Chủ Nhật, 19 tháng 4, 2009

Tanzanian Hotel Inspired by Rock Formations

by Olivia Chen

tanzania architecture, tanzania hotel architecture, hotel geological formations, geological processes architecture, wow architects, warner wong architects, geological science architecture, rock formation architecture, archeological exploration architecture, green building, green design

Not many people would be envious of you if you were living in a cave — but they might be a little envious if you stayed in this hotel, located in Tanzania and designed by WOW Architects. The hotel is comprised of two buildings and its overall design was inspired by geological processes that shape rock formations in nature. It is no surprise that we are fans of the greenery that spills out of the buildings’ windows, but we also found the concept development of this project quite interesting. The architects were inspired by nature’s way of creating hills or mounds, and how these hills are eventually inhabited by living things.

tanzania architecture, tanzania hotel architecture, hotel geological formations, geological processes architecture, wow architects, warner wong architects, geological science architecture, rock formation architecture, archeological exploration architecture

Dubbed the “House of Peace”, the project is composed of a textured concrete that appears as if it were sculpted by the elements. When we first observed the set-back of the windows, we couldn’t help but think that it does, in fact appear to be a giant rock formation with interior cavities that could be the contemporary interpretation of the cave. The concept, grounded in geological science, manifests itself into two “mounds” or buildings with flowing gardens that grow out from the windows of the building. In their diagrams (see below), the architects explain the design development as if it was a sculpting exercise backed by geological fact.

It begins when plate tectonics force mounds of land up, creating hills. The hills are then eroded by weather, creating texture and variation in the surface of the hills . Over time, sediments settle differently on the surface of the hills which creates what we know as stratification. During this time, seeds are deposited into nooks and crannies in the hills which allows green to grow all over the hills. Inspired by the power of the elements to sculpt the hills in the natural world, WOW architects have designed these buildings to mimic the random grooves and angles found in nature.

tanzania architecture, tanzania hotel architecture, hotel geological formations, geological processes architecture, wow architects, warner wong architects, geological science architecture, rock formation architecture, archeological exploration architecture

The orientation of the buildings was planned so that sunlight enters the interior courtyard in the center, providing a warm and inviting space for hotel guests to mingle. This layout also gives residents access to views of city, sea and harbor. The interior of the hotel is less accounted for, but we love the project’s use of living green walls. An interior view shows a flight of stairs sheltered only by glass panels will certainly make guests feel as though they are walking up into the light.

Although we admit this is not the first building to show abundant green foliage spilling out from its sides, we’re intrigued by the structure’s geologically inspired design. There’s something quite poignant about staying at a hotel that was inspired by the same natural processes that creates mountains and ridges. Here, guests can have a rather unique experience while they look out through their setback windows and verdant frame, and feel like they are staying in a very bright and well-lit cave with all the modern conveniences.

+ WOW Architects

Tip via Abhishek Pandey

tanzania architecture, tanzania hotel architecture, hotel geological formations, geological processes architecture, wow architects, warner wong architects, geological science architecture, rock formation architecture, archeological exploration architecture

tanzania architecture, tanzania hotel architecture, hotel geological formations, geological processes architecture, wow architects, warner wong architects, geological science architecture, rock formation architecture, archeological exploration architecture

tanzania architecture, tanzania hotel architecture, hotel geological formations, geological processes architecture, wow architects, warner wong architects, geological science architecture, rock formation architecture, archeological exploration architecture

Thứ Bảy, 18 tháng 4, 2009


Wall house innovates on house design, through a sustainable soft skin. This house was awarded the 2007 AR Emerging Awards and selected as one of the 2008 Record Houses by Architectural Record.

Name: Wall House
Location: Lampa, Santiago, Chile
Completion: 2007
Project Team: FAR frohn&rojas - Marc Frohn, Mario Rojas Toledo, Amy Thoner, Pablo Guzman, Isabel Zapata
Structural Planning Wood: Ingewag Limitada, Santiago; Civil Eng. Mario Wagner
Structural Planning Concrete: Ing. Ernesto Villalon, Santiago
HWAC: Central TechnoPlus / Vaillant, building technology; Nelson Quilaqueo, Christian Aguirre
Model Building: Martin Baden, Dorothee Fritzsche, Carlos Ysenburg

Photos: Cristobal Palma

With a limited budget, our office was asked to design a residence for a retired couple in one of the suburban areas that stretch out from the center of Santiago de Chile along the Pan-American Highway. We were immediately curious about the ambiguous nature of the couple’s purchased lot: while technically being part of a suburban subdivision, the development actually projected a highly rural image through its dirt roads, large lots of more than 50,000 square feet, and most importantly its clever use of tall hedges to enclose the lots on their perimeters and provide a high level of privacy. Finding that the hedges, while blocking off any visual connection to the immediate suburban context yet still opening up to views of the distant Andean mountains, could be understood as an outer layer of building skin, they became an intriguing starting point for the project. Using this new understanding of the hedge, we developed the idea of a house based upon a series of separated wall layers which structure the house and progressively fade it out, starting from its solid, innermost core to its soft and delicate encasing.


While the “traditional” single family home, regardless of locale, typically establishes a strong separation between interior and exterior through solid walls and clearly defined window and door openings, our design creates a gradual and hazy transition between the two, finally including the exterior in its hierarchy of interior spaces. Based on 4 layers, in between which residential activities result, each layer offers its very specific structural, material, functional, atmospheric, or climatic qualities and contributes to an intelligent hierarchy for a limited-budget project: while the innermost zones contain the most demanding functions associated with home (i.e. kitchen and bathroom), the selection of materials and finishes is allowed to ‘roughen up’ toward the exterior. Moving from room to room plays with a perception of moving deeper into or further out, with changes of materiality and lighting providing a range of qualitative experiences and cues.


Layer 1: Concrete Cave


The introverted concrete core forms the first element of the structural system. Containing the house’s two bathrooms, its inside surfaces are fully covered in ceramic tile, allowing it to be an entirely wet zone.
A sturdy and vault-like chamber, this innermost layer is solid, opaque, and shiny-smooth, offering cave-like protection for the most private of domestic activity.

Layer 2: Stacked Shelving


Surrounding the inner core is a pair of upper and lower structural shelving bands, built of engineered wood, formwork panels and plywood, shifted in their relative positions and cantilevering out up to 5.20 meters along the corners.Backed with plywood sheets in select areas while left open in others, the bands set up varying configurations for placement of domestic articles, privacy or openness, and levels of illumination according to program and orientation. The decision to use formwork and plywood as two of the primary materials reflects the specificity of material required by the budget.
Fully contained within the shelving band in a continuity of spaces are the kitchen, dining and guest room on the ground floor and a work studio on the upper. Through the collocation of objects amongst these shelves, passing movement, pattern and lighting changes fluctuate intermittently.

Layer 3: Milky Shell


Moving out to the climate threshold, an upwardly folding translucent skin, or milky shell, of high-insulation polycarbonate panels filters the harsh Chilean sun, registering shadows of trees and outside elements on its surface and flooding the zone with light. A delicate and vertically laid substructure for the panels, typically used in drywall construction and calling for an almost zero-tolerance assembly, was employed for a seamless reading of the panels.
Surrounding the building much like a shrink wrap binds two shifted boxes, this shell creates two partially double-height spaces along the outer corners of the house. Outwardly-focused and filled with an even diffusion of natural light, these two areas include the living room and master bedroom, where expansive sliding glass surfaces extend the spaces outward toward the hedges.

Layer 4: Soft Skin


Finally, a soft fabric membrane typically used in greenhouse environments acts as an energy screen, filtering out up to 70% of the solar energy hitting the building, and at the same time creates a protective barrier against the mosquitoes and insects prevalent in the area.

Wrapping itself entirely around the house and logically connecting along the lengths and corners of the polycarbonate skin, this soft casing creates a tent-like screened porch between inside and out, fully open to breezes and varyingly open to views (employing 3 differing degrees of transparency), yet still providing a protective sheath. As seen from the outside, the aluminum netting and its folds of connectivity create a crisply tailored, jewel-cut form that changes its luminosity and depth of field depending on time of day and season of year. A fold in the membrane opens the path from the exterior towards the main entrance. Additionally there are three zippers in the skin for easy access from the house into the garden.

Both the polycarbonate shell as well as the soft fabric membrane are interesting in the context of this project both through their performative and sensual qualities, but showed their extra-value during the construction process as they could be installed in a quasi-”do-it-yourself”-manner by the mostly untrained labor force.
After having passed through the series of different wall-layers from the interior outward, one understands not only the climatic but also the formal and geometric relationship between them. Starting from a simple rectangular core the different layers build upon one another creating increasingly complex geometries. Thus from the inside out the house describes the transformation from a simple box to a diamond-like, light-reflecting shape, which the house is perceived as from the surrounding.


Wall House Energy Concept


With its separated wall layers the project unites architectural and energy concepts. They become inseparable as in between the different membranes a series of specific climate zones emerges. Thus the individual wall layers do not only build upon one another geometrically, starting from an extruded concrete core developing into a diamond-shaped soft skin, but in the context of the energy concept establish a finely calibrated hierarchy amongst one another.The concrete core and the ground floor concrete slab contain the gas-powered radiant heating. The ground floor is being climatized from the slab, while the concrete core is radiating heat into the openly organized second floor space. For that purpose PEX-hoses are integrated into the concrete elements. During the summer the circuit can be appropriated for passive cooling using a heat pump. In this case the water in the PEX-serpentines is being cooled down to 15 degree Celcius. The component cooling needs far less energy than conventional air conditioning systems.Milky Shell, the translucent / transparent climate envelope wraps itself around all sides of the “interior space” of the house. The envelope consists of extruded, multi-layered polycarbonate panels (40mm, 3 chambers, 1,65 W/m²K) and double glazing (1,4 W/m²K). Two surfaces of the envelope are fully glazed. They contain full-height sliding doors, which – depending on daytime and season – allow a complete opening toward the exterior. On both sides of the ridge there is a long pivot-hung element that can be opened in the summer. The outer skin of the Wall House, Soft Skin, consists of two different woven textiles, the energy screen and an insect membrane. Both materials are commonly used in green house construction.

The energy screen consists of a combination of highly reflective aluminum strips, which are woven together with polymer fibers. The diamond-shaped skin uses – depending on directional orientation – energy screen that reflects between 50 and 75% of the sunlight away from the building. In the triangles close to the ground the energy screen is replaced by the insect membrane. By moving away from the polycarbonate shell up to 4 meters and more on the ground floor a usable exterior space develops under the skin. Mosquitoes and other insects can not penetrate the membrane. It contains three zippers allowing the inhabitants to easily move in and out of the tent.Along the ridge the distance between the two layers Soft Skin and Milky Shell is reduced to roughly 45cm. Air can flow through this remaining gap being able to suck the warm air through the pivot-hung opening out of the interior.Through the spatial and material configuration of the individual wall layers the project develops an appropriate architectural approach of dealing with the local climate (summer between 30-35 degree C, winter up to 10 degree C). The energy efficiency of the house is extremely high for Latin American standards.


Posted by 5osA

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FARO architecten bv just shared with us their latest project, the winning entry for a sustainable residential tower design competition.

Text from the architects and more images after the break.


The city of Almere organized a design competition for urban villas and a residential tower for the Cascade park. These designs needed to fit within the ambition to develop the Cascade park as a ‘window of sustainability’: an inspiring example for ecological, social and economical sustainability.

The location of the tower is unique, as it, with at least 57 residences, will form the head (or tail) of the park. The tower is designed to become a part of the park: it will allow the park to be growing on the public side of the tower in the form of green balconies. Residences with a view have to possibility to also have a private garden in one of the circles on the parking deck.

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The tower is sustainable in the broadest meaning of the term. The façade consists of glass and PV & PCM panels, the roof has sun collectors and rain water will be collected to irrigate gardens and balconies. The building is designed to be energy neutral over the year. Additionally, the tower provides a high level of social sustainability: the residents will be involved with the park, the park is involved with the tower, and there is a number of elements that will promote a neighborhood feel in this vertical city. For example, the tower will have a restaurant and collective DIY shops and guest quarters for the use of residents.

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The building can be arranged in a number of ways. The system used for construction allows great flexibility in number of residences and arrangements of floor plans. Should the future desire an other way of living, this tower can be easily adapted.

According to the jury, FARO developed a realistic ‘comfortable sustainable’ design for a residential tower

Location: Almere, Netherlands
Client: Woonstichting De Key/De Principaal
Advisor: Trecodome
Outdoor Spaces design: Buitenom
Renderings: Archimago

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Skyline Residence + Outdoor home theater | Belzberg Architects

skyline residence Skyline Residence + Outdoor home theater | Belzberg Architects

Project: Skyline Residence
Design Architect: Belzberg Architects
Location: Los Angeles, Ca 90046
Size: 5,800 ft2
Year: 2007

Watching movie in the sky? Yes, this is ultimate Outdoor home theater, which is designed by Belzberg Architects. A environmental friendly sensitive Skyline Residence in the Hollywood Hills under a limited budget with the use of local manufactured materials and sustainable techniques.

The project consists of a main house combined with a guest house. Both buildings are enclosed by a single folded surface with infill glazing and screened walls. Each room has at least one fully glazed wall. The fold itself represents the only solid exterior surfaces defining the form of the building. The guest house is separate from the main house. The Southern face of the guest house is used for movie projections.

+ the architect’s statement

Perched atop a ridgeline in the Hollywood Hills, the presence of the Skyline Residence represents an honest approach to creating an environmentally sensitive building without sacrificing beauty nor budget. The pre-existing site presented a challenge in terms of constructability, the client presented the challenge of limited allowable expenses.

Beyond incorporating various sustainable strategies out of pure concern for the environment, the budgetary limitations imposed on material choice forced the architect to implement strategies for using resources in close proximity to the site.Therefore, the general concept adopted for this project stems from “Carbon Neutral Economics,” or the purchasing of goods which are manufactured locally to save carbon transportation emissions. In a low budget architecture project where high-tech systems such as photovoltaic panels, wind turbines and recycled products are out of economical reach, the Skyline Residence reverted back to purchasing locally, minimized grading and capitalizing on natural characteristics of the site.

+ Project credits

Client(s): Skyline, LLC
Design Architect: Belzberg Architects
Principal: Hagy Belzberg
Design Team: Erik Sollom, Manish Desai
Construction Manager: Bill Bowen
Project Team: Barry Gartin, Brock DeSmit, Carina Bien-WIllner, Dan Rentsch, David Cheung, Eric Stimmel, Erin McCook, Ryan Thomas
Structural Engineer: Dan Echeto
Landscape Architects: Nicholas Budd Dutton Architects
General Contractor: Belzberg Architects
Furniture: Elizabeth Paige Smith
Special Fabrication: Spectrum Oak
Photography: Benny Chan of Fotoworks

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greenwood

Architects: Hotson Bakker Boniface Haden architects + urbanistes
Location: Osoyoos, British Columbia, Canada
Principal in charge: Bruce Haden
Project Architect: Brady Dunlop
Project Team: Norm Hotson, Stephanie Forsythe, Tina Hubert, Julie Bogdanowicza
Project year: 2006
Site Area: 1,600 acre
Constructed Area: 1,115 sqm
Materials: Rammed Earth, Concrete, Bluestain Pine Cladding
Structural Engineering: Equilibrium Consulting Inc.
Contractor: Greyback Construction
Lanscape Architecture: Phillips Farevaag Smallenberg
Client: Osoyoos Indian Band
Rammed Earth Wall Sub Contractor: Terra Firma Builders Ltd.
Photographs: Nic Lehoux Photography
The Nk’Mip Desert Cultural Centre is designed to be a specifc and sustainable response to the building’s unique context-the unusual Canadian desert found in the South Okanagan Valley in Osoyoos, British Columbia. Sited adjacent to a remnant of the Great Basin Desert (approximately 1,600 acres are being preserved by the band as a conservation area), this interpretative centre is part of a larger 200-acre master plan.

Nk’Mip is the frst of a number of new B.C. aboriginal centres, and part of a growing trend to explore the expressive potential of architecture to convey the rich past and the transforming future of aboriginal culture.

The practical reasons behind this architectural exploration grow out of provincial leadership-a premier whose efforts to improve aboriginal relations have resulted in changes to the treaty process-as well as a shift in the regulatory environment governing the types of buildings permitted on reserve land.

The building features indoor and outdoor exhibits that celebrate the culture and the history of the band, and is designed to be an extension of the remarkable site, and refects the band’s role as stewards of the land.

site plan
The desert landscape fows over the building’s green roof, held back by a rammed earth wall. The partially submerged building is sited very specifcally to focus the visitor’s eye away from the encroaching development of Osoyoos to the west, with the height of the wall set to create a layered view of the desert rising up in the middle ground, receding to the riparian landscape adjacent, and the mountains in the distance.

The attenuated entry sequence from the parking area moves visitors through a series of nested concrete walls up to an entry plaza at the end of the rammed earth wall. The plaza-used for collecting large groups, and signage about events of the day-leads along a low concrete wall that separates the original desert landscape and the building. This route is further defned by channel of water that draws people towards the entry, past the cor-ten steel gate of the service court and administration access. Entry into the interpretive centre occurs at the midpoint of the gently arcing wall. Inside, a theatre and “black box” exhibition space present information about the band and its historical relationship with the land. The round volume of the “pit house” at the centre of the exhibition space invokes the experience of conversation around a fre. From here, visitors move through a glazed wall into exterior exhibit space featuring information on native planting, an outdoor performance area and amphitheatre, a tule mat teepee, a large fgural sculpture, and a snake research area demonstration space. This area also serves as a trailhead for guided and unguided walks along 50 kilometres of paths through the desert. Small interpretive pavilions and a village of reconstructed pit houses and interpretive sculptures punctuate these trails.

Sustainability Features
The Nk’Mip Desert Cultural Centre is located in one of the most spectacular and endangered landscapes in Canada. Its rare desert condition is the northernmost tip of the Great American Desert, which extends southward as far as the Sonoran Desert in Mexico. This parcel of land is the largest intact remnant of this unique habitat in Canada. It is part of the land of the Osoyoos Indian Band. This band also belongs to the larger Okanagan Nation which extends down into the US (the Okanagan represents a broader geographic area of bands sharing common language with separate constituent bands). The project’s concern with deep sustainability grows out of the fragility of this landscape, and refects the core values and history of the band.

The extreme climate made sustainable design a very particular challenge. Hot, dry summers and cool, dry winters see average temperatures ranging from -18 degrees to +33 degrees and often reaching +40 on summer days. The building’s siting and orientation are the frst strategic moves toward sustainability: the partially buried structure mitigates the extremes in temperature, and its orientation optimizes passive solar performance, with glazing minimized on the south and west sides. The project’s ambitious approach towards sustainable design also includes the following features:

The largest rammed earth wall in North America
At 80m long, 5.5m high, and 600mm thick, this insulated wall (R33) stabilizes temperature variations. Constructed from local soils mixed with concrete and colour additives, it retains warmth in the winter, its substantial thermal mass cooling the building in the summer-much like the effect the surrounding earth has on a basement.

The use of bluestain pine
A recent infestation of pine beetles in British Columbia has led to an excess of bluestain pine, which here is used in interior and exterior applications. Although bluestain pine is a local material not normally specifed for fnished building use, Nk’Mip is something of a demonstration project, showing how it can be used both inside and outdoors to celebrate its unique visual qualities As its name suggests, the wood has a blue-tinted cast as though a blue wash has been applied, rather than the typical yellow colour more typical of pine. Although its inherent structural qualities are equivalent, the preferences of the powerful Japanese international market have historically infuenced demand for yellow (white) pine.

A habitable green roof
This habitable landscaped roof reduces the building’s visual imprint on the landscape, and allows a greater percentage of the desert landscape habitat to be re-established on the site (replanting uses indigenous species). The roof also provides further temperature stabilization and insulation.

Mechanical features
In-slab radiant cooling and heating in both ceiling and foor slabs create an even, comfortable environment that avoids blasts of air, noise and dust. Coupled with 100% outdoor air displacement ventilation, the system will result in savings of 30 to 50% over a forced air system.

Endangered species research
The building program includes facilities for the band’s award-winning rattlesnake research project, as well as public viewing areas where visitors can see endangered rattlesnakes captured, tagged and microchipped for further study and protection.

Careful water use management
Water is precious in the desert, and a spare channel of water at the entrance along the rammed earth wall introduces this theme. Less visibly, demand on the site fed well is reduced by 40% by incorporating low-fow faucets, waterless urinals, and dual fush toilets.

Rammed Earth Wall
North America’s largest rammed earth wall gives the building exterior a unique material and poetic sensibility, its graduated layers of earth shades evoking geological sedimentation within a distinctly contemporary architectural language. The wall has the appearance of being at once handmade and precise-its layers irregular, and its overall form sharp and geometrical, (the wall’s surface telegraphs the familiar horizontal lines from the wooden formwork used in constructing it) as well as the irregular horizontal strata of the compacted layers of earth used to construct the wall.

Rammed earth construction is a traditional building technique found most often in dry regions where wood is scarce. The modern version of this earth-based wall system combines two -250mm wythes of compacted sand and cement with 100mm of insulation sandwiched between.

Successive layers of differently coloured local soils were placed into the 600mm wide formwork and a pneumatically powered tamper was used to compress each layer to about 50 percent of its untamped height.

Sedimentary-like in appearance, the exposed surface acts as the finished wall, is extremely stable and doesn’t off-gas toxic or greenhouse gas emissions. The technique results in a physically strong, durable wall with excellent thermal qualities-heating up slowly during the day in the hot Okanagan sun, and releasing its heat in the evening.

Sustainability of building process also extends to the involvement of band members on the wall’s construction, contributing to the long-term ecological sustainability of the area, of the band, and providing an opportunity to evolve an authentically South Okanagan building technique (something of an antidote to the faux Santa Fe style that increasingly dominates the region).

This project created the opportunity for the Osoyoos Indian Band to develop unique, highly artisanal construction skills as rammed earth contractors and a team of band members worked with the contractor on the fabrication of the wall.


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