performance test of a 20 RT (70 kW) air-to-air heat pump which has a feature of recovering ventilation energy is carried out. Since test conditions such as indoor and outdoor air conditions cannot be controlled to satisfy the standard test conditions, experiments are done with the inlet air conditions as they exist. From the experimental data obtained with the non-standard test conditions, simulation program is developed to estimate the performance of standard test conditions. The map-based compressor model, ε-NTU method with the assumption of refrigerant-side mixed and air-side unmixed and necessary parameters determined from the measurements are used. From the simulation, performance of a large capacity air source heat pump for various conditions and effects of ventilation are calculated. This study provides method of predicting the performance of air source heat pumps in which in-situ performance test is necessary.
AB - In this study, in-situ performance test of a 20 RT (70 kW) air-to-air heat pump which has a feature of recovering ventilation energy is carried out. Since test conditions such as indoor and outdoor air conditions cannot be controlled to satisfy the standard test conditions, experiments are done with the inlet air conditions as they exist. From the experimental data obtained with the non-standard test conditions, simulation program is developed to estimate the performance of standard test conditions. The map-based compressor model, ε-NTU method with the assumption of refrigerant-side mixed and air-side unmixed and necessary parameters determined from the measurements are used. From the simulation, performance of a large capacity air source heat pump for various conditions and effects of ventilation are calculated. This study provides method of predicting the performance of air source heat pumps in which in-situ performance test is necessary.
UR - https://www.scopus.com/pages/publications/0034313668
U2 - 10.1299/jsmeb.43.628
DO - 10.1299/jsmeb.43.628
M3 - Article
AN - SCOPUS:0034313668
SN - 1340-8054
VL - 43
SP - 628
EP - 633
JO - JSME International Journal, Series B: Fluids and Thermal Engineering
JF - JSME International Journal, Series B: Fluids and Thermal Engineering
IS - 4
ER -