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Showing posts with label Zaha Hadid. Show all posts
Showing posts with label Zaha Hadid. Show all posts

Friday, October 30, 2015

Zaha Hadid Design Project 1000 Museum In Miami Beach, usa

Project Designer 1000 Museum In Miami Beach : Zaha Hadid .

project site Miami Beach, usa .
Date 2012 - tbc .
Status Under Construction .
Project 1000 Museum In Miami Beach
Project 1000 Museum In Miami Beach

Architect 
Design Zaha Hadid and Patrik Schumacher.
Project Director Chris Lépine,
Project Team Alessio Constantino, 
Martin Pfleger, Oliver Bray, Theodor WenderIrena Predalic, Celina Auterio, Carlota Boyer.
Competiton Team Sam Saffarian, Eva Tiedemann, Brandon Gehrke, Cynthia DuGrace Chung, Aurora Santan, Olga Yatsyuk .
Consultants Local Architect O’Donnell Dannwolf Partners
Structural DeSimone 
MEP HNGS Consulting Engineers
Civil Terra Civil Engineering
Landscape Enea Garden Design
Fire Protection SLS Consulting Inc
Vertical Transportation Lerch Bates Inc
Wind Tunnel Consultant RWDI
Project Data Height 709 ft, Gross Area 911,027 sq ft, Levels: 66, Townhouse Units: 4, Half Floor Units: 70, Full Floor Units: 8, Penthouse: 1, Parking Spaces: 260.

Zaha Hadid Design Project 1000 Museum In Miami Beach, usa
Project 1000 Museum In Miami Beach
For an architect who occupies a Z-dimension all her own, Zaha Hadid, Hon. FAIA, has seldom constructed high along that Z axis.
She has built many multi-level and midrise institutional buildings, but very few towers. That is about to change with the on One Thousand Museum, a 66-story, 83-unit, super-luxury condominium tower on Biscayne Boulevard in Miami, opposite Museum Park, with views across Biscayne Bay to Miami Beach.
The project is no less Zaha at this unprecedented scale. A concrete exoskeleton structures the perimeter of
the tower in a web of flowing lines that integrates lateral bracing within the lines of structural support. Columnar lines near the base splay out to meet at the corners, forming a rigid tube highly resistant to Miami’s demanding wind loads.

Zaha Hadid Design Project 1000 Museum In Miami Beach, usa
Project 1000 Museum In Miami Beach
With structure at the perimeter, the interior floor plates are almost column free, allowing maximum variation in floor plans. The bottom two-thirds of the tower has two units per floor, while the upper third boasts units that occupy the entire floor. The moving, curving lines of the exoskeleton mean that each succeeding floor plan is slightly different from the last. On the lower floors, terraces occupy the corners; on the upper floors, the terraces are tucked in from the edges.
A duplex penthouse occupies the last two residential floors. The final floor features an aquatic center, leisure area, and event space.
There is commercial space at the base, along with several stories of parking. At grade, the tower is ringed by pools and gardens. 
Zaha Hadid Architects project director Chris Lepine says that the structure—which appears as if it were eroded from a solid reads from top to bottom as one continuous liquid frame.

Project 1000 Museum In Miami Beach
Project 1000 Museum In Miami Beach
The tower represents a line of research in high-rise construction that explores a fluid architectural expression consistent with engineering for the entire height of the structure. The emphasis is on expressing the dynamism of the structure in an integrated whole that avoids the frequent typology of a tower resting on a base.
Lepine points out that while the architects have worked to express the structure and its beauty within a tall, slender tower, the structure itself is “purposeful” in that it is rigid, stiff, and hurricane resistant. It's not a diagrid structure but its curving lines allow a diagonal bracketing action. “We had this idea of a fluidity that is both structural and architectural,” Lepine says.

perspective Project 1000 Museum, Zaha Hadid
perspective Project 1000 Museum, Zaha Hadid 
Instead of simply cladding a steel frame, the architects are designing expressive form-work, which can be reused as construction progresses up the tower. The concrete will be painted so that its finished surface is also the architectural finish. “A lot of innovation comes in how we build the form work. We’re looking at several solutions,” continues Lepine. Behind the exoskeleton, the architects have created a folded, faceted, crystallike façade to contrast with the solidity of the exoskeleton. The dependable Miami sun will create plays of light on the glass within the structural frame.

 Project 1000 Museum
 Project 1000 Museum
“What you see is literally structure getting thicker and thinner, as needed," Lepine says. "There’s a continuity
between the disciplines, between the architecture and engineering, to create that impression.”
Tower Of Project 1000 Museum In Miami Beach, usa
Elevation the tower

Developers Gregg Covin and Louis Birdman of One Thousand Museum Limited commissioned Hadid to do the design, in association with the local architect of record, O’Donnell Dannwolf Partners Architects.
Hadid started One Thousand Museum after being commissioned to design Collins  Park Garage, a combination parking garage and public plaza now also in working drawings. There will soon be two notable Hadid structures in Miami as Hadid finally breaks into large-scale construction in the United States.

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Saturday, September 12, 2015

Beijing New Airport Terminal Building Daxing, China / Zaha Hadid

Beijing New Airport Headquarters (BNAH)
JOINT DESIGN TEAM (OPTIMISED CONCEPT DESIGN STAGE):
ADP Ingeniérie (ADPI) and Zaha Hadid Architects (ZHA)
with Buro Happold, Mott Macdonald and EC Harris
Zaha Hadid Architects (ZHA):

Design Airport, China - Zaha hadid
Design Airport Terminal Building Daxing, China - Zaha hadid

Design: Zaha Hadid and Patrik Schumacher
Zaha Hadid Project Directors: Cristiano Ceccato, Charles Walker
Zaha Hadid Project Architects: Paulo Flores, Lydia Kim
Project Coordination: Eugene Leung, Shao-Wei Huang
Zaha Hadid Project Team: Uli Blum, Antonio Monserrat, Alberto Moletto, Sophie Davison, Carolina Lopez-Blanco, Shaun Farrell, Junyi Wang, Ermis Chalvatzis, Rafael Contreras, Michael Grau, Fernando Poucell, Gerry Cruz, Filipa Gomez, Kyla Farrell, Natassa Lianou, Teoman Ayas, Peter Logan, Yun Zhang, Karoly Markos, Irene Guerra
Beijing Support Team: Satoshi Ohashi, Rita Lee, Yang Jingwen,
Lillie Liu
CONSORTIUM TEAM (COMPETITION STAGE):
ZHA (Lead), Pascall + Watson, Buro Happold, Mott Macdonald,
EC Harris. Consultants: McKinsey & Company, Dunnett Craven, Triagonal, Logplan, Sensing Places
LOCAL DESIGN INSTITUTE:
BIAD (Beijing Institute of Architecture & Design) and CACC (China Airport Construction Company)
Project Data
Size: 700,000 m2 total floor area + 80,000 m2 ground transportation centre
Capacity: 45 million passengers per year (expanding to 72 million)

Zaha hadid
Site Plan Of Airport Terminal Building Daxing, China - Zaha hadid

Design Description :
The Beijing New Airport terminal building will be extremely user-focussed, efficient, adaptable and sustainable for future growth to serve the world’s fastest growing aviation sector. The client, Beijing New Airport Headquarters, adopted the 6-pier radial concept developed by ADPI as it gives exceptional functionality and flexibility.

Design Airport Terminal Building Daxing, China
Design Airport Terminal Building Daxing, China - Zaha hadid
The design celebrates the connectivity and dynamism of air travel; expressed as a sequence of inspirational inter-connected public spaces. The flowing rooflines cover the large, column-free spaces and provide a sense of scale and orientation – welcoming the world to Beijing. All of the passenger pathways through the terminal converge within the central courtyard, creating a multi-layered civic space - a public square and meeting place for passengers from around the globe - at the very heart of the terminal.

The terminal’s compact design minimizes the distances between check-in and gate, and also the distances between gates for transferring passengers. These transferring passengers will disembark and walk a short distance to the central courtyard, then on to their next gate. Aircraft piers radiate outwards from this central space, maximizing the number of planes that can park adjacent to the terminal.

International and domestic passenger areas are separated vertically – not spread out horizontally as at most other airports. This further contributes to a more compact terminal building.

The radial layout greatly improves adaptability and sustainability by enabling the terminal to operate in the many different configurations most appropriate to the varying aircraft and passenger traffic throughout each day. The compact design also reduces the requirements for shuttle trains between the many terminals that are common at other large airports. The installation, maintenance and operation of shuttle trains is expensive, with constant energy demands to continually ferry passengers through the airport. The radial design of the Beijing New Airport Terminal enables passengers to simply walk the short distances to everywhere they need to go within the airport.

Zaha hadid
Design Airport Terminal Building Daxing, China - Zaha hadid
Housing many departure gates in one terminal with a single passenger handling centre – rather than building an airport with many smaller terminals and many handling systems – is also beneficial. This ultimately reduces the carbon footprint of the airport throughout its construction and operational lifetime – further contributing to reaching the airport’s very high targets of environmental management and sustainability.

Although large to accommodate the many passengers and aircraft, the terminal building maintains a relationship to a human scale and sense of direction. These characteristics have evolved from traditional Chinese architecture where intricate compositions of connecting volumes define exterior and interior spaces that guide visitors as they progress through the architecture. In this airport terminal design, passengers are similarly guided seamlessly through the building via a sequence of public spaces that flow into each other, leading to the grand central courtyard - the primary gathering space for departing, arriving and transferring global passengers - ensuring every visitor has the most convenient and enjoyable user experience.

The overall symmetry of the airport terminal design, together with its flowing, interconnected forms create a fluid composition which evokes the harmony and balance evident in Chinese natural landscapes, while its colours and materials are an expression of visual language within traditional Chinese culture. The design of the new terminal reflects China’s rich cultural history and its remarkable future at the centre of a worldwide stage.

Design Airport Terminal Building Daxing, China - Zaha hadid
Design Airport Terminal Building Daxing, China - Zaha hadid

Press Statement :
ADP Ingeniérie (ADPI) and Zaha Hadid Architects (ZHA) have completed the concept design for the world’s largest airport passenger terminal - the Beijing New Airport Terminal Building - in Daxing, Beijing, under the leadership of the Beijing New Airport Headquarters (BNAH), based on the bid-winning planning scheme by ADPI.

Design Airport
Design Airport Terminal Building Daxing, China - Zaha hadid

Following the 2011 international competition bid, in October 2014 the Beijing New Airport Headquarters created a Joint Design Team bringing together ADPI and Zaha Hadid Architects with competition consortium group members Buro Happold, Mott Macdonald and EC Harris to collaborate on the optimised concept design for the Beijing New Airport Terminal Building.
With Beijing’s existing Capital Airport already exceeding its planned capacity, the new airport will serve the world’s fastest growing aviation sector and enable further connections between Beijing and cultural, economic and civic centres around the globe. Initially accommodating 45 million passengers per year and expanding to 72 million, the new terminal will be adaptable and sustainable, operating in many different configurations dependant on varying aircraft and passenger traffic throughout each day. With an integrated multi-modal transport centre featuring direct links to local and national rail services including the Gaotie high speed rail, the new Daxing airport will be a key hub within Beijing’s growing transport network and a catalyst for the region’s economic development, including the city of Tianjin and Hebei Province

Design Airport  - Zaha hadid
Design Airport Terminal Building Daxing, China - Zaha hadid
The Joint Design Team scheme integrates principles originally developed during the competition phase by ADPI and the Zaha Hadid Consortium Group respectively, which included Pascall+Watson, Buro Happold, Mott Macdonald and EC Harris. ZHA’s projects include some of the world’s most popular, user-focused and adaptable civic architecture that prioritises the public realm and user experience. This expertise, together with ADPI’s history and knowledge of airport planning and development, will ensure the new terminal at Daxing to be the world’s most convenient, sustainable and future-proof airport.
Following the completion of the concept design stage, the project is now being led by the Local Design Institute team under the continued leadership of BNAH.

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Wednesday, September 9, 2015

ZaHa Hadid Design Bee’ah Headquarters in Sharjah, UAE

Bee’ah Headquarters
ZaHa Hadid Design Bee’ah Headquarters in Sharjah, UAE
 Bee’ah, the Middle East’s leading fully integrated environmental and waste management company has commissioned Zaha Hadid Architects to build its new Headquarters Building in Sharjah, UAE, following the 2013 international competition.

ZaHa Hadid Design Bee’ah Headquarters in Sharjah, UAE
ZaHa Hadid Design Bee’ah Headquarters in Sharjah, UAE
The new Headquarters Building is part of Bee’ah’s ongoing work and investment to transform attitudes and behaviours in individuals, communities, businesses and cities by providing the infrastructure, tools and support to achieve their environmental goals. Working towards achieving its Zero-Waste to landfill, cleaner air and water, renewable energy and sustainable future targets, Bee’ah is developing and providing coherent and sustainable environmental solutions to meet the challenges of the community it serves.

Recognizing that awareness and education are essential to achieving its goals, Bee’ah operates the Bee’ah School of Environment (BSOE), which aims to develop a ‘greener future generation’ through environmental learning and approved tools that help children understand their vital role in environmental responsibility. To date, 174,000 children in over 210 schools across the emirate have participated in its ongoing programs. 
Educational facilities and exhibition spaces within the new Headquarters Building will enable Bee’ah to further its community engagement programs and outreach initiatives.

ZaHa Hadid Design
 Bee’ah Headquarters in Sharjah, UAE
With its commitment to the Zero-Waste to landfill target for the emirate of Sharjah, Bee’ah is collaborating with experts around the world to formulate necessary environmental and waste management strategies, develop legislative policies, train and develop staff capabilities, and improve waste treatment and recycling methods by establishing facilities and initiatives to build an integrated social, industrial and economic framework that promotes recycling. By converting material and physical waste into recycled resources that can be re-used by the community, Bee’ah is leading positive environmental change in the Middle East.



Bee’ah’s new Headquarters will enable the company to manage and deliver further advancements in environmental services. These include even greater operational effectiveness of its Waste Management Centre which represents an entirely new approach to managing waste in the region with a number of industrial, commercial and residential waste diversion operations and facilities that include the Material Recovery Facility (the third largest in the world); the Construction & Demolition Waste Recycling Facility; the Tyre Recycling Facility (the first of its kind in the region using an environmentally-friendly cryogenic processes); the Compost Plant which processes organic and green waste into fertilizer; the industrial and wastewater lagoons to process liquid waste; the end-of-life vehicle and metal shredding facility as well as a number of other recycling and material processing facilities.

ZaHa Hadid
Interior Bee’ah Headquarters - Zaha Hadid
Bee’ah, as an organisation, is converting waste from being something that is a consumptive byproduct of society to something that can be core to society’s future. This has been achieved by transforming both materials (though recovery and energy generation) and society (via social outreach and educational programs) to create a holistic ecosystem for the future.
The Bee’ah Headquarters Building embodies these principles by providing the company with a administrative centre of sustainable construction of LEED Platinum Certification, with ultra-low carbon and minimal water consumption in operation and minimised material consumption in construction. The new building and site will also be used as a learning resource to demonstrate practical environmental awareness to the wider community.

Design Bee’ah Headquarters in Sharjah, UAE
Bee’ah Headquarters - Zaha Hadid
Bee’ah aims to set new standards in the UAE through utilising 100% green renewable energy sources to power its new Headquarters and ensuring that the maximum amount of recycled materials recovered from waste are used in its construction.

The Headquarters Building has been designed with environmental considerations woven into every aspect of the design using a hierarchical approach to first limit the need to consume resources; where resources are required - to minimise their consumption; and finally to offset consumption of resources through the harvesting of renewable systems.

Designed in response to its natural environment to provide comfort for its occupants alongside minimising energy and resource consumption, the formal composition of the new Bee’ah Headquarters Building has been informed by its desert context as a series of intersecting dunes orientated to accommodate the prevailing Shamal winds, and developed to ensure the internal spaces are provided with ample high quality daylight and views whilst limiting the quantity of glazing exposed to the harsh sun.

ZaHa Hadid Design Bee’ah Headquarters in Sharjah, UAE
Bee’ah Headquarters - Zaha Hadid
The 7,000 sq. m. Bee’ah Headquarters is located on a 90,000 sq. m. site adjacent to the Bee’ah Waste Management Centre. The large site enabled the development of the design as an array of dunes within its desert landscape leading to the two central dunes of the Headquarters Building.
The two primary dunes of the Bee’ah Headquarters Building house the public and management section (entrance lobby, auditorium, visitors education centre and gallery, and management offices), and the administrative section (departmental offices and staff café). The two dunes intersect and connect via a central courtyard that forms an ‘oasis’ inside the building - enhancing the natural ventilation and maximising indirect sunlight to the public and administrative spaces within.

Bee’ah Headquarters - Zaha Hadid
Bee’ah Headquarters - Zaha Hadid
The building systems of the new Headquarters have been developed in conjunction with Atelier Ten to minimise both the energy required for cooling and the need for potable water consumption. In milder months, the façade is operable to allow natural ventilation - minimising the need to provide cooling to the building. When conditioning is required, it will be optimised for energy conservation via the use of ventilation energy recovery - allowing fresh air into the spaces with reduced energy impact, and the waste heat that would normally be rejected from the chillers into the atmosphere is to be harvested to provide free pre-heating of the domestic hot water supplies.

Bee’ah Headquarters - Zaha Hadid
Bee’ah Headquarters - Zaha Hadid
The exterior finishes of the building have been selected to reflect the sun’s rays and help to further reduce energy consumption by providing a local heat profile that is akin to the natural desert environment rather than the high heat profiles associated with conventional roofing systems.
These active and passive energy approaches are predicted to provide a 30% reduction in energy consumption. All power required for the building will be generated via low and zero carbon sources, principally from the adjacent Bee’ah Waste Management Centre’s conversion of municipal waste (that would otherwise decay in landfill) into energy, together with large arrays of photovoltaic cells incorporated within the site’s landscaping.

Bee’ah Headquarters - Zaha Hadid
Bee’ah Headquarters - Zaha Hadid
The building’s structure has been developed in conjunction with Buro Happold to minimise material consumption through architectural and structural integration. Individual elements of the building’s structure and skin are of standard orthogonal dimensions, enabling significant portions to be constructed from materials recovered from the local construction and demolition waste streams managed by Bee’ah, minimising demand for new materials.

Bee’ah’s expertise and experience of recovered water recycling for non-potable use has enabled the design to be developed for exceptionally low potable water consumption. Internal fixtures and fittings will be installed to conserve water to exceptional levels. Native or adaptive species of vegetation will be incorporated to minimise the need for irrigation, with recovered and recycled non-potable water being used where irrigation is required and landscaping.

Bee’ah Headquarters - Zaha Hadid
Bee’ah Headquarters - Zaha Hadid
The new Bee’ah Headquarters Building is defined by the same principles that are the foundation of the company’s mission to provide coherent and sustainable environmental solutions to meet the future challenges of the communities its serves; leading by example in creating a work environment for Bee’ah to continue its commitment to provide integrated environmental and waste management services of the highest standards.


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Tuesday, September 8, 2015

Structure Design of HEYDAR ALIYEV CENTER / Zaha Hadid

Structure-Design-Zaha-Hadid
Structure-HEYDAR ALIYEV CENTER

MERO double-curved space frame structure supporting solid external and internal envelope: MERO KK system (Fabricated by MERO-TSK Germany) made of solid steel ball nodes and CHS members.
Nodes with diameter between 110 and 350 mm and up to 16 threaded holes in different directions. Due to double-curved geometry all nodes and members are different and individually produced. Members with diameter from 60.3 to 273 mm automatically prefabricated of steel cones, CHS pipes, threaded bolts and sleeves, up to 4.5 m long.

Structure
Project HEYDAR ALIYEV CENTER
All node and tube connections assembled on site without any welding. To achieve high corrosion protection all parts are galvanized and coated in accordance with DIN EN ISO 12944.
All Items are under strict MERO quality control in accordance with DIN ISO 9001 and ISO 14001.
Curved boot columns at ground level connection points enable inverse peel of solid external skin on the west side of the building from the plaza floor surface. MERO
Additional framing construction: In situ concrete sheer walls and floors, steel floors.

Structure Design By Zaha Hadid
Structure Design By Zaha Hadid


External skin HEYDAR ALIYEV CENTER )
Solid external skin: Fiberglass reinforced polyester rain screen cladding panels to roof higher than datum at approximately 3 m above ground level. Arabian Profile. Color match with off-white fiberglass reinforced concrete panels achieved by using a gelcoat layer with special mixture for visible faces. Sheen, sparkle, and texture to match fiberglass reinforced concrete panels. 120 mm returns on all edges. 50 mm wide primary joints between panels, allowing access to fixings, with 15 mm wide transverse joints.

Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid
Construction HEYDAR ALIYEV CENTER
Support structure for external skin panels: Curved primary transverse steel tubes with rod connections to space frame. Secondary longitudinal steel tubes spanning between primaries and supporting rain screen panels. Weatherproofing: Prefabricated trays comprising U-profile purlins fixed to space frame stools supporting trapezoidal metal decks supporting rigid insulation boards with weatherproof membranes above and self-adhesive vapor barriers below.
Roof drainage: Weirs in weatherproofing below roof rain screen discharging into downpipes.

Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid
external skin panels
Access and maintenance system: Solid external envelope: cherry pickers, safety point hooks in 50 mm gaps between panels at approx. 3 m centers, with rappelling strategy for steepest surfaces.

Glass curtain walling: Unitized structurally bonded fixed glazing with split mullions and transoms, adaptor frames, and vertical cover profiles. Suspension points at tops of units.

Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid
external skin - Zaha Hadid
Insulating glass units with combined solar-control coating and low-e coating on the outer panes. Inner and outer panes contain fully tempered safety glass.
Outer pane: laminated glass with polyvinyl butyral laminate, either standard PVB laminate for medium acoustic requirements or with noise-control foil.
2-pane insulated glass units comprise laminated glass with
2 panes 6 mm tempered glass externally. Glass heat soak tested to EN 14179, combined solar-control coating and low-e coating on face 2. 16 mm air cavity with highly insulating spacer, stainless steel spacer, or comparable. 8 mm tempered glass to inside heat soak tested to EN 14179.

Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid
view structure building for HEYDAR ALIYEV CENTER
Acoustic insulation: max. Rcwtr = 41 dB required for glazing.
The insulated glass units allow and guarantee for a deflection of the glass panel edge of up to L /150 (approx. 25 mm over a length of 4 m). Deflection in the middle of panes with supports along all edges not limited to a certain value.
Structural silicone seals to inner and outer panes of insulating glass units.
Mullions and transoms aluminum extruded rectangular/ polygonal sections to outside. Mullions and transoms:
Curved glass panels around museum / tunnel elevation: tempered outer pane, with enamel frit at the edges to cover the spacer bonding, with bendable and temperable solar-control coating.

Structure Design
HEYDAR ALIYEV CENTER
Hard and soft landscaping
Plaza flooring and panels in transitional zone between plaza flooring and raincreen: Flat, single- and double-curved fiberglass reinforced concrete flooring panels by Arabian Profile. Specially developed alkali-resistant fiberglass and cement sand mortar. Slip resistance: R10 in wet conditions, R12 in dry.
Panels rest on concrete and gravel in plaza and wedge-shaped concrete footing in transitional zone. Gaskets in joints to prevent finger trapping and indicate proximity of transitional zone between plaza and external envelope.
External ponds: top and bottom reservoir with perimeter overflow requiring accurate workmanship to stonework at edges and special collector unit to ensure water appears still, waterfalls connecting reservoirs have concealed channels at supply and overflow points to prevent them disturbing still surfaces of ponds and have dedicated filtration; special vacuum and filtration appliances for maintenance and cleaning of shallow reservoirs. Landscape and hardscape walls: board-marked in situ concrete. Grass: blend of 3 different seeds suitable for windy, hot, humid climate, terrace garden plant system comprising drainage layer, and root retainers with automatic garden irrigation system also available.

Structure HEYDAR ALIYEV CENTER By Zaha Hadid
Structure Design / Zaha Hadid

External facade lighting
Ground-embedded facade lighting fixtures: produced by the Light Project company, can be directed by 360 degrees, with special filter. Bespoke fixtures with reflectors, used in facade cove: produced by British Crescent Company.

Structure Design  Zaha Hadid
zaha hadid structure

External plaza lighting
Recessed LEDs at sides of the steps: bespoke item by Cedetas with linear stainless steel casing and top-radiused Flotel glass. Stone light marker LEDs: manufactured by HRN design. LED fixtures below stair railings: bespoke design by Zaha Hadid, manufactured by Zumtobel.

Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid
Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid


Internal skin, walls, and ceilings
Inner face of external envelope: 6 mm Flex-Panels.
Skimmed and painted. Panels and boards screwed to fixing plates connected to telescopic tubes connected to tubular secondary steel support structure suspended from space frame, with threaded rod bracing where required.
Suspended ceilings: Knauf Acoustic suspended ceilings: Baswa Finish to auditorium ceiling and walls: Oak Internal flooring Transitional zones between internal floors and walls: Bolidt synthetic resin flooring.
First-floor exhibition area in museum and grand stair on first floor: Greton branded beige artificial stone, size: 45 × 90 cm.

Zaha Hadid
Structure Design Of HEYDAR ALIYEV CENTER 

Internal lighting
Atrium lobby: lighting integrated into helical stair handrail; balustrade uplight adjacent to step; recessed light features in ceiling; floor slot fittings uplighting external skin.
Auditorium: linear wall washers; dark recessed ceiling slots conceal downlighting onto seating areas; step lighting; ceiling shadow gap wall washers providing ambient light.
Structural cantilever glass balustrades and handrails
1,100 mm high tempered and laminated extra clear glass.
Structural glass balustrades to stairs and landings, but not galleries, with LED luminaires, bus bars integrated with
laminated glass. Stainless steel handrails to stairs and landings
with wall-fixed LED luminaires.

Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid
Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid


Mechanical services
Fresh air is supplied to all mechanical rooms. Variable air volume system for exhibition gallery. Control of drafts from large areas of facade glazing by convectors and floor heating. Heating and cooling plant located in remote utility structure.

Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid
Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid


Fire safety
Smoke control: special pressurization systems prevent the spread of smoke into the escape staircases in case of fire.

HEYDAR ALIYEV CENTER By Zaha Hadid
Structure Design Of HEYDAR ALIYEV CENTER By Zaha Hadid

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Saturday, August 29, 2015

Zaha Hadid Architects Design Project HEYDAR ALIYEV CENTER

Zaha Hadid
HEYDAR ALIYEV CENTER
Project HEYDAR ALIYEV CENTER.
Design Zaha Hadid and Patrik Schumacher with Saffet Kaya Bekiroglu.
Project Architect Saffet Kaya Bekiroglu
Project Team Sara Sheikh Akbari, Shiqi Li, Phil Soo Kim, Marc Boles, Yelda Gin, Liat Muller, Deniz Manisali, Lillie Liu, Jose Lemos, Simone Fuchs, Jose Ramon Tramoyeres, Yu Du, Tahmina Parvin, Erhan Patat, Fadi Mansour, Jaime Bartolome, Josef Glas, Michael Grau, Deepti Zachariah, Ceyhun Baskin, Daniel Widrig, Special thanks to Charles Walker.

Zaha Hadid Architects Design
HEYDAR ALIYEV CENTER
Main Contractor and Architect of Record DiA Holding
Consultants Tuncel Engineering, AKT (Structure), GMD Project (Mechanical), HB Engineering (Electrical), Werner Sobek (Façade), Etik Fire Consultancy (Fire), Mezzo Stüdyo (Acoustic), Enar Engineering (Geotechnical), Sigal (Infrastructure), MBLD (Lighting), Subcontractors and manufacturers, MERO (Steel Space Frame System) + Bilim Makina (Installation of Space Frame System), Doka (Formwork), Arabian Profile (External Cladding Panels / GRC & GRP), Lindner (Internal Skin Cladding), Sanset İkoor (Auditorium Wooden Cladding), Quinette (Auditorium Seats), Zumtobel (Lighting Fixtures), Baswa (Special Acoustic Ceilings) + Astas (Installation of Ceilings), Solarlux (Multipurpose Hall Façade Door), Bolidt (Polyurethane Floor Finish), Kone Elevators + Ikma (Installation of Elevators), MM Mühendisler Mermer (Marble Cladding Works), HRN Dizayn (Landscape LED Installation), Thyssen Group (Escalator), Remak Makina (Fire Doors and Concrete-Cladded Doors), Tema (Gypsum Panel Works), MIM Mühendislik (Structural Steel), Elekon Enerji Sistemleri (Main Building Lighting Control System), NIS Epoksi Kaplama Sistemleri (Epoxy Works), Light Projects Group (Lighting Fixtures), Limit Insaat (External Skin Insulations and Structure).

Zaha Hadid Architects Design HEYDAR ALIYEV CENTER
Zaha Hadid Architects Design HEYDAR ALIYEV CENTER

HEYDAR ALIYEV CENTER FACTS AND FIGURES

Project name Heydar Aliyev Center 
Location Baku, Azerbaijan
Start of project September 2007
Completion May 10, 2012
Client The Republic of Azerbaijan
Program Mixed-use cultural center
Procurement Design-build
Total floor area 101,801 m2
Site area 111,292 m2
Auditorium capacity 1,000
Unique fiberglass reinforced polyester panels 13,000 (40,000 m2)

Zaha Hadid Architects Design
HEYDAR ALIYEV CENTER

Fiberglass reinforced concrete panels 3,150 (10,000 m2) GRC panels
Fiberglass reinforced polyester panel production Max 70 unique panels per day
Museum space frame 12,569 Members / 3,266 Nodes
Auditorium space frame 17,269 Members /4,513 Nodes
Total surface space frame area approx. 33,000 m2
Internal skin fixing plates 70,000
Surface area of inner skin Over 22,000 m2
Metal deck roof purlins at tender stage 3,607—total length 10,092m
Metal roof deck trays at tender stage 3,936—total area 26,853 m2 Roof area 39,000 m2

Zaha Hadid Architects Design HEYDAR ALIYEV CENTER
Zaha Hadid Architects Design HEYDAR ALIYEV CENTER

Zaha Hadid
Zaha Hadid Architects Design Auditorium
For more details about the project, click here


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