Search results for "Respond dynamically" in Home Design Ideas

Rivington Street Building is a multi-family residential building in New York City that was designed, developed and constructed from the ground up by Paul A. Castrucci, Architect. In order to successfully take on the roles of developer and contractor, Castrucci utilized his ability to balance budget, schedule and constructability.
The building is a part of its community and its facade responds to the human and contextual scale. The base of the building utilizes brick, tying it into the surrounding neighborhood. The top floors of the building break from the contextual base in form and material. The corrugated metal saw tooth roofline is a response to the environment, bringing in soft, northern light while providing roof area for a Photovoltaic array of solar panels. The top floor is connected to a roof garden filled with native plants. The result is a light-filled, dynamic space that is shaped by its relationship to daylight and connections to the exterior.
Constructed in 2003, Rivington Street Building is an example of the firm’s energy efficient design that utilizes sustainable methods such as a high-performance envelope, a solar Photovoltaic (PV) array and rainwater collection/grey water system.

Rivington Street Building is a multi-family residential building in New York City that was designed, developed and constructed from the ground up by Paul A. Castrucci, Architect. In order to successfully take on the roles of developer and contractor, Castrucci utilized his ability to balance budget, schedule and constructability.
The building is a part of its community and its facade responds to the human and contextual scale. The base of the building utilizes brick, tying it into the surrounding neighborhood. The top floors of the building break from the contextual base in form and material. The corrugated metal saw tooth roofline is a response to the environment, bringing in soft, northern light while providing roof area for a Photovoltaic array of solar panels. The top floor is connected to a roof garden filled with native plants. The result is a light-filled, dynamic space that is shaped by its relationship to daylight and connections to the exterior.
Constructed in 2003, Rivington Street Building is an example of the firm’s energy efficient design that utilizes sustainable methods such as a high-performance envelope, a solar Photovoltaic (PV) array and rainwater collection/grey water system.

An entirely new construction, the Brake House is a high-end modern custom residential home in Santa Cruz, CA designed by BARC Architecture. It is defined by the dynamic form of two opposing, bent metal roofs that interlock and open in strategic areas.
This architectural form allows the custom coastal residence to respond directly to its site conditions by centering the home around a side yard courtyard. This arrangement seamlessly opens the interior to the natural expanse of the Rodeo Gulch watershed, while still providing essential privacy and shelter from coastal elements.
The metal roofs bend—or 'brake'—into walls that terminate directly into the earth, giving the structure a deeply planted, anchored feeling. Meanwhile, the vaulted shed roof opens expansively to the south to flood the interior with natural light.
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This two-bedroom detached accessory dwelling unit (DADU) responds to a small footprint creating a new 800 square-foot structure in the backyard of an existing house. The size led to designing the home vertically, as a small two-story dwelling.
To create a taller, more dynamic living space, the ceiling is vaulted following a gabled roof line. Two bedrooms, located mostly below grade to maximize the amount of rentable square footage, have window wells to bring in ample natural light and provide required window exits. The main floor consists of a vaulted living and kitchen spaces with a small bath and entry.
The landscape surrounding the new dwelling creates an inviting setting, both distinguishing and complementing the unit from the primary home within the same property.

Rivington Street Building is a multi-family residential building in New York City that was designed, developed and constructed from the ground up by Paul A. Castrucci, Architect. In order to successfully take on the roles of developer and contractor, Castrucci utilized his ability to balance budget, schedule and constructability.
The building is a part of its community and its facade responds to the human and contextual scale. The base of the building utilizes brick, tying it into the surrounding neighborhood. The top floors of the building break from the contextual base in form and material. The corrugated metal saw tooth roofline is a response to the environment, bringing in soft, northern light while providing roof area for a Photovoltaic array of solar panels. The top floor is connected to a roof garden filled with native plants. The result is a light-filled, dynamic space that is shaped by its relationship to daylight and connections to the exterior.
Constructed in 2003, Rivington Street Building is an example of the firm’s energy efficient design that utilizes sustainable methods such as a high-performance envelope, a solar Photovoltaic (PV) array and rainwater collection/grey water system.

dale cohen designstudio has gathered her favorite artists, designers and purveyors in an installation at the Sag Harbor architectural landmark The Watchcase Project by Cape Advisors. Populating a Watchcase Townhouse with vibrant visual practitioners, Dale has composed a series of rooms that speak to the exquisite quality of space, light, and scale in the Watchcase Project. She has selected a group of artists mostly from the East End.
She has responded to the rooms, staircases, and walls by applying kinetic color and imagery with a contemporary take. And Dale recruited Annie Coggan and Caleb Crawford to do their own room they’ve named the Melville Room. They gathered a series of their work, a practice called Didactic Decorative Objects and inspired by the Sag Harbor Whaling Museum. Researching the work of Herman Melville, who speaks of Sag Harbor is his epic Moby Dick.
The art installation is accompanied by design greats, FritzHansen, Vitra, vintage Knoll and Swedish design company Overman, contemporary and vintage rugs by Doris Leslie Blau, mohair rug by Sacco, fabrics by Fischbacher for Stark and Knoll Luxe, and pillows from Maharam, all to make a dynamic conversation in a domestic setting.
This is not typical beach-house decor.

Rivington Street Building is a multi-family residential building in New York City that was designed, developed and constructed from the ground up by Paul A. Castrucci, Architect. In order to successfully take on the roles of developer and contractor, Castrucci utilized his ability to balance budget, schedule and constructability.
The building is a part of its community and its facade responds to the human and contextual scale. The base of the building utilizes brick, tying it into the surrounding neighborhood. The top floors of the building break from the contextual base in form and material. The corrugated metal saw tooth roofline is a response to the environment, bringing in soft, northern light while providing roof area for a Photovoltaic array of solar panels. The top floor is connected to a roof garden filled with native plants. The result is a light-filled, dynamic space that is shaped by its relationship to daylight and connections to the exterior.
Constructed in 2003, Rivington Street Building is an example of the firm’s energy efficient design that utilizes sustainable methods such as a high-performance envelope, a solar Photovoltaic (PV) array and rainwater collection/grey water system.

As the space is multi functional between a dining table and an island, the space required seating that was dynamic. Responding to this, the designer went with these comfortable mid height cloth barstools. With dark painted legs and beige upholstery, the chairs bring the warm beige tones of the porcelain tile flooring up to the dining table, connecting and balancing the palettes of the room.

This two-bedroom detached accessory dwelling unit (DADU) responds to a small footprint creating a new 800 square-foot structure in the backyard of an existing house. The size led to designing the home vertically, as a small two-story dwelling.
To create a taller, more dynamic living space, the ceiling is vaulted following a gabled roof line. Two bedrooms, located mostly below grade to maximize the amount of rentable square footage, have window wells to bring in ample natural light and provide required window exits. The main floor consists of a vaulted living and kitchen spaces with a small bath and entry.
The landscape surrounding the new dwelling creates an inviting setting, both distinguishing and complementing the unit from the primary home within the same property.

The Hästens Vividus® is not just a bed — it is a profound expression of perfection in craftsmanship, comfort, and design. As our second most exclusive model, Vividus is handcrafted by a dedicated team of master artisans in a private atelier in Köping, Sweden, where time and care are never compromised.
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Rivington Street Building is a multi-family residential building in New York City that was designed, developed and constructed from the ground up by Paul A. Castrucci, Architect. In order to successfully take on the roles of developer and contractor, Castrucci utilized his ability to balance budget, schedule and constructability.
The building is a part of its community and its facade responds to the human and contextual scale. The base of the building utilizes brick, tying it into the surrounding neighborhood. The top floors of the building break from the contextual base in form and material. The corrugated metal saw tooth roofline is a response to the environment, bringing in soft, northern light while providing roof area for a Photovoltaic array of solar panels. The top floor is connected to a roof garden filled with native plants. The result is a light-filled, dynamic space that is shaped by its relationship to daylight and connections to the exterior.
Constructed in 2003, Rivington Street Building is an example of the firm’s energy efficient design that utilizes sustainable methods such as a high-performance envelope, a solar Photovoltaic (PV) array and rainwater collection/grey water system.

Sharifi-ha House
Uncertainty and flexibility lie at the heart of the design concept in Sharifi-ha House. The sensational, spatial qualities of the interiors, as well as the formal configuration of its exterior, directly respond to the displacement of turning boxes that lead the building volume to become open or closed, obtaining introverted or extroverted character. These changes may occur according to changing seasons or functional scenarios of floor plans.
Like many other urban plots, the land for this project had a noticeably narrow façade-width compared with its length. Consequently, our expertise in transforming a two-dimensional façade to a three-dimensional one became indispensable. Here, the openness /closure of the building volume is a reference to traditional Iranian houses, which would dynamically serve as seasonal modes of habitation by offering both a Zemestan-Neshin (winter living room) and Taabestan-Neshin (summer living room) to their residents. In summertime, Sharifi-ha House offers an open /transparent /perforated volume with wide, large terraces. In contrast, during Tehran’s cold, snowy winters the volume closes itself, offering minimal openings in total absence of those wide summer terraces. In this project, the challenges to the concepts of open/closed typology (introverted/extroverted character) led to an exciting spatial transformation of an ever-changing residential building.
The House is distributed over seven floors: the two basement floors are allocated to family conviviality, fitness facilities, and wellness areas, while the ground floor hosts parking and housekeeping rooms. Public activities all happen on the first and second floors, and the family’s private life takes place on the third and fourth floors.
The project consisted of four major parts; the fixed volume of the structure, the void, and the fixed volume and the mobile volume, respectively. When the turning boxes are closed, the building captures sunlight throughout the space of the central void, which also connects the two fixed volumes by suspended bridges.
The house adapts to the functional needs of its residents. For instance, depending on whether there is a guest or not, the guest room (located on the second floor) can be reconfigured for different purposes. Similarly, home office and breakfast room (turning rooms on the first and third floors) can change the formality of their appearance according to their residents’ desire. In other words, there is always the possibility of having different seasonal or lighting scenarios, some of which have been already considered in the BMS program of the project.
From the initial design steps, we noticed that three pine trees outside could be incorporated into the spaces of the interior. Now, in the open mode of the house, the trees are pleasantly captured by the window frames.
Stepping back for about three meters from the permitted construction boundary line allowed us to provide splendid daylight for the basement floors by inserting a glass fountain. The fitness and wellness areas are accommodated between this fountain and the basement pool where reflective installations reverberate the water’s radiance all over the space.
The applied manufacturing technique for the turning mechanism was in fact a simple one; the same method which is currently employed in turning theatrical scenes, turning the floor of car exhibitions, steel companies and the shipping industry in Iran. But as our client himself was into importing CNC and other similar industrial German machines, he preferred the structural system to be fabricated in Germany. In doing so, he could engage his employees in the manufacturing process and thus train them for future maintenance purposes.
Details of the handrails and air-penetration controlling methods were major issues considered in developing the design of the turning boxes. Designing foldable handrails and refining the edges of the boxes happened to be our feasible solutions.
Considering the specialties of this kind of architecture, the structural system was inevitably a customized one. After digitally modeling the structure, a series of SAP2000 analysis were undertaken to examine static/dynamic performance of the proposed system. Being partially moveable is the dominant feature of this structural assembly, which was contemplated throughout the fabrication process by the German manufacturer company. The main loads all rest on the beams of the living rooms.
Due to the various configurations the turning boxes may take, the loading calculation has been estimated based on the largest possible loading value applied to the system. Additionally, in order to prevent structural deformation controlling the probable vibrations in the turning boxes was taken into account during the design/calculations of the structure.
The house was titled Sharifi-ha House, in honor of traditional Iranian mansions.

Sharifi-ha House
Uncertainty and flexibility lie at the heart of the design concept in Sharifi-ha House. The sensational, spatial qualities of the interiors, as well as the formal configuration of its exterior, directly respond to the displacement of turning boxes that lead the building volume to become open or closed, obtaining introverted or extroverted character. These changes may occur according to changing seasons or functional scenarios of floor plans.
Like many other urban plots, the land for this project had a noticeably narrow façade-width compared with its length. Consequently, our expertise in transforming a two-dimensional façade to a three-dimensional one became indispensable. Here, the openness /closure of the building volume is a reference to traditional Iranian houses, which would dynamically serve as seasonal modes of habitation by offering both a Zemestan-Neshin (winter living room) and Taabestan-Neshin (summer living room) to their residents. In summertime, Sharifi-ha House offers an open /transparent /perforated volume with wide, large terraces. In contrast, during Tehran’s cold, snowy winters the volume closes itself, offering minimal openings in total absence of those wide summer terraces. In this project, the challenges to the concepts of open/closed typology (introverted/extroverted character) led to an exciting spatial transformation of an ever-changing residential building.
The House is distributed over seven floors: the two basement floors are allocated to family conviviality, fitness facilities, and wellness areas, while the ground floor hosts parking and housekeeping rooms. Public activities all happen on the first and second floors, and the family’s private life takes place on the third and fourth floors.
The project consisted of four major parts; the fixed volume of the structure, the void, and the fixed volume and the mobile volume, respectively. When the turning boxes are closed, the building captures sunlight throughout the space of the central void, which also connects the two fixed volumes by suspended bridges.
The house adapts to the functional needs of its residents. For instance, depending on whether there is a guest or not, the guest room (located on the second floor) can be reconfigured for different purposes. Similarly, home office and breakfast room (turning rooms on the first and third floors) can change the formality of their appearance according to their residents’ desire. In other words, there is always the possibility of having different seasonal or lighting scenarios, some of which have been already considered in the BMS program of the project.
From the initial design steps, we noticed that three pine trees outside could be incorporated into the spaces of the interior. Now, in the open mode of the house, the trees are pleasantly captured by the window frames.
Stepping back for about three meters from the permitted construction boundary line allowed us to provide splendid daylight for the basement floors by inserting a glass fountain. The fitness and wellness areas are accommodated between this fountain and the basement pool where reflective installations reverberate the water’s radiance all over the space.
The applied manufacturing technique for the turning mechanism was in fact a simple one; the same method which is currently employed in turning theatrical scenes, turning the floor of car exhibitions, steel companies and the shipping industry in Iran. But as our client himself was into importing CNC and other similar industrial German machines, he preferred the structural system to be fabricated in Germany. In doing so, he could engage his employees in the manufacturing process and thus train them for future maintenance purposes.
Details of the handrails and air-penetration controlling methods were major issues considered in developing the design of the turning boxes. Designing foldable handrails and refining the edges of the boxes happened to be our feasible solutions.
Considering the specialties of this kind of architecture, the structural system was inevitably a customized one. After digitally modeling the structure, a series of SAP2000 analysis were undertaken to examine static/dynamic performance of the proposed system. Being partially moveable is the dominant feature of this structural assembly, which was contemplated throughout the fabrication process by the German manufacturer company. The main loads all rest on the beams of the living rooms.
Due to the various configurations the turning boxes may take, the loading calculation has been estimated based on the largest possible loading value applied to the system. Additionally, in order to prevent structural deformation controlling the probable vibrations in the turning boxes was taken into account during the design/calculations of the structure.
The house was titled Sharifi-ha House, in honor of traditional Iranian mansions.

A dynamic design articulated to respond directly to its specific location. Height, colour, voids and form combine to express the client’s individuality through the architecture.

A dynamic design articulated to respond directly to its specific location. Height, colour, voids and form combine to express the client’s individuality through the architecture.

A dynamic design articulated to respond directly to its specific location. Height, colour, voids and form combine to express the client’s individuality through the architecture.

Rivington Street Building is a multi-family residential building in New York City that was designed, developed and constructed from the ground up by Paul A. Castrucci, Architect. In order to successfully take on the roles of developer and contractor, Castrucci utilized his ability to balance budget, schedule and constructability.
The building is a part of its community and its facade responds to the human and contextual scale. The base of the building utilizes brick, tying it into the surrounding neighborhood. The top floors of the building break from the contextual base in form and material. The corrugated metal saw tooth roofline is a response to the environment, bringing in soft, northern light while providing roof area for a Photovoltaic array of solar panels. The top floor is connected to a roof garden filled with native plants. The result is a light-filled, dynamic space that is shaped by its relationship to daylight and connections to the exterior.
Constructed in 2003, Rivington Street Building is an example of the firm’s energy efficient design that utilizes sustainable methods such as a high-performance envelope, a solar Photovoltaic (PV) array and rainwater collection/grey water system.

Rivington Street Building is a multi-family residential building in New York City that was designed, developed and constructed from the ground up by Paul A. Castrucci, Architect. In order to successfully take on the roles of developer and contractor, Castrucci utilized his ability to balance budget, schedule and constructability.
The building is a part of its community and its facade responds to the human and contextual scale. The base of the building utilizes brick, tying it into the surrounding neighborhood. The top floors of the building break from the contextual base in form and material. The corrugated metal saw tooth roofline is a response to the environment, bringing in soft, northern light while providing roof area for a Photovoltaic array of solar panels. The top floor is connected to a roof garden filled with native plants. The result is a light-filled, dynamic space that is shaped by its relationship to daylight and connections to the exterior.
Constructed in 2003, Rivington Street Building is an example of the firm’s energy efficient design that utilizes sustainable methods such as a high-performance envelope, a solar Photovoltaic (PV) array and rainwater collection/grey water system.

Rivington Street Building is a multi-family residential building in New York City that was designed, developed and constructed from the ground up by Paul A. Castrucci, Architect. In order to successfully take on the roles of developer and contractor, Castrucci utilized his ability to balance budget, schedule and constructability.
The building is a part of its community and its facade responds to the human and contextual scale. The base of the building utilizes brick, tying it into the surrounding neighborhood. The top floors of the building break from the contextual base in form and material. The corrugated metal saw tooth roofline is a response to the environment, bringing in soft, northern light while providing roof area for a Photovoltaic array of solar panels. The top floor is connected to a roof garden filled with native plants. The result is a light-filled, dynamic space that is shaped by its relationship to daylight and connections to the exterior.
Constructed in 2003, Rivington Street Building is an example of the firm’s energy efficient design that utilizes sustainable methods such as a high-performance envelope, a solar Photovoltaic (PV) array and rainwater collection/grey water system.

Rivington Street Building is a multi-family residential building in New York City that was designed, developed and constructed from the ground up by Paul A. Castrucci, Architect. In order to successfully take on the roles of developer and contractor, Castrucci utilized his ability to balance budget, schedule and constructability.
The building is a part of its community and its facade responds to the human and contextual scale. The base of the building utilizes brick, tying it into the surrounding neighborhood. The top floors of the building break from the contextual base in form and material. The corrugated metal saw tooth roofline is a response to the environment, bringing in soft, northern light while providing roof area for a Photovoltaic array of solar panels. The top floor is connected to a roof garden filled with native plants. The result is a light-filled, dynamic space that is shaped by its relationship to daylight and connections to the exterior.
Constructed in 2003, Rivington Street Building is an example of the firm’s energy efficient design that utilizes sustainable methods such as a high-performance envelope, a solar Photovoltaic (PV) array and rainwater collection/grey water system.
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