2019
DOI: 10.3390/en12203883
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Feasibility Analysis and Performance Evaluation and Optimization of a DXSAHP Water Heater Based on the Thermal Capacity of the System: A Case Study

Abstract: The present work conducts an evaluation of the feasibility and the overall performance and consequent optimization of a direct expansion solar assisted heat pump (DXSAHP) employed for domestic water heating. For the study conducted R134a, R404A, R407C and R410A working fluids were evaluated as well as the use of four, six and eight flat-plate solar collectors and a worktime ranging from 1 to 6 h. The case study is based in Mexico City with a 300 L container and a hot water outlet temperature of 51 °C. The pape… Show more

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Cited by 6 publications
(3 citation statements)
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“…Technoeconomic analysis was also performed to optimize the components’ design and selection and to define the feasibility of these HPs at system level. In De León‐Ruiz et al, [ 45 ] genetic algorithms and artificial neural networks are used for a multiobjective optimization. Parameters used for the optimization include the number of solar collectors and different working fluids.…”
Section: Solar‐coupled Vapor‐compression Heat Pumps For Space Heating...mentioning
confidence: 99%
“…Technoeconomic analysis was also performed to optimize the components’ design and selection and to define the feasibility of these HPs at system level. In De León‐Ruiz et al, [ 45 ] genetic algorithms and artificial neural networks are used for a multiobjective optimization. Parameters used for the optimization include the number of solar collectors and different working fluids.…”
Section: Solar‐coupled Vapor‐compression Heat Pumps For Space Heating...mentioning
confidence: 99%
“…Kong et al, 2020 [35] practically checked the performance of DX-SAHP system with R290 refrigerant and concludes that the 200L of water gets heat up from 15.3℃ to 54.9℃ and the COP of the system is 2.12-4.43 in the presence of 592 Wm -2 average solar radiation with wind speed of 1.15ms -1 . Lean-Ruiz et al, 2019 [36] practically checked the performance of different refrigerant and resulted that R134a takes 0.402 kW of compressing effort, which is 62% less than R410A, which needs 1.06 kW, As a result, R134a has the greatest COP, ranging from 7 to 14, then by R407C and R404A coolants, which have similar behavior, with COP range from 5 to 9 and 4 to 8, correspondingly, and lastly R410A, which has the lowest COP, range from 3.5 to 6.5. Furthermore, it was discovered that R134a has a greater dispersion in terms of energy exchange rate, indicating that it is the liquid most subject to external conditions such as weather.…”
Section: Refrigerantmentioning
confidence: 99%
“…It also exhibits good performance and safety levels [20]. Additionally, R134a refrigerant boasts a higher Coefficient of Performance (COP) than other refrigerants [21,22].…”
Section: Introductionmentioning
confidence: 99%