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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.

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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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.

The homeowners had owned this 2,800sf apartment for many years but had never undertaken renovations as they lived in Washington D.C. The goal was to functionally update and renovate the spacious Classic 8 landmark apartment while preserving its pre-war character.
With south and east exposures at 10 windows facing Central Park and downtown from a high floor, the apartment was light-filled and afforded significant views from the living room, dining room and library as well as two of the bedrooms. The goal was to create an urban oasis in the aerie-like apartment with light and views in a way that seamlessly integrated traditional methods, modern materials, lighting and technology.

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.

At Code Construction, we utilize advanced drone inspections to ensure the highest level of quality workmanship for your roofing projects. Our drone-assisted roof inspections offer a precise and comprehensive view of your roof, capturing high-resolution images that help identify even the smallest defects or potential issues.
This aerial inspection method allows us to quickly and safely assess the quality of installation, check for proper sealing, flashing, and ensure that all aspects of the roof meet our rigorous standards. By using drones, we minimize the need for physical inspections, reducing risk and enhancing efficiency while providing a more thorough analysis of your roof’s condition.
Whether you're evaluating recent roofing work or conducting a post-construction inspection, our drone roof inspections give you peace of mind by confirming that your roof is built to last.

Imagine a modern Lakewood home tailored for two veterans, blending accessibility with sleek design on a tricky lot. Jazz House turns a triangular site into a sunny haven, supporting mobility needs while celebrating life through light and space.
The couple—a doctor and jazz musician—needed a home for limited mobility, with low thresholds and elevator prep. Close to transit for convenience, the design uses the lot's shape to invite winter sun and ease summer heat.
Setbacks on the odd lot could have limited options, but an elongated build maximizes space and light. For injuries, accessible features create smooth movement, turning obstacles into a comfortable, future-proof setup.
The concept focuses on clean, light-filled rooms with modern materials for a fresh feel. A private jazz studio adds personal touch, while the shape enhances views and flow.
Modern methods ensure strength and style, built to handle Colorado's demands with efficiency in mind.
Spacious with four bedrooms and three baths, big windows flood it with light. Private and shared areas, including the studio, make it versatile for work, music, and relaxation.
Since 2015, Jazz House has been a supportive retreat that adapts to life. It offers ease, beauty, and connection to the city – a home where challenges become strengths for joyful living.

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.

Gasco INC is a trusted Gasket Manufacturer in Bangalore, providing high-quality sealing solutions for a wide range of industrial applications. Our gaskets are manufactured using quality raw materials and modern production methods to deliver excellent durability, dimensional accuracy, leak prevention, and reliable performance. Designed to withstand demanding pressure and temperature conditions, our sealing products are widely used across industries such as oil & gas, petrochemical, power generation, marine, chemical processing, and other heavy-duty industrial sectors.
As an established Gasket Manufacturer in India, we offer a comprehensive range of industrial sealing products engineered to meet diverse application requirements. Our product portfolio includes high-performance Ring Joint Gaskets, developed for critical sealing applications that require strong mechanical performance, pressure resistance, and long service life. We focus on precision manufacturing, consistent product quality, and dependable delivery to support the operational requirements of industries where safe and efficient sealing is essential.
Gasco INC is also a reliable Gasket Supplier in Bangalore, supplying advanced sealing solutions for demanding industrial environments. Our range includes Flexible Graphite Gaskets, valued for their thermal stability and chemical resistance, along with Expanded PTFE Sheet Gaskets, designed to provide excellent sealing efficiency, corrosion resistance, and durability. With a focus on quality, engineering precision, and customer requirements, we provide dependable gasket solutions suitable for various industrial applications.
We are also a leading Gasket Supplier in Singapore.

Our client wanted a SIP built home and we incorporated this and many other energy and sustainability features into this home which was in the Sheboygan County Parade of Homes.
Named "The Green Balanced Home", this project was all about creating practical and stunning living spaces that combined with sound environmental building materials and methods. By showcasing an assortment of leading-edge- green technologies, the Green Balanced Home was the talk of the Parade that year. In cooperation with our client, our methodology was:
Start with the site:
1. Protected tree lines
2. Drought resistant vegetation
3. High proportion of natural, plantings versus higher maintenance lawn
4. Optimal home placement on lot for solar exposure
5. Narrower streets
Build a high thermal envelope:
1. R-10 Gold Guard laminated EPS foam under basement, garage, and patio.
2. R-10 Gold Guard laminated EPS foam around exterior foundation walls.
3. R-10 ESP foam "shirt" around foundation
4. R-24 Structural Insulated panels (SIPs) for exterior walls, including garage
5. Sprayed foam in basement box sills and attic separation walls
6. R-15 garage door
7. R-60 blown cellulose attic insulation
Add efficient heating, cooling, ventilation, and electric utilization elements:
1. High efficiency fireplace with auxiliary ducting
2. Pull-out exterior wood-loading drawer
3. Air-to-air heat pump
4. 95% efficient, ultra-quiet variable capacity furnace
5. 19 SEER air conditioner
6. Five zones with programmable thermostats
7. Heat reclamation from hot water usage
8. LED lighting
9. Skylights
10. Energy Star appliances
11. Prep for in-floor heating system
12. Prep for photovoltaic (PV) solar
13. Prep for solar hot water
Incorporate water conservation:
1. Rain water recapture for toilet flushing and irrigation
2. Motion activated hot water circulation system
3. Power flush toilets
4. Dual flush toilets
Create high indoor air quality:
1. HEPA and UV filters
2. Air-to-air exchanger
3. Ultra-quiet bathroom fans with moisture sensor activation
Integrate sustainable, efficient materials:
* Expanded polystyrene (ESP) foam that does not emit HCFC "greenhouse" gases
* Oriented strand board (OSB) based siding, trim, and shutters
* SIPs panels that contain ESP an OSB
* Carpeting pads made from recycled materials
* Stewardship-certified cabinet manufacturing
* Job site recycling and reduce waste with SIPs

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.

5 beds, 5 ½ baths, and approximately 4,289 square feet. VISION House - Los Angeles '12 by Structure Home...a collaboration with Green Builder Media to build a new and sustainable showcase home, the first of its kind on the West Coast. This custom home demonstrated current products, materials and construction methods on the leading edge of sustainability, within communities throughout Los Angeles. This home was an inspired, collaborative architectural home by KAA architects & P2 Design. The interior was done by Jill Wolff Interior Design. Upon a courtyard approach, a peaceful setting envelopes you. Sun-filled master bedroom w/oil-rubbed Walnut floors; huge walk-in closet; unsurpassed Kohler master bathroom. Superb open kitchen w/state of the art Gaggenau appliances, is linked to family/dining areas, accented w/Porcelain tile floors, voluminous stained cedar ceilings, leading you thru fold away glass doors, to outdoor living room with fireplace & private yard. This home combines Contemporary design, CA Mission style lines & Traditional influence, providing living conditions of ease & comfort for your specific lifestyle. Achieved LEED Silver Certification, offering energy efficiency; sustainability; and advancements in technology. Photo by: Latham Architectural

Photo credit: Scott McDonald @ Hedrich Blessing
7RR-Ecohome:
The design objective was to build a house for a couple recently married who both had kids from previous marriages. How to bridge two families together?
The design looks forward in terms of how people live today. The home is an experiment in transparency and solid form; removing borders and edges from outside to inside the house, and to really depict “flowing and endless space”. The house floor plan is derived by pushing and pulling the house’s form to maximize the backyard and minimize the public front yard while welcoming the sun in key rooms by rotating the house 45-degrees to true north. The angular form of the house is a result of the family’s program, the zoning rules, the lot’s attributes, and the sun’s path. We wanted to construct a house that is smart and efficient in terms of construction and energy, both in terms of the building and the user. We could tell a story of how the house is built in terms of the constructability, structure and enclosure, with a nod to Japanese wood construction in the method in which the siding is installed and the exposed interior beams are placed in the double height space. We engineered the house to be smart which not only looks modern but acts modern; every aspect of user control is simplified to a digital touch button, whether lights, shades, blinds, HVAC, communication, audio, video, or security. We developed a planning module based on a 6-foot square room size and a 6-foot wide connector called an interstitial space for hallways, bathrooms, stairs and mechanical, which keeps the rooms pure and uncluttered. The house is 6,200 SF of livable space, plus garage and basement gallery for a total of 9,200 SF. A large formal foyer celebrates the entry and opens up to the living, dining, kitchen and family rooms all focused on the rear garden. The east side of the second floor is the Master wing and a center bridge connects it to the kid’s wing on the west. Second floor terraces and sunscreens provide views and shade in this suburban setting. The playful mathematical grid of the house in the x, y and z axis also extends into the layout of the trees and hard-scapes, all centered on a suburban one-acre lot.
Many green attributes were designed into the home; Ipe wood sunscreens and window shades block out unwanted solar gain in summer, but allow winter sun in. Patio door and operable windows provide ample opportunity for natural ventilation throughout the open floor plan. Minimal windows on east and west sides to reduce heat loss in winter and unwanted gains in summer. Open floor plan and large window expanse reduces lighting demands and maximizes available daylight. Skylights provide natural light to the basement rooms. Durable, low-maintenance exterior materials include stone, ipe wood siding and decking, and concrete roof pavers. Design is based on a 2' planning grid to minimize construction waste. Basement foundation walls and slab are highly insulated. FSC-certified walnut wood flooring was used. Light colored concrete roof pavers to reduce cooling loads by as much as 15%. 2x6 framing allows for more insulation and energy savings. Super efficient windows have low-E argon gas filled units, and thermally insulated aluminum frames. Permeable brick and stone pavers reduce the site’s storm-water runoff. Countertops use recycled composite materials. Energy-Star rated furnaces and smart thermostats are located throughout the house to minimize duct runs and avoid energy loss. Energy-Star rated boiler that heats up both radiant floors and domestic hot water. Low-flow toilets and plumbing fixtures are used to conserve water usage. No VOC finish options and direct venting fireplaces maintain a high interior air quality. Smart home system controls lighting, HVAC, and shades to better manage energy use. Plumbing runs through interior walls reducing possibilities of heat loss and freezing problems. A large food pantry was placed next to kitchen to reduce trips to the grocery store. Home office reduces need for automobile transit and associated CO2 footprint. Plan allows for aging in place, with guest suite than can become the master suite, with no need to move as family members mature.

Photo credit: Scott McDonald @ Hedrich Blessing
7RR-Ecohome:
The design objective was to build a house for a couple recently married who both had kids from previous marriages. How to bridge two families together?
The design looks forward in terms of how people live today. The home is an experiment in transparency and solid form; removing borders and edges from outside to inside the house, and to really depict “flowing and endless space”. The house floor plan is derived by pushing and pulling the house’s form to maximize the backyard and minimize the public front yard while welcoming the sun in key rooms by rotating the house 45-degrees to true north. The angular form of the house is a result of the family’s program, the zoning rules, the lot’s attributes, and the sun’s path. We wanted to construct a house that is smart and efficient in terms of construction and energy, both in terms of the building and the user. We could tell a story of how the house is built in terms of the constructability, structure and enclosure, with a nod to Japanese wood construction in the method in which the siding is installed and the exposed interior beams are placed in the double height space. We engineered the house to be smart which not only looks modern but acts modern; every aspect of user control is simplified to a digital touch button, whether lights, shades, blinds, HVAC, communication, audio, video, or security. We developed a planning module based on a 6-foot square room size and a 6-foot wide connector called an interstitial space for hallways, bathrooms, stairs and mechanical, which keeps the rooms pure and uncluttered. The house is 6,200 SF of livable space, plus garage and basement gallery for a total of 9,200 SF. A large formal foyer celebrates the entry and opens up to the living, dining, kitchen and family rooms all focused on the rear garden. The east side of the second floor is the Master wing and a center bridge connects it to the kid’s wing on the west. Second floor terraces and sunscreens provide views and shade in this suburban setting. The playful mathematical grid of the house in the x, y and z axis also extends into the layout of the trees and hard-scapes, all centered on a suburban one-acre lot.
Many green attributes were designed into the home; Ipe wood sunscreens and window shades block out unwanted solar gain in summer, but allow winter sun in. Patio door and operable windows provide ample opportunity for natural ventilation throughout the open floor plan. Minimal windows on east and west sides to reduce heat loss in winter and unwanted gains in summer. Open floor plan and large window expanse reduces lighting demands and maximizes available daylight. Skylights provide natural light to the basement rooms. Durable, low-maintenance exterior materials include stone, ipe wood siding and decking, and concrete roof pavers. Design is based on a 2' planning grid to minimize construction waste. Basement foundation walls and slab are highly insulated. FSC-certified walnut wood flooring was used. Light colored concrete roof pavers to reduce cooling loads by as much as 15%. 2x6 framing allows for more insulation and energy savings. Super efficient windows have low-E argon gas filled units, and thermally insulated aluminum frames. Permeable brick and stone pavers reduce the site’s storm-water runoff. Countertops use recycled composite materials. Energy-Star rated furnaces and smart thermostats are located throughout the house to minimize duct runs and avoid energy loss. Energy-Star rated boiler that heats up both radiant floors and domestic hot water. Low-flow toilets and plumbing fixtures are used to conserve water usage. No VOC finish options and direct venting fireplaces maintain a high interior air quality. Smart home system controls lighting, HVAC, and shades to better manage energy use. Plumbing runs through interior walls reducing possibilities of heat loss and freezing problems. A large food pantry was placed next to kitchen to reduce trips to the grocery store. Home office reduces need for automobile transit and associated CO2 footprint. Plan allows for aging in place, with guest suite than can become the master suite, with no need to move as family members mature.

5 beds, 5 ½ baths, and approximately 4,289 square feet. VISION House - Los Angeles '12 by Structure Home...a collaboration with Green Builder Media to build a new and sustainable showcase home, the first of its kind on the West Coast. This custom home demonstrated current products, materials and construction methods on the leading edge of sustainability, within communities throughout Los Angeles. This home was an inspired, collaborative architectural home by KAA architects & P2 Design. The interior was done by Jill Wolff Interior Design. Upon a courtyard approach, a peaceful setting envelopes you. Sun-filled master bedroom w/oil-rubbed Walnut floors; huge walk-in closet; unsurpassed Kohler master bathroom. Superb open kitchen w/state of the art Gaggenau appliances, is linked to family/dining areas, accented w/Porcelain tile floors, voluminous stained cedar ceilings, leading you thru fold away glass doors, to outdoor living room with fireplace & private yard. This home combines Contemporary design, CA Mission style lines & Traditional influence, providing living conditions of ease & comfort for your specific lifestyle. Achieved LEED Silver Certification, offering energy efficiency; sustainability; and advancements in technology. Photo by: Latham Architectural
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