Experimental investigation on the improved cooling seasonal performance factor by recycling air flow energy from AC outdoor fans
Autor: | Lee Da-Sheng, Yen-Tang Chen |
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Rok vydání: | 2021 |
Předmět: |
Energy recycling
Fluid Flow and Transfer Processes Energy recovery Natural convection Improve CSPF business.industry Urban heat island Airflow Environmental engineering Energy consumption Engineering (General). Civil engineering (General) Turbine Recycle airflow Energy efficiency Air conditioning Environmental science TA1-2040 business AC outdoor fan Engineering (miscellaneous) Backflow |
Zdroj: | Case Studies in Thermal Engineering, Vol 28, Iss, Pp 101364-(2021) |
ISSN: | 2214-157X |
DOI: | 10.1016/j.csite.2021.101364 |
Popis: | Due to Taiwan's constant exposure to high humidity and high temperatures throughout the summer, the demand for air conditioning is immense. As a result, energy consumption is very high. For improving the energy consumption of air conditioners, the exhaust from the outdoor fan of the air conditioner is used to drive the wind-powered generator for energy recovery. The recovered energy can offset part of the power consumed by the air conditioner. The exhaust can also be guided upward by the generator to suppress the urban heat island effects. In addition, a numerical simulation was employed to assess various settings of the wind turbine for recovering kinetic energy. The cooling seasonal performance factor (CSPF) was used to evaluate the recovery efficiency. The method used discovered three points worth highlighting in the field of energy-saving research in air conditioning systems: 1. According to the optimized theoretical value, the CSPF value can be improved by approximately 5.9% using the method. 2. A device can prevent the backflow of air into the outdoor unit of an air conditioner to avoid reheating the exhaust that passed through the fins. 3. The device can channel airflow upward, triggering natural convection and reduce urban heat island effects. |
Databáze: | OpenAIRE |
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