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Compact climatization system for mechanical ventilation with heat recovery
Comunicación presentada en: XII Congreso Nacional y III Internacional de Ingeniería Termodinámica (12 CNIT), June 19- July 1, Madrid (Spain) ; Nearly zero energy (NZEB) or PASSIVHAUSS buildings are characterized by a very low energy consumption to meet the needs of air climatization (cooling and heating). Although in the design philosophy of these buildings, air conditioning and heating systems would be unnecessary, in some climatic regions, mainly due to user requirements, equipment such as geothermal or aerothermal heat pumps is usually installed. This type of house is conceived from the design stage to achieve high energy efficiency. The orientation of the building and distribution of windows and facades are studied in detail to reduce the building's energy demand by taking advantage of solar radiation in winter and avoiding overheating during summer. Another important aspect is the excellent insulation of the building envelope, reducing heat losses to the environment. ; The authors gratefully acknowledge the financial support provided by the Spanish Ministry of Science & Innovation under the I+D +i state program “Challenges Research Projects” (Ref. RTI2018-098900-B-I00). Diego Granados-López thanks grant PIRTU Program, ORDEN EDU/556/2019, for financial support.
Compact climatization system for mechanical ventilation with heat recovery
Comunicación presentada en: XII Congreso Nacional y III Internacional de Ingeniería Termodinámica (12 CNIT), June 19- July 1, Madrid (Spain) ; Nearly zero energy (NZEB) or PASSIVHAUSS buildings are characterized by a very low energy consumption to meet the needs of air climatization (cooling and heating). Although in the design philosophy of these buildings, air conditioning and heating systems would be unnecessary, in some climatic regions, mainly due to user requirements, equipment such as geothermal or aerothermal heat pumps is usually installed. This type of house is conceived from the design stage to achieve high energy efficiency. The orientation of the building and distribution of windows and facades are studied in detail to reduce the building's energy demand by taking advantage of solar radiation in winter and avoiding overheating during summer. Another important aspect is the excellent insulation of the building envelope, reducing heat losses to the environment. ; The authors gratefully acknowledge the financial support provided by the Spanish Ministry of Science & Innovation under the I+D +i state program “Challenges Research Projects” (Ref. RTI2018-098900-B-I00). Diego Granados-López thanks grant PIRTU Program, ORDEN EDU/556/2019, for financial support.
Compact climatization system for mechanical ventilation with heat recovery
González Peña, David (author) / García Fuente, Manuel (author) / Granados López, Diego (author) / Alonso Tristán, Cristina (author)
2022-01-01
Conference paper
Electronic Resource
English
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