passive cooling of buildings in warm climates by means of the barra-costantini system: thermal dynamics and performance evaluations. g. cammarata l. marietta f. patanè f.
The improvement of the Barra-Costantini system allows to produce heat and electricity. • Internal solar gains are taken into consideration by calculating the sunspot area. •
The improvement of the Barra-Costantini system allows to produce heat and electricity. • Internal solar gains are taken into consideration by calculating the sunspot area. • The conventional Barra-Costantini system gives an air temperature of 22.9 °C, while systems with glazed semi-transparent PV and semi-transparent PV produce
passive cooling of buildings in warm climates by means of the barra-costantini system: thermal dynamics and performance evaluations. g. cammarata l. marietta f. patanè f. patania
This work is a study of the passive solar heating system developed by Barra and Costantini. It aims at showing the adaptability of the Barra–Costantini system to Algerian climatic conditions. It is centred on three principal topics: Thermal comfort (interior room and different surface temperatures) value and variation, energy savings achieved
The conventional Barra-Costantini system gives an internal air temperature of 22.9 °C, while systems with glazed semi-transparent PV and semi-transparent PV only produce temperatures of 22.6 °C and 21.5 °C, respectively.
The design and building processes of 40 solar passive flats in Marostica (Vicenza, Northen Italy) gave the opportunity to develop a mass produced low-cost passive component, the
The "Barra-Costantini" system, the first prototype of a passive solar system with solar collectors applied on the façade, is born from the study to overcome these difficulties.
本文研究的 Barra-Costantini (BC) 系统是 TM 墙的一种替代方案。 然而,目前对于这两种被动太阳能系统的性能比较研究较少,因此需要进一步探索其性能差异。
The conventional Barra-Costantini system gives an internal air temperature of 22.9 °C, while systems with glazed semi-transparent PV and semi-transparent PV only produce temperatures
本文的目的是使用建筑物集成的半透明光伏技术对Barra-Costantini系统的两个新配置进行数值研究。 每种配置都集成到位于阿尔及利亚Ksar Chalala的房间中。
This work is a study of the passive solar heating system developed by Barra and Costantini. It aims at showing the adaptability of the Barra–Costantini system to Algerian
The conventional Barra-Costantini system gives an internal air temperature of 22.9 °C, while systems with glazed semi-transparent PV and semi-transparent PV only produce temperatures
systems in this category are: Sky-Therm, earth-air tunnel, the Silvestrini Bell, and the Barra–Costantini System, which are applicable in composite climates. Large areas of Central and Northern India have a
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