ASHRAE LV-11-C054
A Parametric Study for Integrated Design Optimization of Low-Energy Buildings
Year: 2011
Abstract: ABSTRACT
Beyond a low-energy and low-exergy building concept, the mechanical system that converts energy resources to useful mechanical power and HVAC functions need to be optimized for maximum efficiency with minimum energy waste and exergy destruction. This paper provides a new analytical algorithm, which optimizes the CHP, absorption chiller, heat pump, alternative energy and power systems like wind and solar, TES, PES, and HVAC terminal unit combinations and capacities for a given building. A case study is presented for several mechanical system scenarios. Results show that lower CO2 impact buildings are possible even when fossil fuels are used.
Beyond a low-energy and low-exergy building concept, the mechanical system that converts energy resources to useful mechanical power and HVAC functions need to be optimized for maximum efficiency with minimum energy waste and exergy destruction. This paper provides a new analytical algorithm, which optimizes the CHP, absorption chiller, heat pump, alternative energy and power systems like wind and solar, TES, PES, and HVAC terminal unit combinations and capacities for a given building. A case study is presented for several mechanical system scenarios. Results show that lower CO2 impact buildings are possible even when fossil fuels are used.
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ASHRAE LV-11-C054
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| contributor author | ASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc. | |
| date accessioned | 2017-09-04T17:51:38Z | |
| date available | 2017-09-04T17:51:38Z | |
| date copyright | 01/01/2011 | |
| date issued | 2011 | |
| identifier other | EZXTKEAAAAAAAAAA.pdf | |
| identifier uri | https://yse.yabesh.ir/std/handle/yse/174855 | |
| description abstract | ABSTRACT Beyond a low-energy and low-exergy building concept, the mechanical system that converts energy resources to useful mechanical power and HVAC functions need to be optimized for maximum efficiency with minimum energy waste and exergy destruction. This paper provides a new analytical algorithm, which optimizes the CHP, absorption chiller, heat pump, alternative energy and power systems like wind and solar, TES, PES, and HVAC terminal unit combinations and capacities for a given building. A case study is presented for several mechanical system scenarios. Results show that lower CO2 impact buildings are possible even when fossil fuels are used. | |
| language | English | |
| title | ASHRAE LV-11-C054 | num |
| title | A Parametric Study for Integrated Design Optimization of Low-Energy Buildings | en |
| type | standard | |
| page | 8 | |
| status | Active | |
| tree | ASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.:;2011 | |
| contenttype | fulltext |

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