{"title":"TRC Precast Façade SANDWICH Panel For Energy Retrofitting Of Existing Buildings","authors":"I. Colombo, M. Colombo, M. Prisco","doi":"10.14359/51688590","DOIUrl":null,"url":null,"abstract":"Residential and commercial buildings are responsible of a large energy consumption, both for the heating in winter and the air conditioning in summer. Standards have introduced severe limits to guarantee the energy saving in new buildings; however, there is a significant need of retrofitting existing buildings, because of their large impact on the real estate in continents like Europe. In the framework of a FP7 European project, a multilayer prefabricated façade panel is proposed as an outdoor solution. It is characterized by an internal EPS layer, 100 mm thick and by two external layers made of textile reinforced concrete (TRC), 12 mm thick. The insulating material is also used to transfer the shear between the external TRC layers. The maximum size of the panel is 1.50 x 3.30 m; the panel height is properly chosen in order to fasten it to the frame concrete beams. In the paper the design of the panel and the results of tests performed on full scale panels are resumed. The panels were punctually fastened on the corners through suitable anchors and were loaded by means of a distributed load (considering wind pressure and suction as the main load acting on the panel). The panels were also tested according to a 4 point-bending set-up up to collapse to check their ultimate limit state on full-size prototypes.","PeriodicalId":265581,"journal":{"name":"SP-305: Durability and Sustainability of Concrete Structures","volume":"10 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2015-09-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"4","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"SP-305: Durability and Sustainability of Concrete Structures","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.14359/51688590","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 4
Abstract
Residential and commercial buildings are responsible of a large energy consumption, both for the heating in winter and the air conditioning in summer. Standards have introduced severe limits to guarantee the energy saving in new buildings; however, there is a significant need of retrofitting existing buildings, because of their large impact on the real estate in continents like Europe. In the framework of a FP7 European project, a multilayer prefabricated façade panel is proposed as an outdoor solution. It is characterized by an internal EPS layer, 100 mm thick and by two external layers made of textile reinforced concrete (TRC), 12 mm thick. The insulating material is also used to transfer the shear between the external TRC layers. The maximum size of the panel is 1.50 x 3.30 m; the panel height is properly chosen in order to fasten it to the frame concrete beams. In the paper the design of the panel and the results of tests performed on full scale panels are resumed. The panels were punctually fastened on the corners through suitable anchors and were loaded by means of a distributed load (considering wind pressure and suction as the main load acting on the panel). The panels were also tested according to a 4 point-bending set-up up to collapse to check their ultimate limit state on full-size prototypes.
住宅和商业建筑消耗了大量的能源,无论是冬季的供暖还是夏季的空调。标准对新建筑的节能进行了严格的限制;然而,由于现有建筑对欧洲等大陆的房地产产生了巨大影响,因此对现有建筑进行改造的需求非常大。在FP7欧洲项目的框架下,提出了多层预制面板作为室外解决方案。它的特点是内部有一层100毫米厚的EPS层,外部有两层12毫米厚的纺织钢筋混凝土(TRC)。绝缘材料也用于传递外部TRC层之间的剪切。面板的最大尺寸为1.50 x 3.30 m;面板高度选择适当,以便将其固定在框架混凝土梁上。本文介绍了面板的设计和在全尺寸面板上进行的试验结果。面板通过合适的锚点固定在角落上,并通过分布荷载(考虑风压和吸力作为作用在面板上的主要荷载)进行加载。面板还根据4点弯曲设置进行了测试,直到崩溃,以检查其在全尺寸原型上的极限状态。