© Michel Denancé
来自专筑编辑Brick的报道。法国国家测绘局(IGN)和法国气象局地球科学中心是重大的改建项目,将建于1980年的建筑改造成高效节能的大楼,其面积为15900平方米。
From the architect. The IGN and Météo France Geosciences centre: a major renovation operation permitting the transformation of a 1980’s block into a Very High Energy Performance (VHEP) building with a surface area of 15,900 m2.
© Michel Denancé
建筑事务所的工作集中于法国国家测绘局大楼B座,通过创建与A座共享的花园来展开。
The agency’s work concentrated on IGN’s B building, opening it out through the creation of a garden shared with building A.
Ground Floor Plan/一层平面图
© Michel Denancé
项目要求通过创建中央天井来保护体量。建筑事务所则进一步释放了大楼之间的空间,为新修缮的大楼创造了单一的实体。
The programme called for the conservation of the volumes through the creation of central patios. The agency went even further, freeing the space between the buildings and creating a single entity for the newly rehabilitated building.
© Michel Denancé
大楼最初包括办公室和工作间,还有一个救护站和公司餐厅,大楼通过合并新的便利设施而变得丰富,这些设施有多媒体图书馆、音乐室和运动场馆。
Initially comprising offices and workshops, as well as a first aid station and an inter-company restaurant, the building has been enriched through the incorporation of new amenities such as a multimedia library, a music room, and sports halls.
© Michel Denancé
© Michel Denancé
© Michel Denancé
© Michel Denancé
木构架立面增强了场地的特性,发展了与A座的渗透,同时通过特殊的比例确定了耐用性和创新性。
The timber framed façades reinforce the identity of the site, developing a certain osmosis with building A while simultaneously affirming its durable and innovative nature through its exceptional proportions.
Cross Section/横截面
这座建筑是高效节能的,满足最严格的环保性能标准。
It is a VHEP building able to meet the strictest environmental performance criteria.
© Michel Denancé
除了空间致密和立面协调,设计整合了所有涉及能量性能的方面:选择玻璃立面来满足热效和声学要求;热烟囱沿着大楼的长度设置,在夏天排出来自走廊的热空气,在冬天回收来自西南立面的热空气,重新分配到办公楼。
Apart from the spatial densification and harmonisation of the façade, the design work integrated all aspects linked to energy performance: façade glazing chosen to meet thermal and acoustic requirements; thermal stacks distributed over the length of the building to extract hot air from the corridors (summer) and recuperate hot air from the south and west façades for redistribution to the offices (winter).
© Michel Denancé
项目发展了很多补充的活动系统来丰富环境措施:地热的使用,从所有空气处理植物那里恢复能量,屋顶安装太阳能电池板,创建种植屋面来减少漏流并增加建筑的热惯性。
A large number of other complementary active systems have been developed to enrich this environmental approach: use of geothermal energy, recuperation of energy from all air handling plants, rooftop installation of solar panels and creation of a planted roof to reduce leakage flows and increase the building’s thermal inertia.
© Michel Denancé
Courtesy of Architecture Patrick Mauger
Courtesy of Architecture Patrick Mauger
Courtesy of Architecture Patrick Mauger
© Michel Denancé
© Michel Denancé
© Michel Denancé
© Michel Denancé
Type Floor Plan/平面图
Summer Diagram 1/夏季分析图
Winter Diagram 2/冬季分析图
Diagram 3/图解 3
Diagram 4/图解 4
Diagram 5/图解 5
Diagram Section 6/节点剖面图
© Michel Denancé
建筑设计:Architecture Patrick Mauger
项目位置:法国,圣芒代,巴黎大街
项目面积:15971.0平方米
项目时间:2014年
摄影:Michel Denancé, Courtesy of Architecture Patrick Mauger
立面工程:VS-A
总工程师:Setec Batiment
建筑测量:DAL
声学工程:A.V.L.S
景观设计:Sophie Barbaux
厨房设计:Conceptic’art
预算:3090万欧元
环境:Very High Energy Performance building (VHEP)
Architects: Architecture Patrick Mauger
Location: 75 Avenue de Paris, 94160 Saint-Mandé, France
Area: 15971.0 sqm
Year: 2014
Photographs: Michel Denancé, Courtesy of Architecture Patrick Mauger
Façade Engineers: VS-A
Generalist Engineers: Setec Batiment
Building Surveyor: DAL
Acoustic Engineers: A.V.L.S
Landscape Designer: Sophie Barbaux
Kitchen Design Engineers: Conceptic’art
Budget: 30.9 M€
Environmental Aspects: Very High Energy Performance building (VHEP)
出处:本文译自www.archdaily.com/,转载请注明出处。
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