유엔스튜디오는 이야기 합니다. 그릇에 담길 내용물에 따라 그릇의 형태와 볼륨은 변화합니다.
국물을 넓은 접시에 담지 못하듯이 지난 세기의 획일화된 오피스 타입은
급격히 변화하는 현대사회의 다양한 작업환경에 대응하기에 많이 부족해 보입니다.
여기 천편일률적인 사무실에 새로운 오피스빌딩 타입을 제안합니다.
버츄얼 엔지니어링 센터 오피스는 건축을 구획하는 볼륨 그리고 볼륨을
지지하는 구조를 통합하는 유기적인 공간을 디자인 합니다.
이러한 새로운 오피스 타입의 제안은 건축요소인 솔리드와 보이드를 이용한
통합적인 디자인에서 시작되며 회사에서 요구하는 다양한 프로그램을
비획일화되는 작업환경에 대응하도록 계획 됩니다.
특히 원형 파사드에 디자인 된 톱니형태의 연속적인 띠창은
내부의 연속적인 뷰포인트를 확보하는 동시에 이번 오피스빌딩의
캐릭터를 정의하는 중요한 수단으로 사용됩니다.
이렇게 곡선과 직선을 넘나드는 다양한 볼륨의 결합은
공간의 다양성을 보장하는 동시에 진일보된 오피스의 새로운 타입으로 정의됩니다.
reviewed by SJ
Contemporary companies, particularly those in the creative industries,
are bringing about substantial change in the ways in which we work
today. They are fully embracing changes which promote and stimulate
creative work processes through communication, experimentation and new
forms of collaboration. There is an understanding that – alongside ever
improving connections to external information resources – encouraging
communication and knowledge sharing within individual companies
increases the potential for more creative and experimental approaches to
work. This results in a better understanding of the potential for the
optimal organisation of human resources and in turn, a workforce that is
stimulated to play an essential part in the creation of improved
output.
Architects: UNStudio
Location: Stuttgart, Germany
Design Team: Ben van Berkel
Proyect Year: 2012
Photographs: Christian Richters
Project Area: 5.782 m2
Building Volume: 27.221 m3
This understanding is no longer limited to the creative industries alone
however. As one of the most important internationally operating
research institutes in the world, the Fraunhofer Institute requires a
building which not only accommodates and reflects the work it carries
out, but also stimulates its workforce and encourages new working
methodologies.
UNStudio’s design response is to apply its research into the potential
to expand contemporary understandings of new working environments into a
wider arena and thereby affect a design approach that creates working
environments which stimulate communication, experimentation and
creativity through a new type of office building. The the Centre for
Virtual Engineering ZVE becomes a prototype building; one which not only
incorporates a fully inclusive approach to sustainability, but which
also provides an example of the role that architecture can play in the
working environments of the future.
All parts of the programme were implemented into the spatial
organisation of the building. The diagrammatic approach employed
combines the laboratory and research functions with the public
exhibition areas and a scenographic routing of the visitors into an open
and communicative building concept. The different working areas are
distributed with regard to the needs of the employees. There are no
spatially separated departments along the band of laboratories. Instead,
working areas merge into each other, promoting interdisciplinary work
practices.
The scenographic visitors routing is also an essential element of the design. Visitors move from the multimedia entrance hall, up the stairs which diagonally cross the atrium. The stairs serve as a guiding line which is emphasised by the addition of a bright colour concept. Colour is used both in the facade and interior to distinguish the various programmatic elements, such as offices or laboratories. On the stairs a gradient is used to further aid in way-finding. In this way, not only a space of communication emerges but also an interface for visitors and employees. Returning to the starting point, the Virtual Reality area forms the highlight of the visitor tour.
Construction and design elements are integrated within a coherent
structure with open and closed elements. The geometry of the floor plan,
consisting of curved and straight elements, dissolves into the saw
tooth geometry of the facade whilst maintaining the effect of a
continuously transforming surface.
Gold certification from the DGNB (German Sustainable Building Council)
An exceptional level of sustainability was a key consideration from
the outset. The building structure partially consists of bubble deck
ceilings, providing both an economical alternative to the more commonly
used concrete ceilings and reduction in weight, allowing for column free
spaces. Enhanced technical elements are also integrated into the
structure: concrete core activation, false floors and the arrangement of
the sprinkler tubes within the false floors minimises the amount of
visible installations whilst maintaining their flexibility. The air
supply to the deeper areas also occurs partly through air channels
within the false floor. Air extraction occurs within the shafts.
The plot for the Centre for Virtual Engineering ZVE has been used to its
maximum in terms of development potential. The rounded shape and
optimised building envelope provides a 7% smaller contour than that of a
rectangular form of the same area. This also results in a better facade
area to volume ratio. The amount of glass facade is only 32%. All
spaces along the facade can be ventilated directly by operable window
elements. Ceilings without any lintels make it possible for daylight to
reflect deep into the spaces, which are additionally supported by
daylight lamellas while the sun screens are down. All installations are
located within accessible shafts. Low maintenance, separable, and
recyclable materials have been used for the skeleton as well as for the
interior and facade construction. The Centre for Virtual Engineering ZVE
building has been awarded a Gold certification by the DGNB.
from archdaily
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