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Brent Bingham Photography
This is an example of a contemporary full sun side yard pond in Denver.
This is an example of a contemporary full sun side yard pond in Denver.

Inspiration for a mid-sized tropical master beige tile and porcelain tile porcelain tile freestanding bathtub remodel in Hawaii with a vessel sink

Photography by Patrick Ray
With a footprint of just 450 square feet, this micro residence embodies minimalism and elegance through efficiency. Particular attention was paid to creating spaces that support multiple functions as well as innovative storage solutions. A mezzanine-level sleeping space looks down over the multi-use kitchen/living/dining space as well out to multiple view corridors on the site. To create a expansive feel, the lower living space utilizes a bifold door to maximize indoor-outdoor connectivity, opening to the patio, endless lap pool, and Boulder open space beyond. The home sits on a ¾ acre lot within the city limits and has over 100 trees, shrubs and grasses, providing privacy and meditation space. This compact home contains a fully-equipped kitchen, ¾ bath, office, sleeping loft and a subgrade storage area as well as detached carport.
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Cassius Deluxe Excess Lounger Sleeper Sofa Queen Bed By .
Danish multifunctional design for stylish living in small spaces for guest rooms, small apartments or living rooms. Perfect seating and sleeping comfort embodied in an elegant design that allows it to be free standing in the middle of a room. The deluxe styling adds a classic, modernistic character to the sofa.This convertible upholstered sofa changes from a sofa to a fully reclined Queen sized bed. Features combination of high quality steel frames and pocket springs is topped with a layer of quality foam and a layer of heavy fiber fill for a 10" thick mattress offering supreme comfort.
Dimensions
Overall: 91" W X 45" D X 28" H
Reclined: 91" W X 71" D X 16" H
Arm Height: 28" H Seat Height: 16"
Icomfort pocket springs make the sleeper sofa feel just like a bed
Matte black powder-coated steel frame
Solid Oak Wood Legs
Multifunction means more functions on the same amount of square meters, but it only makes complete sense if design, comfort and quality go hand in hand. We strive to design furniture that fulfills these criteria - furniture with a potential to make a positive difference in your everyday life.

When I came to this property not only was the landscape a scrappy mess the property also had some very real grading and drainage issues that were jeopardizing the safety of this house. As recent transplants from New Jerseys to Southern California these clients were in awe of all the plants they were seeing in their neighborhood. Living on the water at the Ventura harbor they wanted to be able to take full advantage or the outdoor lifestyle and cool ocean breeze. Being environmentally conscious citizens, these clients were very concerned that their garden was designed with sustainability as a leading factor. As they said in our initial consultation, “Would want or garden be part of the solution not part of the problem.”
This property is the last house on the bottom of a gently sloping street. All the water from the neighbor’s houses drain onto this property. When I came into this project the back yard sloped into the house. When it would rain the water would pool up against the house causing water damage. To address the drainage we employed several tactics. Firstly, we had to invert the slope in the back yard so that water would not pool against the house. We created a very minor slope going away from the house so that water drains away but so the patio area feels flat.
The back of the back yard had an existing retaining wall made out of shabby looking slump stone. In front of that retaining wall we created a beautiful natural stone retaining wall. This retain wall severs many purposes. One it works as a place to put some of the soil removed from the grading giving this project a smaller carbon foot print (moving soil of a site burns a lot of fossil fuel). The retaining wall also helps obscure the shabby existing retaining wall and allows for planting space above the footing from the existing retaining wall. The soil behind the ne retaining wall is slightly lower than the top of the wall so that when the run on water on from the neighbor’s property flows it is slowed down and absorbed before it has a chance to get near the house. Finally, the wall is at a height designed to serve as overflow seating as these clients intend to have occasional large parties and gatherings.
Other efforts made to help keep the house safe and dry are that we used permeable paving. With the hardscape being comprised of flag stone with gravel in-between water has a chance to soak into the ground so it does not flow into spots where it will pool up.
The final element to help keep the house dry is the addition of infiltration swales. Infiltration swales are depressions in the landscape that capture rain water. The down spouts on the sides of the houses are connected to pipe that goes under the ground and conveys the water to the swales. In this project it helps move rain water away from the house. In general, these Infiltration swales are a powerful element in creating sustainable landscapes. These swales capture pollutants that accumulate on the roof and in the landscape. Biology in the soil in the swales can break down these pollutants. When run of watered is not captured by soil on a property the dirty water flows into water ways and then the ocean were the biology that breaks down the pollutants is not as prolific. This is particularly important in this project as it drains directly into the harbor. The water that is absorbed in to the swales can replenish aquafers as well as increasing the water available to the plants planted in that area recusing the amount of water that is needed from irrigation.
When it came to the planting we went with a California friendly tropical theme. Using lots of succulents and plants with colorful foliage we created vibrant lush landscape that will have year around color. We planted densely (the images in the picture were taken only a month after installation). Taller drought tolerant plants to help regulate the temperature and loss of water from the plants below them. The dense plantings will help keep the garden, the house and even the neighborhood cooler on hot days, will provide spaces for birds to enjoy and will create an illusion of depth in a somewhat narrow space.
Today this garden is a space these homeowners can fully enjoy while having the peace of mind that their house is protected from flooding and they are helping the environment.

Example of a large classic galley light wood floor open concept kitchen design in Other with an undermount sink, beaded inset cabinets, white cabinets, quartzite countertops, white backsplash, subway tile backsplash, stainless steel appliances and a peninsula

Builder & Interior Selections: Kyle Hunt & Partners, Architect: Sharratt Design Company, Landscape Design: Yardscapes, Photography by James Kruger, LandMark Photography

Example of a country concrete patio design in San Francisco with a roof extension

Inspiration for a large timeless galley light wood floor open concept kitchen remodel in Other with an undermount sink, beaded inset cabinets, white cabinets, quartzite countertops, white backsplash, subway tile backsplash, stainless steel appliances and a peninsula

C. Weaks Interiors is a premier interior design firm with offices in Atlanta. Our reputation reflects a level of attention and service designed to make decorating your home as enjoyable as living in it.

Inspiration for a transitional medium tone wood floor and brown floor mudroom remodel in DC Metro with beige walls

u2014 ALE: Wayne Rain Garden
Pennsylvania Landscape & Nursery Association
u2014 ALE: Wayne Rain Garden
Terren Landscapes http://www.terrenlandscapes.com
2014 PLNA Awards for Landscape Excellence winner
Category: Residential Up to $15,000
Award Level: Gold
Project Description:
Our company was contracted by the client to provide a creative solution to an ongoing drainage problem. Their property is located within 30 feet of a local stream that collects storm water from the surrounding area. The nearby stream and high water table caused the lawn area at the side of their home to flood and to remain waterlogged for a few days after each storm. The client not only had difficulty growing plants in the existing conditions, but also had a problem with mosquitoes due to standing water.
Our goal was to design a self-contained, naturalistic rain garden that slowed storm water runoff, allowed for percolation, and promoted infiltration while permitting excess clean water to enter the nearby stream with diminished force. As designed, the rain garden allows the earth to slowly and more naturally
absorb excess storm water while filtering out toxins such as excess nitrogen and phosphorous which are frequently found in the landscape, therefore reducing the contaminants entering the stream.
A percolation test was conducted with criteria of absorbing a one-inch rainstorm within four hours without overflow. The one-inch storm calculation included an existing downspout from the home, which would be piped into the rain garden to reduce roof runoff. The first test failed due to a deep layer of high clay-content soil. Excavation continued until a layer of sandy loam was reached, the percolation test was repeated, and a successful test result was achieved. Next, the entire rain garden basin was excavated to the sandy loam layer and the soil amended with compost and sand to create a highly porous planting media.
Geotextile fabric was placed to help reduce migration of the surface stone into the soil and allow for minimal maintenance. Gravel, river stone and small boulders were carefully placed to achieve the look of a natural streambed.
A palette of mostly native plants with a few non-invasive ornamentals were chosen for their ability to survive in extreme conditions ranging from floods to drought and were placed according to their specific preferences.
Wetland plants were chosen for the lowest portion of the rain garden as that area remains saturated for longer periods of time, with a Chionanthus virginicus as a focal point surrounded by irises and ferns at the lowest depth.
Plants tolerant of drier conditions were chosen for the upper edges of the garden. The beautiful colors of Monarda, Ligularia, Eupatorium, Solidago, Chelone, and Rudbeckia were scattered within the upper edge, while movement and softness were incorporated by use of the graceful Nassella that lines the border. Finally, winter interest was provided with a backdrop of Cornus sericea.
As built, this small rain garden creates tremendous impact by decreasing the amount of storm water runoff not only on our client's property, but also in the neighboring stream. It serves as a means of slowing the water and providing an area for infiltration back into the earth. The plants provide a habitat for birds, butterflies, and insects, working in harmony with nature and providing beautiful visual interest year-round.
Photo Credit:
Lisa C. Falls

u2014 ALE: Wayne Rain Garden
Pennsylvania Landscape & Nursery Association
u2014 ALE: Wayne Rain Garden
Terren Landscapes http://www.terrenlandscapes.com
2014 PLNA Awards for Landscape Excellence winner
Category: Residential Up to $15,000
Award Level: Gold
Project Description:
Our company was contracted by the client to provide a creative solution to an ongoing drainage problem. Their property is located within 30 feet of a local stream that collects storm water from the surrounding area. The nearby stream and high water table caused the lawn area at the side of their home to flood and to remain waterlogged for a few days after each storm. The client not only had difficulty growing plants in the existing conditions, but also had a problem with mosquitoes due to standing water.
Our goal was to design a self-contained, naturalistic rain garden that slowed storm water runoff, allowed for percolation, and promoted infiltration while permitting excess clean water to enter the nearby stream with diminished force. As designed, the rain garden allows the earth to slowly and more naturally
absorb excess storm water while filtering out toxins such as excess nitrogen and phosphorous which are frequently found in the landscape, therefore reducing the contaminants entering the stream.
A percolation test was conducted with criteria of absorbing a one-inch rainstorm within four hours without overflow. The one-inch storm calculation included an existing downspout from the home, which would be piped into the rain garden to reduce roof runoff. The first test failed due to a deep layer of high clay-content soil. Excavation continued until a layer of sandy loam was reached, the percolation test was repeated, and a successful test result was achieved. Next, the entire rain garden basin was excavated to the sandy loam layer and the soil amended with compost and sand to create a highly porous planting media.
Geotextile fabric was placed to help reduce migration of the surface stone into the soil and allow for minimal maintenance. Gravel, river stone and small boulders were carefully placed to achieve the look of a natural streambed.
A palette of mostly native plants with a few non-invasive ornamentals were chosen for their ability to survive in extreme conditions ranging from floods to drought and were placed according to their specific preferences.
Wetland plants were chosen for the lowest portion of the rain garden as that area remains saturated for longer periods of time, with a Chionanthus virginicus as a focal point surrounded by irises and ferns at the lowest depth.
Plants tolerant of drier conditions were chosen for the upper edges of the garden. The beautiful colors of Monarda, Ligularia, Eupatorium, Solidago, Chelone, and Rudbeckia were scattered within the upper edge, while movement and softness were incorporated by use of the graceful Nassella that lines the border. Finally, winter interest was provided with a backdrop of Cornus sericea.
As built, this small rain garden creates tremendous impact by decreasing the amount of storm water runoff not only on our client's property, but also in the neighboring stream. It serves as a means of slowing the water and providing an area for infiltration back into the earth. The plants provide a habitat for birds, butterflies, and insects, working in harmony with nature and providing beautiful visual interest year-round.
Photo Credit:
Lisa C. Falls

Wilhelm Photography
Master Walk In Closet with a His & Hers side. Customer wanted to maximize the space but was on a tight budget. We were competing with knock down units from Lowes on this project.

Photos by: Bob Gothard
Mid-sized beach style open concept dark wood floor and brown floor family room photo in Boston with gray walls and a media wall
Mid-sized beach style open concept dark wood floor and brown floor family room photo in Boston with gray walls and a media wall

Compact and mounded, Snow offers large, uniquely frilled double white flowers with magenta edges in fall. Copper new spring growth adds even more interest.
FEATURES
Bloom/Feature White and magenta blooms in the fall
Plant Type Shrubs
Evergreen or Deciduous Evergreen
USDA Zones 7,8,9
Zone Detail Hardy to 0°F
Key Features Fall blooming
Use Accent, hedge
Exposure Full sun to part shade
Bloom Season Fall
Dimension 5-7' H x 5-6' W
Growth Rate Moderate
CARE
Water Water as needed
Soil Type Well-drained sand to clay soil
Fertilizer Late spring
Pruning Shape after bloom cycle
PLANTING INSTRUCTIONS
water before planting
plant in full sun to part shade
dig hole 3X the width of pot,
backfill and plant 1”-2” above soil level
water and add more soil if needed
mulch plants

u2014 ALE: Wayne Rain Garden
Pennsylvania Landscape & Nursery Association
u2014 ALE: Wayne Rain Garden
Terren Landscapes http://www.terrenlandscapes.com
2014 PLNA Awards for Landscape Excellence winner
Category: Residential Up to $15,000
Award Level: Gold
Project Description:
Our company was contracted by the client to provide a creative solution to an ongoing drainage problem. Their property is located within 30 feet of a local stream that collects storm water from the surrounding area. The nearby stream and high water table caused the lawn area at the side of their home to flood and to remain waterlogged for a few days after each storm. The client not only had difficulty growing plants in the existing conditions, but also had a problem with mosquitoes due to standing water.
Our goal was to design a self-contained, naturalistic rain garden that slowed storm water runoff, allowed for percolation, and promoted infiltration while permitting excess clean water to enter the nearby stream with diminished force. As designed, the rain garden allows the earth to slowly and more naturally
absorb excess storm water while filtering out toxins such as excess nitrogen and phosphorous which are frequently found in the landscape, therefore reducing the contaminants entering the stream.
A percolation test was conducted with criteria of absorbing a one-inch rainstorm within four hours without overflow. The one-inch storm calculation included an existing downspout from the home, which would be piped into the rain garden to reduce roof runoff. The first test failed due to a deep layer of high clay-content soil. Excavation continued until a layer of sandy loam was reached, the percolation test was repeated, and a successful test result was achieved. Next, the entire rain garden basin was excavated to the sandy loam layer and the soil amended with compost and sand to create a highly porous planting media.
Geotextile fabric was placed to help reduce migration of the surface stone into the soil and allow for minimal maintenance. Gravel, river stone and small boulders were carefully placed to achieve the look of a natural streambed.
A palette of mostly native plants with a few non-invasive ornamentals were chosen for their ability to survive in extreme conditions ranging from floods to drought and were placed according to their specific preferences.
Wetland plants were chosen for the lowest portion of the rain garden as that area remains saturated for longer periods of time, with a Chionanthus virginicus as a focal point surrounded by irises and ferns at the lowest depth.
Plants tolerant of drier conditions were chosen for the upper edges of the garden. The beautiful colors of Monarda, Ligularia, Eupatorium, Solidago, Chelone, and Rudbeckia were scattered within the upper edge, while movement and softness were incorporated by use of the graceful Nassella that lines the border. Finally, winter interest was provided with a backdrop of Cornus sericea.
As built, this small rain garden creates tremendous impact by decreasing the amount of storm water runoff not only on our client's property, but also in the neighboring stream. It serves as a means of slowing the water and providing an area for infiltration back into the earth. The plants provide a habitat for birds, butterflies, and insects, working in harmony with nature and providing beautiful visual interest year-round.
Photo Credit:
Lisa C. Falls
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