Research on the design of prefabricated curved structure production capacity residential energy system: a case study of an entry of 2022 china international solar decathlon competition- `solar ark 3.0`
HIGHLIGHTS
- What: This study proposes the wind and solar complementary capacity design multi-mode energy storage design intelligent energy use design and production storage and use of multi-energy complementary intelligent energy management methods through the exploration of the integrated design and construction of curved structure housing and energy system.
- Who: Chao Zhou from the ‘Solar Ark, `, the entry of Southeast University United Team in the Third China International Solar Decathlon Competition (SDC2022), as an example. This study proposes the wind and solar complementary capacity design, multi-mode have published the article: Research on the design of prefabricated curved structure production capacity residential energy system: a case study of an entry of 2022 China International Solar Decathlon Competition- `Solar Ark 3.0`, in the Journal: (JOURNAL)
SUMMARY
The method to effectively utilize renewable energy in building design has become one of the important methods to reduce building energy consumption and carbon emissions. The utilization of renewable energy in buildings mainly includes solar energy systems, ground source heat pump systems, and air source heat pump systems (Aziz et_al, 2023). Although, there are still some problems with the renewable energy system in buildings, which includes low utilization rate of renewable energy, single form of energy system and low degree of integration with buildings. The photovoltaic system and wind power generation system can realize centralized capacity during the daytime; and the wind power generation system can generate at night and in extreme weather. Compared with a single energy system, the multi-energy system has more advantages, which can realize the complementary energy production mode and maximize the annual energy capacity of the building. And the equipment can be turned on and off and power regulation through the combination of the smart Bluetooth positioning sensor system and the energy system control software, which aims to better behavioral energy saving management (Wang at el., 2024). The `Solar Ark 3.0` team explored the integrated design of energy systems and curved structure buildings. In terms of energy storage, the energy system supports multiple modes of operation and can successfully achieve off grid operation under non extreme weather conditions. The team combined selfdeveloped software systems with Bluetooth positioning technology to achieve energy-saving control of energy consumption within the building. The `Solar Ark 3.0` provided practical case studies on the design, storage, and management of energy systems for curved buildings. @@
Licence: cc-by
Site reference: https://link.springer.com/content/pdf/10.1007/s44223-024-00079-8.pdf
DOI reference: https://www.doi.org/10.1007/s44223-024-00079-8
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