Search results for "Tolerance test" in Home Design Ideas

Our goal with all of these designs was to creatively exceed customers expectations while reducing water usage, keeping costs down and delivering a beautiful garden that would stand the test of time. Wherever possible our hardscape elements are permeable, and existing healthy plantings and trees remain. All of our landscape designs focus on bringing seasonal color, texture and scent to your garden spaces.

Terren Landscapes http://www.terrenlandscapes.com
Project Entry: Pembrooke Estate Rain Garden
2014 PLNA Awards for Landscape Excellence Winner
Category: Sustainable Landscape &60,000-$120,000
Award Level: Silver
Project Description:
The client contracted our company to solve multiple existing drainage problems. In a heavy rain event the existing French drain system would overflow, causing water to pool in the driveway. After investigating the system we found that the capacity of the French drain was undersized for the amount of storm water from the large rain events received in recent years. As a result of our findings and at the request of the homeowner, we designed a storm water management system to capture all storm water from the structures on the property and regenerate the underground aquifers for the volume of a 5.8” rainstorm. In addition to the new drain system, the homeowners wanted a rain garden to provide a backdrop for an existing formal garden, provide a habitat for wildlife, and provide screening from an adjacent neighbor.
Throughout the design process many challenges were presented, including an existing gas line, which ran directly through the area that best suited the bioswale. The existence of the gas line caused us to alter the shape and depth of the bioswale in some areas. We also inspected the existing downspouts to make sure there were no obstructions that would impede the system’s efficiency, and then conducted a test pit dig to make sure we had sufficient percolation rates for disposal of storm water.
To effectively capture the storm water runoff, the existing downspouts were piped from the main house and the large detached garage to a large catch basin located at the low point in the driveway. The driveway catch basin contains two outlet pipes at different elevations within the basin allowing water from smaller rain events to enter the bioswale and rain garden area to percolate into the soil before excess water overflows into a sediment trap which filters out any debris and is then piped to an underground StormTech® pit to slowly percolate into the ground. The other outlet pipe in the driveway catch basin is used for larger storm water events, taking the water directly to the StormTech® pit.
Accepting and slowing the velocity of the storm water, mitigation of erosion, and filtering out pollutants contained in the “first flush” of rainfall are the primary functions of the bioswale and rain garden. Planting these areas with mostly native plant species helps carry out these functions while attracting and providing shelter for wildlife.
The ‘Niobe’ weeping willow is the centerpiece of the rain garden, connecting with the axis of the existing formal garden. To screen the neighboring property we chose Chamaecyparis nootkatensis ‘Pendula’ for its graceful evergreen habit and tolerance of wet sites. ‘Ivory Halo’ dogwood and Panicum ‘Cloud Nine’ were used for screening as well as winter interest. To provide deciduous structure to the garden Taxodium distichum and Magnolia virginiana were used in conjunction with witch hazel. Mostly native wetland perennials were used due to their tolerance of wet conditions and occasional drought.
The area above the StormTech® pit provides space for the client’s family to relax. The rain garden and bioswale provide screening, storm water management, a habitat for wildlife, and plants that enhance the adjacent formal garden.
Photo Credit: Terren Landscapes

The Owners of a home that had been consumed by the moving dunes of Lake Michigan wanted a home that would not only stand the test of aesthetic time, but survive the vicissitudes of the environment.
With the assistance of the Michigan Department of Environmental Quality as well as the consulting civil engineer and the City of Grand Haven Zoning Department, a soil stabilization site plan was developed based on raising the new home’s main floor elevation by almost three feet, implementing erosion studies, screen walls and planting indigenous, drought tolerant xeriscaping. The screen walls, as well as the low profile of the home and the use of sand trapping marrum beachgrass all help to create a wind shadow buffer around the home and reduce blowing sand erosion and accretion.
The Owners wanted to minimize the stylistic baggage which consumes most “cottage” residences, and with the Architect created a home with simple lines focused on the view and the natural environment. Sustainable energy requirements on a budget directed the design decisions regarding the SIPs panel insulation, energy systems, roof shading, other insulation systems, lighting and detailing. Easily constructed and linear, the home harkens back to mid century modern pavilions with present day environmental sensitivities and harmony with the site.
James Yochum
Find the right local pro for your project

Terren Landscapes http://www.terrenlandscapes.com
Project Entry: Pembrooke Estate Rain Garden
2014 PLNA Awards for Landscape Excellence Winner
Category: Sustainable Landscape &60,000-$120,000
Award Level: Silver
Project Description:
The client contracted our company to solve multiple existing drainage problems. In a heavy rain event the existing French drain system would overflow, causing water to pool in the driveway. After investigating the system we found that the capacity of the French drain was undersized for the amount of storm water from the large rain events received in recent years. As a result of our findings and at the request of the homeowner, we designed a storm water management system to capture all storm water from the structures on the property and regenerate the underground aquifers for the volume of a 5.8” rainstorm. In addition to the new drain system, the homeowners wanted a rain garden to provide a backdrop for an existing formal garden, provide a habitat for wildlife, and provide screening from an adjacent neighbor.
Throughout the design process many challenges were presented, including an existing gas line, which ran directly through the area that best suited the bioswale. The existence of the gas line caused us to alter the shape and depth of the bioswale in some areas. We also inspected the existing downspouts to make sure there were no obstructions that would impede the system’s efficiency, and then conducted a test pit dig to make sure we had sufficient percolation rates for disposal of storm water.
To effectively capture the storm water runoff, the existing downspouts were piped from the main house and the large detached garage to a large catch basin located at the low point in the driveway. The driveway catch basin contains two outlet pipes at different elevations within the basin allowing water from smaller rain events to enter the bioswale and rain garden area to percolate into the soil before excess water overflows into a sediment trap which filters out any debris and is then piped to an underground StormTech® pit to slowly percolate into the ground. The other outlet pipe in the driveway catch basin is used for larger storm water events, taking the water directly to the StormTech® pit.
Accepting and slowing the velocity of the storm water, mitigation of erosion, and filtering out pollutants contained in the “first flush” of rainfall are the primary functions of the bioswale and rain garden. Planting these areas with mostly native plant species helps carry out these functions while attracting and providing shelter for wildlife.
The ‘Niobe’ weeping willow is the centerpiece of the rain garden, connecting with the axis of the existing formal garden. To screen the neighboring property we chose Chamaecyparis nootkatensis ‘Pendula’ for its graceful evergreen habit and tolerance of wet sites. ‘Ivory Halo’ dogwood and Panicum ‘Cloud Nine’ were used for screening as well as winter interest. To provide deciduous structure to the garden Taxodium distichum and Magnolia virginiana were used in conjunction with witch hazel. Mostly native wetland perennials were used due to their tolerance of wet conditions and occasional drought.
The area above the StormTech® pit provides space for the client’s family to relax. The rain garden and bioswale provide screening, storm water management, a habitat for wildlife, and plants that enhance the adjacent formal garden.
Photo Credit: Terren Landscapes

Terren Landscapes http://www.terrenlandscapes.com
Project Entry: Pembrooke Estate Rain Garden
2014 PLNA Awards for Landscape Excellence Winner
Category: Sustainable Landscape &60,000-$120,000
Award Level: Silver
Project Description:
The client contracted our company to solve multiple existing drainage problems. In a heavy rain event the existing French drain system would overflow, causing water to pool in the driveway. After investigating the system we found that the capacity of the French drain was undersized for the amount of storm water from the large rain events received in recent years. As a result of our findings and at the request of the homeowner, we designed a storm water management system to capture all storm water from the structures on the property and regenerate the underground aquifers for the volume of a 5.8” rainstorm. In addition to the new drain system, the homeowners wanted a rain garden to provide a backdrop for an existing formal garden, provide a habitat for wildlife, and provide screening from an adjacent neighbor.
Throughout the design process many challenges were presented, including an existing gas line, which ran directly through the area that best suited the bioswale. The existence of the gas line caused us to alter the shape and depth of the bioswale in some areas. We also inspected the existing downspouts to make sure there were no obstructions that would impede the system’s efficiency, and then conducted a test pit dig to make sure we had sufficient percolation rates for disposal of storm water.
To effectively capture the storm water runoff, the existing downspouts were piped from the main house and the large detached garage to a large catch basin located at the low point in the driveway. The driveway catch basin contains two outlet pipes at different elevations within the basin allowing water from smaller rain events to enter the bioswale and rain garden area to percolate into the soil before excess water overflows into a sediment trap which filters out any debris and is then piped to an underground StormTech® pit to slowly percolate into the ground. The other outlet pipe in the driveway catch basin is used for larger storm water events, taking the water directly to the StormTech® pit.
Accepting and slowing the velocity of the storm water, mitigation of erosion, and filtering out pollutants contained in the “first flush” of rainfall are the primary functions of the bioswale and rain garden. Planting these areas with mostly native plant species helps carry out these functions while attracting and providing shelter for wildlife.
The ‘Niobe’ weeping willow is the centerpiece of the rain garden, connecting with the axis of the existing formal garden. To screen the neighboring property we chose Chamaecyparis nootkatensis ‘Pendula’ for its graceful evergreen habit and tolerance of wet sites. ‘Ivory Halo’ dogwood and Panicum ‘Cloud Nine’ were used for screening as well as winter interest. To provide deciduous structure to the garden Taxodium distichum and Magnolia virginiana were used in conjunction with witch hazel. Mostly native wetland perennials were used due to their tolerance of wet conditions and occasional drought.
The area above the StormTech® pit provides space for the client’s family to relax. The rain garden and bioswale provide screening, storm water management, a habitat for wildlife, and plants that enhance the adjacent formal garden.
Photo Credit: Terren Landscapes

Terren Landscapes http://www.terrenlandscapes.com
Project Entry: Pembrooke Estate Rain Garden
2014 PLNA Awards for Landscape Excellence Winner
Category: Sustainable Landscape &60,000-$120,000
Award Level: Silver
Project Description:
The client contracted our company to solve multiple existing drainage problems. In a heavy rain event the existing French drain system would overflow, causing water to pool in the driveway. After investigating the system we found that the capacity of the French drain was undersized for the amount of storm water from the large rain events received in recent years. As a result of our findings and at the request of the homeowner, we designed a storm water management system to capture all storm water from the structures on the property and regenerate the underground aquifers for the volume of a 5.8” rainstorm. In addition to the new drain system, the homeowners wanted a rain garden to provide a backdrop for an existing formal garden, provide a habitat for wildlife, and provide screening from an adjacent neighbor.
Throughout the design process many challenges were presented, including an existing gas line, which ran directly through the area that best suited the bioswale. The existence of the gas line caused us to alter the shape and depth of the bioswale in some areas. We also inspected the existing downspouts to make sure there were no obstructions that would impede the system’s efficiency, and then conducted a test pit dig to make sure we had sufficient percolation rates for disposal of storm water.
To effectively capture the storm water runoff, the existing downspouts were piped from the main house and the large detached garage to a large catch basin located at the low point in the driveway. The driveway catch basin contains two outlet pipes at different elevations within the basin allowing water from smaller rain events to enter the bioswale and rain garden area to percolate into the soil before excess water overflows into a sediment trap which filters out any debris and is then piped to an underground StormTech® pit to slowly percolate into the ground. The other outlet pipe in the driveway catch basin is used for larger storm water events, taking the water directly to the StormTech® pit.
Accepting and slowing the velocity of the storm water, mitigation of erosion, and filtering out pollutants contained in the “first flush” of rainfall are the primary functions of the bioswale and rain garden. Planting these areas with mostly native plant species helps carry out these functions while attracting and providing shelter for wildlife.
The ‘Niobe’ weeping willow is the centerpiece of the rain garden, connecting with the axis of the existing formal garden. To screen the neighboring property we chose Chamaecyparis nootkatensis ‘Pendula’ for its graceful evergreen habit and tolerance of wet sites. ‘Ivory Halo’ dogwood and Panicum ‘Cloud Nine’ were used for screening as well as winter interest. To provide deciduous structure to the garden Taxodium distichum and Magnolia virginiana were used in conjunction with witch hazel. Mostly native wetland perennials were used due to their tolerance of wet conditions and occasional drought.
The area above the StormTech® pit provides space for the client’s family to relax. The rain garden and bioswale provide screening, storm water management, a habitat for wildlife, and plants that enhance the adjacent formal garden.
Photo Credit: Terren Landscapes

Terren Landscapes http://www.terrenlandscapes.com
Project Entry: Pembrooke Estate Rain Garden
2014 PLNA Awards for Landscape Excellence Winner
Category: Sustainable Landscape &60,000-$120,000
Award Level: Silver
Project Description:
The client contracted our company to solve multiple existing drainage problems. In a heavy rain event the existing French drain system would overflow, causing water to pool in the driveway. After investigating the system we found that the capacity of the French drain was undersized for the amount of storm water from the large rain events received in recent years. As a result of our findings and at the request of the homeowner, we designed a storm water management system to capture all storm water from the structures on the property and regenerate the underground aquifers for the volume of a 5.8” rainstorm. In addition to the new drain system, the homeowners wanted a rain garden to provide a backdrop for an existing formal garden, provide a habitat for wildlife, and provide screening from an adjacent neighbor.
Throughout the design process many challenges were presented, including an existing gas line, which ran directly through the area that best suited the bioswale. The existence of the gas line caused us to alter the shape and depth of the bioswale in some areas. We also inspected the existing downspouts to make sure there were no obstructions that would impede the system’s efficiency, and then conducted a test pit dig to make sure we had sufficient percolation rates for disposal of storm water.
To effectively capture the storm water runoff, the existing downspouts were piped from the main house and the large detached garage to a large catch basin located at the low point in the driveway. The driveway catch basin contains two outlet pipes at different elevations within the basin allowing water from smaller rain events to enter the bioswale and rain garden area to percolate into the soil before excess water overflows into a sediment trap which filters out any debris and is then piped to an underground StormTech® pit to slowly percolate into the ground. The other outlet pipe in the driveway catch basin is used for larger storm water events, taking the water directly to the StormTech® pit.
Accepting and slowing the velocity of the storm water, mitigation of erosion, and filtering out pollutants contained in the “first flush” of rainfall are the primary functions of the bioswale and rain garden. Planting these areas with mostly native plant species helps carry out these functions while attracting and providing shelter for wildlife.
The ‘Niobe’ weeping willow is the centerpiece of the rain garden, connecting with the axis of the existing formal garden. To screen the neighboring property we chose Chamaecyparis nootkatensis ‘Pendula’ for its graceful evergreen habit and tolerance of wet sites. ‘Ivory Halo’ dogwood and Panicum ‘Cloud Nine’ were used for screening as well as winter interest. To provide deciduous structure to the garden Taxodium distichum and Magnolia virginiana were used in conjunction with witch hazel. Mostly native wetland perennials were used due to their tolerance of wet conditions and occasional drought.
The area above the StormTech® pit provides space for the client’s family to relax. The rain garden and bioswale provide screening, storm water management, a habitat for wildlife, and plants that enhance the adjacent formal garden.
Photo Credit: Terren Landscapes

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

Terren Landscapes http://www.terrenlandscapes.com
Project Entry: Pembrooke Estate Rain Garden
2014 PLNA Awards for Landscape Excellence Winner
Category: Sustainable Landscape &60,000-$120,000
Award Level: Silver
Project Description:
The client contracted our company to solve multiple existing drainage problems. In a heavy rain event the existing French drain system would overflow, causing water to pool in the driveway. After investigating the system we found that the capacity of the French drain was undersized for the amount of storm water from the large rain events received in recent years. As a result of our findings and at the request of the homeowner, we designed a storm water management system to capture all storm water from the structures on the property and regenerate the underground aquifers for the volume of a 5.8” rainstorm. In addition to the new drain system, the homeowners wanted a rain garden to provide a backdrop for an existing formal garden, provide a habitat for wildlife, and provide screening from an adjacent neighbor.
Throughout the design process many challenges were presented, including an existing gas line, which ran directly through the area that best suited the bioswale. The existence of the gas line caused us to alter the shape and depth of the bioswale in some areas. We also inspected the existing downspouts to make sure there were no obstructions that would impede the system’s efficiency, and then conducted a test pit dig to make sure we had sufficient percolation rates for disposal of storm water.
To effectively capture the storm water runoff, the existing downspouts were piped from the main house and the large detached garage to a large catch basin located at the low point in the driveway. The driveway catch basin contains two outlet pipes at different elevations within the basin allowing water from smaller rain events to enter the bioswale and rain garden area to percolate into the soil before excess water overflows into a sediment trap which filters out any debris and is then piped to an underground StormTech® pit to slowly percolate into the ground. The other outlet pipe in the driveway catch basin is used for larger storm water events, taking the water directly to the StormTech® pit.
Accepting and slowing the velocity of the storm water, mitigation of erosion, and filtering out pollutants contained in the “first flush” of rainfall are the primary functions of the bioswale and rain garden. Planting these areas with mostly native plant species helps carry out these functions while attracting and providing shelter for wildlife.
The ‘Niobe’ weeping willow is the centerpiece of the rain garden, connecting with the axis of the existing formal garden. To screen the neighboring property we chose Chamaecyparis nootkatensis ‘Pendula’ for its graceful evergreen habit and tolerance of wet sites. ‘Ivory Halo’ dogwood and Panicum ‘Cloud Nine’ were used for screening as well as winter interest. To provide deciduous structure to the garden Taxodium distichum and Magnolia virginiana were used in conjunction with witch hazel. Mostly native wetland perennials were used due to their tolerance of wet conditions and occasional drought.
The area above the StormTech® pit provides space for the client’s family to relax. The rain garden and bioswale provide screening, storm water management, a habitat for wildlife, and plants that enhance the adjacent formal garden.
Photo Credit: Terren Landscapes

Terren Landscapes http://www.terrenlandscapes.com
Project Entry: Pembrooke Estate Rain Garden
2014 PLNA Awards for Landscape Excellence Winner
Category: Sustainable Landscape &60,000-$120,000
Award Level: Silver
Project Description:
The client contracted our company to solve multiple existing drainage problems. In a heavy rain event the existing French drain system would overflow, causing water to pool in the driveway. After investigating the system we found that the capacity of the French drain was undersized for the amount of storm water from the large rain events received in recent years. As a result of our findings and at the request of the homeowner, we designed a storm water management system to capture all storm water from the structures on the property and regenerate the underground aquifers for the volume of a 5.8” rainstorm. In addition to the new drain system, the homeowners wanted a rain garden to provide a backdrop for an existing formal garden, provide a habitat for wildlife, and provide screening from an adjacent neighbor.
Throughout the design process many challenges were presented, including an existing gas line, which ran directly through the area that best suited the bioswale. The existence of the gas line caused us to alter the shape and depth of the bioswale in some areas. We also inspected the existing downspouts to make sure there were no obstructions that would impede the system’s efficiency, and then conducted a test pit dig to make sure we had sufficient percolation rates for disposal of storm water.
To effectively capture the storm water runoff, the existing downspouts were piped from the main house and the large detached garage to a large catch basin located at the low point in the driveway. The driveway catch basin contains two outlet pipes at different elevations within the basin allowing water from smaller rain events to enter the bioswale and rain garden area to percolate into the soil before excess water overflows into a sediment trap which filters out any debris and is then piped to an underground StormTech® pit to slowly percolate into the ground. The other outlet pipe in the driveway catch basin is used for larger storm water events, taking the water directly to the StormTech® pit.
Accepting and slowing the velocity of the storm water, mitigation of erosion, and filtering out pollutants contained in the “first flush” of rainfall are the primary functions of the bioswale and rain garden. Planting these areas with mostly native plant species helps carry out these functions while attracting and providing shelter for wildlife.
The ‘Niobe’ weeping willow is the centerpiece of the rain garden, connecting with the axis of the existing formal garden. To screen the neighboring property we chose Chamaecyparis nootkatensis ‘Pendula’ for its graceful evergreen habit and tolerance of wet sites. ‘Ivory Halo’ dogwood and Panicum ‘Cloud Nine’ were used for screening as well as winter interest. To provide deciduous structure to the garden Taxodium distichum and Magnolia virginiana were used in conjunction with witch hazel. Mostly native wetland perennials were used due to their tolerance of wet conditions and occasional drought.
The area above the StormTech® pit provides space for the client’s family to relax. The rain garden and bioswale provide screening, storm water management, a habitat for wildlife, and plants that enhance the adjacent formal garden.
Photo Credit: Terren Landscapes

Terren Landscapes http://www.terrenlandscapes.com
Project Entry: Pembrooke Estate Rain Garden
2014 PLNA Awards for Landscape Excellence Winner
Category: Sustainable Landscape &60,000-$120,000
Award Level: Silver
Project Description:
The client contracted our company to solve multiple existing drainage problems. In a heavy rain event the existing French drain system would overflow, causing water to pool in the driveway. After investigating the system we found that the capacity of the French drain was undersized for the amount of storm water from the large rain events received in recent years. As a result of our findings and at the request of the homeowner, we designed a storm water management system to capture all storm water from the structures on the property and regenerate the underground aquifers for the volume of a 5.8” rainstorm. In addition to the new drain system, the homeowners wanted a rain garden to provide a backdrop for an existing formal garden, provide a habitat for wildlife, and provide screening from an adjacent neighbor.
Throughout the design process many challenges were presented, including an existing gas line, which ran directly through the area that best suited the bioswale. The existence of the gas line caused us to alter the shape and depth of the bioswale in some areas. We also inspected the existing downspouts to make sure there were no obstructions that would impede the system’s efficiency, and then conducted a test pit dig to make sure we had sufficient percolation rates for disposal of storm water.
To effectively capture the storm water runoff, the existing downspouts were piped from the main house and the large detached garage to a large catch basin located at the low point in the driveway. The driveway catch basin contains two outlet pipes at different elevations within the basin allowing water from smaller rain events to enter the bioswale and rain garden area to percolate into the soil before excess water overflows into a sediment trap which filters out any debris and is then piped to an underground StormTech® pit to slowly percolate into the ground. The other outlet pipe in the driveway catch basin is used for larger storm water events, taking the water directly to the StormTech® pit.
Accepting and slowing the velocity of the storm water, mitigation of erosion, and filtering out pollutants contained in the “first flush” of rainfall are the primary functions of the bioswale and rain garden. Planting these areas with mostly native plant species helps carry out these functions while attracting and providing shelter for wildlife.
The ‘Niobe’ weeping willow is the centerpiece of the rain garden, connecting with the axis of the existing formal garden. To screen the neighboring property we chose Chamaecyparis nootkatensis ‘Pendula’ for its graceful evergreen habit and tolerance of wet sites. ‘Ivory Halo’ dogwood and Panicum ‘Cloud Nine’ were used for screening as well as winter interest. To provide deciduous structure to the garden Taxodium distichum and Magnolia virginiana were used in conjunction with witch hazel. Mostly native wetland perennials were used due to their tolerance of wet conditions and occasional drought.
The area above the StormTech® pit provides space for the client’s family to relax. The rain garden and bioswale provide screening, storm water management, a habitat for wildlife, and plants that enhance the adjacent formal garden.
Photo Credit: Terren Landscapes

Inspiration for a mid-sized mediterranean gray floor kitchen remodel in Minneapolis with shaker cabinets, quartz countertops, multicolored backsplash, stainless steel appliances and gray cabinets

Terren Landscapes http://www.terrenlandscapes.com
Project Entry: Pembrooke Estate Rain Garden
2014 PLNA Awards for Landscape Excellence Winner
Category: Sustainable Landscape &60,000-$120,000
Award Level: Silver
Project Description:
The client contracted our company to solve multiple existing drainage problems. In a heavy rain event the existing French drain system would overflow, causing water to pool in the driveway. After investigating the system we found that the capacity of the French drain was undersized for the amount of storm water from the large rain events received in recent years. As a result of our findings and at the request of the homeowner, we designed a storm water management system to capture all storm water from the structures on the property and regenerate the underground aquifers for the volume of a 5.8” rainstorm. In addition to the new drain system, the homeowners wanted a rain garden to provide a backdrop for an existing formal garden, provide a habitat for wildlife, and provide screening from an adjacent neighbor.
Throughout the design process many challenges were presented, including an existing gas line, which ran directly through the area that best suited the bioswale. The existence of the gas line caused us to alter the shape and depth of the bioswale in some areas. We also inspected the existing downspouts to make sure there were no obstructions that would impede the system’s efficiency, and then conducted a test pit dig to make sure we had sufficient percolation rates for disposal of storm water.
To effectively capture the storm water runoff, the existing downspouts were piped from the main house and the large detached garage to a large catch basin located at the low point in the driveway. The driveway catch basin contains two outlet pipes at different elevations within the basin allowing water from smaller rain events to enter the bioswale and rain garden area to percolate into the soil before excess water overflows into a sediment trap which filters out any debris and is then piped to an underground StormTech® pit to slowly percolate into the ground. The other outlet pipe in the driveway catch basin is used for larger storm water events, taking the water directly to the StormTech® pit.
Accepting and slowing the velocity of the storm water, mitigation of erosion, and filtering out pollutants contained in the “first flush” of rainfall are the primary functions of the bioswale and rain garden. Planting these areas with mostly native plant species helps carry out these functions while attracting and providing shelter for wildlife.
The ‘Niobe’ weeping willow is the centerpiece of the rain garden, connecting with the axis of the existing formal garden. To screen the neighboring property we chose Chamaecyparis nootkatensis ‘Pendula’ for its graceful evergreen habit and tolerance of wet sites. ‘Ivory Halo’ dogwood and Panicum ‘Cloud Nine’ were used for screening as well as winter interest. To provide deciduous structure to the garden Taxodium distichum and Magnolia virginiana were used in conjunction with witch hazel. Mostly native wetland perennials were used due to their tolerance of wet conditions and occasional drought.
The area above the StormTech® pit provides space for the client’s family to relax. The rain garden and bioswale provide screening, storm water management, a habitat for wildlife, and plants that enhance the adjacent formal garden.
Photo Credit: Terren Landscapes

Inspiration for a mid-sized modern gray one-story stucco flat roof remodel in Phoenix

Cottage Shrub and Perennial Garden
Inspiration for a small coastal drought-tolerant and full sun front yard garden path in Providence for summer.
Inspiration for a small coastal drought-tolerant and full sun front yard garden path in Providence for summer.

Surefire Rose begonia - new for 2014 from Proven Winners
Le jardinet
Inspiration for a landscaping in Seattle.
Inspiration for a landscaping in Seattle.

Low Water Use Gardens
This is an example of a large contemporary drought-tolerant and partial sun backyard gravel retaining wall landscape in San Francisco.
This is an example of a large contemporary drought-tolerant and partial sun backyard gravel retaining wall landscape in San Francisco.

A boring front lawn transformed into an explosion of color with drought tolerant perennials and grasses and an Idaho Fescue lawn. Warm, welcoming entry in this Urban garden.

Nautical inspired beach house
New custom home located at 801 Hermosa Avenue in Hermosa Beach, Ca.
Example of a large beach style beige two-story mixed siding flat roof design in Los Angeles
Example of a large beach style beige two-story mixed siding flat roof design in Los Angeles
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