Is Artificial Grass Pet-Friendly? Find Out Here!

Is Artificial Grass Pet-Friendly? Find Out Here!

Las Vegas Turf For High Traffic Areas

Benefits of Artificial Grass for Pets


Is Artificial Grass Pet-Friendly? Quality Artificial Grass in Las Vegas Nevada. Find Out Here!


Well hey there! When it comes to benefits of artificial grass for pets, you gotta think about more than just how it looks! First off, no more mess with muddy paw prints all over your carpets (which can be a real drag). And forget about cleaning up after accidents too! The artificial turf is easy to clean and sanitize, making life much simpler for pet owners.


Another big plus is that pets dont get tangled in blades of grass anymore. That means no more pulling out those pesky clumps that can stick in a dogs fur or even hurt their eyes. Plus, you wont have to worry about your cat getting snagged trying to sneak through a small window or door!


Pets also love the softness of artificial grass. Its much gentler on their joints than concrete or tile floors. This is particularly great for older pets who might not be as spry as they used to be but still want to enjoy playtime outside.


Not to mention, artificial grass doesnt attract the same pests as real grass does. Say goodbye to ticks, fleas, and other unwanted visitors that could make your pet sick or just plain uncomfortable. And it doesnt foster weeds or moss growth either, so you wont find yourself constantly battling those nuisances!


So yeah, artificial grass can be a real game-changer for pets and their owners alike. It keeps things clean, comfortable, and free from pesky problems. Who knew a lawn could be this awesome?!

Potential Drawbacks of Artificial Grass for Pet Owners


When it comes to artificial grass, many pet owners might think its a perfect solution for their furry friends.

Is Artificial Grass Pet-Friendly? Find Out Here! - Las Vegas Custom Lawn Turf

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However, there are some potential drawbacks that shouldnt be overlooked! For starters, while artificial turf is often marketed as being low-maintenance, it can actually require a fair bit of upkeep, especially if you have pets.


Las Vegas Turf For High Traffic Areas

First off, let's talk about odors. Its true that real grass can absorb pet waste, but artificial grass doesn't work the same way. If your dog does its business on the turf, you'll need to clean it up immediately, or else you might end up with some unpleasant smells. In addition, the pee can sometimes seep down and create bacteria, which is definitely not something you want in your yard!


Another thing to consider is the heat. On a hot day, artificial turf can get really hot – way hotter than normal grass. If your pet loves to lounge outside, it might not be the best idea to let them play on it for too long. They could end up with burnt paws, and we all know how much they hate that!


Then theres the issue of durability. While artificial grass is designed to withstand a lot of wear and tear, pets can still be tough on it. Digging and scratching can cause damage that might require expensive repairs or replacements. Some brands even have warranties, but that doesn't always mean they cover pet-related damages.


Lastly, let's not forget about the environmental impact. Even though artificial grass is made to last, it's not biodegradable, which means it could end up in a landfill one day. Pet owners who are eco-conscious might not find this appealing at all.


In conclusion, while artificial grass can be a great option for some, pet owners should definitely weigh these potential drawbacks. Its important to consider your pets needs and how this type of turf will fit into their lifestyle. So, before making a decision, take your time and think it through!

Tips for Maintaining a Pet-Friendly Artificial Lawn


Tips for Maintaining a Pet-Friendly Artificial Lawn


So youve decided to go the artificial route for your lawn (a smart choice if youre looking for low-maintenance while still wanting that lush look)! But wait, what about your furry friends? Dont worry, artificial grass can be pet-friendly too, if you take the right care of it. Here are some pointers to keep in mind.


First off, you dont need to fret about daily mowing or watering, which can be great for pets who might get scared by loud noises or sudden movements (like a lawn mower). However, just because you dont have to do the typical chores doesnt mean you should neglect the lawn entirely. Regular brushings with a stiff-bristled broom or rake are necessary to prevent matting and to fluff up the turf, making sure it stays soft underfoot for your pets.


Another tip is to avoid using harsh chemicals or treatments on the grass. Landscape Turf Installers Las Vegas While it might seem like a good idea to keep the fake grass clean, many products designed for traditional lawns wont play well with artificial turf. Not only could these chemicals damage the synthetic blades, but they could also be harmful to your pets if ingested accidentally. Stick to regular brushing and maybe a quick wash with a garden hose if theres a particularly stubborn mess.


Also, remember that even though artificial grass looks clean, it can still harbor dirt and bacteria. This means youll want to make sure your pets arent rolling around in areas that could be soiled by things like bird droppings or other outdoor debris. Its a bit of a bummer, but keeping an eye on where your pets play can help maintain a cleaner environment for everyone involved.


Lastly, consider getting an artificial grass thats specifically designed for pet owners. These types of turf tend to be more durable and better able to withstand the wear and tear that comes with having playful (or maybe not-so-playful) animals running around. Plus, they often come with warranties that cover damage caused by pets, which can give you peace of mind amidst all the excitement and chaos!


In conclusion, maintaining an artificial lawn thats friendly for pets isnt as daunting as it might seem at first glance. With a bit of effort and care, your fake grass can provide a safe and comfortable space for your furry family members!

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Poly-Turf was a brand of artificial turf in the early 1970s, manufactured by American Biltrite of Wellesley, Massachusetts. It was the first specifically designed for American football, with a patented layered structure which included a "shock pad" between the artificial grass and the asphalt sub-surface.[1] It used polypropylene for its artificial grass blades, rather than the nylon used in AstroTurf and 3M's Tartan Turf.[2][3][4]

History in Miami

[edit]

In the late 1960s, the natural grass surface at the Orange Bowl in Miami was constantly in poor condition,[5] primarily due to heavy usage; 34 games were scheduled there during the 1968 football season.[6]

Poly-Turf was installed at the city-owned stadium in 1970,[7] and utilized for six seasons. The stadium was used for both college and professional football, primarily by the University of Miami Hurricanes and the Miami Dolphins of the NFL. It also hosted the eponymous New Year's Day college bowl game, Super Bowl games, and high school football.

The University of Nebraska Cornhuskers won the first three Orange Bowl games played on Poly-Turf, which included two national championships. The first Super Bowl played on artificial turf was played on Poly-Turf in the Orange Bowl in January 1971, when the Baltimore Colts defeated the Dallas Cowboys 16-13 in Super Bowl V. The next Super Bowl at the stadium was the final game played on Poly-Turf in Miami; Super Bowl X in January 1976.[8] Its flaws received additional media exposure the week prior to the game,[9] and Dolphins receiver Nat Moore documented them in a local article.[10]

The longer polypropylene blades of Poly-Turf tended to mat down[11][12] and become very slick under hot & sunny conditions.[13][14][15] Other NFL owners were skeptical of the brand before the first regular season games were played in 1970.[7] The field was replaced after two seasons,[16][17] before the Dolphins' 1972 undefeated season.[18] It was replaced by another Poly-Turf surface. While it had similar problems,[19][20] it lasted longer than the first installation, and was used for four years. Over just six years, both installations deteriorated rapidly and some football players suffered an increasing number of leg and ankle injuries; some players claimed to trip over seams. Prior to the second installation in 1972, the city did not consult with the Dolphins about the replacement; Dolphins' head coach Don Shula preferred a different brand, either AstroTurf or Tartan Turf.[21] The field discolored from green to blue due to the severe UV nature of the Miami sun.[14][22]

Return to natural grass

[edit]

The city removed the Poly-Turf in 1976 and re-installed natural grass, a special type known as Prescription Athletic Turf (PAT),[23][24][25] which remained until the stadium's closure in early 2008. As late as December 1975, the city had planned to retain the Poly-Turf for the 1976 season,[23] but that decision was changed a few weeks later, prior to the Super Bowl.[8][26][27]

The Orange Bowl became the first major football venue to replace its artificial turf with natural grass, and it was the third NFL stadium to install Prescription Athletic Turf; Denver's Mile High Stadium and Washington's RFK Stadium installed PAT fields a year earlier in the spring of 1975.[24]

Other installations

[edit]

Other NFL stadiums which installed Poly-Turf included Schaefer Stadium, opened in 1971 for the New England Patriots,[11] and Tulane Stadium in New Orleans, home of the Saints, Tulane University, and the Sugar Bowl. Notable college stadiums included Legion Field in Birmingham, Alabama[28] and Alumni Stadium at Boston College.[29]

American Biltrite ceased production of Poly-Turf in 1973; 3M stopped the manufacture of its Tartan Turf in 1974, citing rising oil prices in light of the 1973 oil embargo.[4] This left AstroTurf as the only major manufacturer of artificial turf (with only minor competition along the way) until FieldTurf was introduced in the late 1990s.[30]

References

[edit]
  1. ^ U.S. Patent number 3661687, inventors Arthur F. Spinney and Lawrence J. Warnalis
  2. ^ Underwood, John (November 15, 1971). "New Slant on the Mod Sod". Sports Illustrated. p. 32. Retrieved October 29, 2014.
  3. ^ "Mod-sod revolution felt". Tuscaloosa News. Associated Press. June 30, 1970. p. 8.
  4. ^ a b Johnson, William Oscar (August 12, 1985). "The tyranny of phony fields". Sports Illustrated. p. 34. Retrieved October 29, 2014.
  5. ^ Crittenden, John (October 16, 1968). "Orange Bowl's on the beach". Miami News. p. 1D.
  6. ^ Plaisted, Ed (August 1, 1968). "Orange Bowl grass faces torture test". Miami News. p. 3D.
  7. ^ a b Petrella, Tony (August 30, 1970). "Owners dislike Poly-Turf". Palm Beach Post-Times. p. D4.
  8. ^ a b "It's back to grass for Orange Bowl after Sunday's game". Daytona Beach Morning Journal. Associated Press. January 16, 1976. p. 6B.
  9. ^ "Last-minute repairs". Palm Beach Post-Times. photo. January 17, 1976. p. D1.
  10. ^ Moore, Nat (January 15, 1976). "Dear Sirs". Palm Beach Post. p. D1.
  11. ^ a b "Scorecard: Rug". Sports Illustrated. October 18, 1971. Retrieved October 29, 2014.
  12. ^ "Lazy Miami artificial turf still laying down on job". Eugene Register-Guard. October 20, 1971. p. 3D.
  13. ^ Petrella, Tony (October 5, 1971). "Poly-Turf: a headache". Palm Beach Post. p. D1.
  14. ^ a b Petrella, Tony (October 19, 1971). "Orange Bowl's Poly-Turf: troubles and questions". Palm Beach Post. p. B5.
  15. ^ "Poly-Turf...down or up?". Palm Beach Post. wire services. October 22, 1971. p. H1.
  16. ^ "Biltrite to re-carpet Orange Bowl". Palm Beach Post. January 22, 1972. p. C4.
  17. ^ "Orange Bowl to receive better 'grass'". Palm Beach Daily News. UPI. January 23, 1972. p. 18.
  18. ^ Sun-Sentinel.com – Miami Orange Bowl – 2008
  19. ^ Nobles, Charlie (September 6, 1972). "Slippery turf infuriates Hurricanes". Miami News. p. 1D.
  20. ^ Treglown, Dick (September 26, 1972). "Orange Bowl turf: a slippery subject". Palm Beach Post. p. C1.
  21. ^ "OB Poly-Turf: A mean green". Evening Independent. St. Petersburg, Florida. Associated Press. September 26, 1972. p. 1C.
  22. ^ MiamiSouthpaw.blogspot.com – "Ghosts of Orange Bowl Poly-Turf" – 2009-08
  23. ^ a b "Orange Bowl sticks with Poly-Turf". Miami News. December 20, 1975. p. 2B.
  24. ^ a b Nobles, Charlie (January 28, 1976). "PAT can be used to soften visitors". Miami News. p. 1C.
  25. ^ Nobles, Charlie (July 31, 1976). "Dolphins find fewer bugs without rug as Vikings visit". Miami News. p. 1B.
  26. ^ Nobles, Charlie (February 10, 1976). "Orange Bowl will install grass". Miami News. p. 1C.
  27. ^ "Orange Bowl taking out Poly Turf". Lawrence Journal World. Kansas. February 14, 1976. p. 17.
  28. ^ "Poly-Turf for Legion". The Tuscaloosa News. Associated Press. May 19, 1970. p. 7. Retrieved January 20, 2014.
  29. ^ Reid, Jan (December 1979). "The real mean green". Texas Monthly. p. 153.
  30. ^ "Living with Artificial Grass" American Journal of Sports Medicine vol. 18, no. 4, 1990-07

 

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Energy-efficient landscaping is a type of landscaping designed for the purpose of conserving energy. There is a distinction between the embedded energy of materials and constructing the landscape, and the energy consumed by the maintenance and operations of a landscape.

Terminology and definition

[edit]

Landscaping often refers to the practice of landscape design and gardening, which traditionally concern with designing sites with vegetation and craft for aesthetic, cultural, social, and religious purposes.

Landscape architecture and landscape engineering, on the other hand, are multi-disciplinary and interdisciplinary professions that integrate technical considerations, such as geography, ecology, biology, and engineering, into the design of landscape and the actualization of it.

Energy-efficient landscaping falls into the categories of the latter, and it stresses the energy conservation in site operation or the creation of the site. Among its various term usage, energy-efficient landscaping can refer to the reduction of energy usage in maintenance and operation of the landscape narrowly for the user/owner of the site,[1][2] or broadly for the energy conservation of the global environment, such as mitigating urban heat island effect with reflective surface (increase albedo) or reducing the need of water treatment and sewage by using pervious pavement. Common methods of energy-efficient landscaping include reducing heat or cooling load of a building through shade, wind-blocking, and insulation; management of water; and using plants or construction material that cost less energy.

Methods and techniques

[edit]

Design techniques include:

Shade with trees

[edit]

Planting trees for the purpose of providing shade, which reduces cooling costs. The mature height of the trees and their canopy shape need to be well studied. The locations of the trees should be chosen based on their height and the height of the building. Also, when trees are planted closer to the windows or walls, they will provide shade for a greater portion of the day as the Sun keep changing its relative position to the window and the trees. Planting the trees too close to the building, however, is also not desirable, as it might create the danger of touching above-ground or underground utility lines.[2]

The type of leaves of the trees is also important. Broad-leaf evergreens like Southern magnolia can be used to provide dense year-round shade. However, needle-leaf evergreens like pines and cedars can provide more air circulation though their shade is sparser and more open.[2]

Not only can tree shade be used to reduce the cooling load in building, it can also be used in parking lot, driveways, and playgrounds.[3]

Windbreak

[edit]

Planting or building windbreaks to slow winds near buildings, which reduces heat loss. Homes loses heat through infiltration in the Winter. Windbreaks should be designed to intercept and redirect the Winter winds before they reach the house and outdoor areas with playgrounds or sensitive plants. The windbreak in the Winter should also be designed so that they would not block the sunlight in the Winter or block the wind in the Summer.[3]

Wall sheltering with shrubbery or vines

[edit]

Planting shrubs near the wall creates an insulating air space around the wall. This is a similar idea to the use of a tree windbreak. Shrubs should be planted at least 2 feet (0.61 m) from the wall to prevent moisture and insect problems.[2]

Taking advantage of natural landform

[edit]

Earth sheltering is an example of using natural landform and geological condition to save energy in building a structure. It is believed to save energy in multiple ways: by using the rock or strong

An Earth house by Peter Vetsch

soil as wall and ground as the floor, construction cost is greatly reduced, because the structure will need less load bearing material and there is no need for excavation and foundation construction; the wall and the floor made of natural material likely will have better insulation than artificial wall and floors; Natural walls and floors can also reduce fire hazard, because they are hard to be ignited thus reduce the need for flame retardants.[4]

In a study of simulating a structure with varying depth submerged in the ground to understand the insulating effect of natural wall and ground in cold climate,[5] it was found that the thermal transmittance of the earth-sheltered walls and floor is 16% - 45% lower than that of the structure totally above ground.

Other than Earth Sheltering, a simpler way of taking advantage of natural landform is using geology, such as mountains, for shade.

Green roofs

[edit]

Often, landscape design and architecture refers to the design in ground surface; in many contexts, specifically, the design guidance and topics are for a typical residential landscape in suburban housing, where there is a yard (garden), a driveway, and a house. In the crowded urban area, however, there is not abundant ground surface for landscape design. Green roofs, then, become an appealing option to add some aesthetics and green to the crowded cities. Not limited to the cities, green roofs can be applied to wherever it will fit. Most of times, actually, the decision to build Green roofs is based on local climate and policy. It is because other than its aesthetics, green roofs are used often for their ability to conserve energy, such as increasing insulation of the building roof, retaining and infiltrating rainwater, and potentially reducing urban heat island effect when it was installed to a certain scale. In Germany, for example, partly because of EU's regulation, 17% of the new roof construction are green roofs. In Washington DC, green roofs are used as an alternative storm-water retention technique.[6]

Chicago City Hall Green Roof

Benefits

[edit]

Reducing building energy consumption by increasing the roof insulation: In total energy consumption reduction, green roof would have the best performance relative to a bare roof in a colder climate, which require nighttime heating. The reduction in heating load of the building increase as the soil depth of the green roof increase, though an increased soil depth would mean heavier roof. On the other hand, if a building is cooling-dominated, leaf area index is more important. In peak energy consumption reduction, green roof also has a notable effect, and the leaf area index and soil depth are both positively related to its performance.[7]

Rainwater retention and evapotranspiration: 3-4 inches of soil can retain about 1 inch of rainwater. That is about 75% of precipitation in most areas in United States.[8] By retaining the rainwater in soil, the water would not become runoff, instead they would result in evapotranspiration.

Controversies

[edit]

Water runoff quality: When green roof is not able to hold the amount of the precipitation, the excessive rainwater will become runoff. In a field experiment where contaminated water is dripped into a green roof section to mimic rainfall in the green roof, the exfiltrate water was studied and analyzed. It was found that since the average level of suspended solid, nitrogen, and phosphorus concentrations in Green roof water outflow is significantly higher than that in conventional roof outflow, extensive green roofs will become a source of nutrient contamination in urban water environment.[9]

Fire Hazard: Green roofs can be more easily ignited than conventional roofs; it is a concern that when the green roof caught fire, the high temperature would damage the roof structure itself. Not only the idea of damaging the roof is contradictory to energy conservation and sustainability, the fire and the roof damage could cause safety issue to the residents. It remains a matter of debate as to whether a green roof will exacerbate or mitigate the effects of a fire. Some argue that, because vegetation is about 95% water, the green roof actually reduces chances of a fire. On the other hand, some argue that during autumn and winter, when the vegetation is dry, fire hazard is increased. A recent study has found, through mathematical modelling, that [10] when the vegetation itself caught fire, heat does penetrate downward (rather slowly as the thermal conductivity of soil is low), eventually damaging the roof itself. Thus the key to whether ignited vegetation will damage the roof or not depends on the thickness of the soil. The study also found that by installing a gypsum layer beneath the soil layer, the possibility of damaging the roof can be greatly reduced.

Additional structural load: Most old buildings were not designed for the extra roof dead load of the green roofs. If more energy is consumed in building the additional load bearing structure for the green roofs than the energy saved through insulation enhancement and water retention, it would be contradictory to the idea of energy conservation. By study, common green roofs types in the market would increase the load on the rood by 1.2 to 2.43 kilo-newton per square meter.[11]

Pervious (porous/permeable) paving

[edit]

A lot pavement in urban and suburban areas is impervious, this likely would result the contaminated stormwater runoff. In pre-development area, averagely 50% of storm-water would result in evapotranspiration, 5% in runoff, and 45% in infiltration, whereas in post-development area, only 35% storm-water result in evapotranspiration, and 50% in runoff, and 15% in infiltration. This change has caused various problem, such as flooding, infrastructural damage due to rapid movement of water, and water contamination.[12]

By using pervious paving, however, the amount of infiltrated storm-water will be increased in post-development area, and the pollutants in the filtrated water can be reduced; thus the problem can be mitigated. In Low Impact Development 2008 Conference, ASCE performed two bench-scale study to examine the effectiveness of permeable interlocking concrete pavement in terms of water flow rate and the role of microbial colonies in pollutant removal in the micro-environment of porous pavement.[13] The experiment shows 84% relative total suspended solids (TSS) removal on average, yet the increased relative removal over time suggests there is potentially solid buildup, and that may result system clogging and system failure. The evidence in pollutant removal proved the conclusion of the previous study that the annual pollutant runoff from the driveways was 86% lower for pervious driveways than impervious driveways.

Types of Pervious pavement include:[12]

Porous asphalt

[edit]

Advantage: Relatively low cost; Easy access to the material; Workers are experienced with it

Disadvantage: Susceptible to water damage; Usually used for short-term only; Low relative strength

Pervious concrete

[edit]

Advantage: High structural strength; Easy access to the material

Disadvantage: Slow construction process; High initial cost

Permeable interlocking concrete paver

[edit]

Advantage: Ease of Construction, Aesthetics, Ease of maintenance and repair

Disadvantage: High Cost; Only can be used for low speed road way

Grid Pavement

Grid pavement

[edit]

Advantage: Wide variety of products; Relatively inexpensive; Ease of maintenance and repair

Disadvantage: Typically limited to parking areas

The decision among different permeable pavement types depends on the need of the project, available material and equipment, and budget.

Effective and smart lighting

[edit]

Site lighting with full cut off fixtures, light level sensors, and high efficiency fixtures.

Structure orientation

[edit]

The sun rises from the East, moves South, and sets in the West. Thus, a rule of thumb for design is to avoid south-facing windows when trying to decrease cooling load of the building and increase south-facing windows when trying to decrease heating load of the building. The reality, however, is more complicated. The sun rises from East and sets in West perfectly only on the autumnal and vernal equinoxes, and during the vast majority of the year, Sun travels slightly southward and eastward depending on whether it is summer or winter and on whether the observer is in the Northern Hemisphere or the Southern Hemisphere.[14]

To design for the best performance of the site, the designer needs to well understand the local climate and the site's location relative to equator.

More to include

[edit]

Energy-efficient landscaping techniques include using local materials, on-site composting and chipping to reduce green waste hauling, hand tools instead of gasoline-powered, and also may involve using drought-resistant plantings in arid areas, buying stock from local growers to avoid energy in transportation, and similar techniques.

Example

[edit]

In agreement with the city to build a resilient and sustainable landscape, Massachusetts Institute of Technology has initiated several energy efficiency upgrade projects, these projects include:

  • Planting trees and using the tree canopy to provide shade for pedestrians, which also would give students more incentive to walk
  • Landscape filters are added to (partly) treat rain water
  • Storm-water storage are installed to mitigate flood
  • Lighter color pavement for reducing heat island effect

See also

[edit]
[edit]

References

[edit]
  1. ^ Mansfield, Robyn (1996). "Energy efficient landscaping". Soft Technology: Alternative Technology in Australia (56): 24–25. ISSN 0810-1434.
  2. ^ a b c d DelValle, Terry B.; Bradshaw, Joan; Larson, Barbra; Ruppert, Kathleen C. (2008-07-09). "Energy Efficient Homes: Landscaping: FCS3281/FY1050, 6/2008". EDIS. 2008 (5). doi:10.32473/edis-fy1050-2008. ISSN 2576-0009. S2CID 245098464.
  3. ^ a b Hoeven, Gustaaf A. van der (November 1982). "Energy efficient landscaping". cite journal: Cite journal requires |journal= (help)
  4. ^ "Earth-sheltered houses". Lowimpact.org. Retrieved 2021-12-15.[permanent dead link]
  5. ^ Berezin, D V (2019-12-01). "Earth-sheltering effect on dwelling in cold climate: simulation-based and theoretical approaches". IOP Conference Series: Materials Science and Engineering. 687 (5): 055042. Bibcode:2019MS&E..687e5042B. doi:10.1088/1757-899x/687/5/055042. ISSN 1757-8981. S2CID 213946214.
  6. ^ Celik, Serdar; Morgan, Susan; Retzlaff, William A. (April 2010). "Energy Conservation Analysis of Various Green Roof Systems". 2010 IEEE Green Technologies Conference. pp. 1–4. doi:10.1109/GREEN.2010.5453802. ISBN 978-1-4244-5274-3. S2CID 23090814.
  7. ^ Sailor, David J.; Elley, Timothy B.; Gibson, Max (2011-09-13). "Exploring the building energy impacts of green roof design decisions – a modeling study of buildings in four distinct climates". Journal of Building Physics. 35 (4): 372–391. doi:10.1177/1744259111420076. ISSN 1744-2591. S2CID 108512300.
  8. ^ Johnson, Peter (Sep 2008). "Green Roof Performance Measures" (PDF).
  9. ^ Liu, Wen; Wei, Wei; Chen, Weiping; Deo, Ravinesh C.; Si, Jianhua; Xi, Haiyang; Li, Baofeng; Feng, Qi (September 2019). "The impacts of substrate and vegetation on stormwater runoff quality from extensive green roofs". Journal of Hydrology. 576: 575–582. Bibcode:2019JHyd..576..575L. doi:10.1016/j.jhydrol.2019.06.061. ISSN 0022-1694. S2CID 197576248.
  10. ^ Gerzhova; Blanchet; Dagenais; Côté; Ménard (2019-09-19). "Heat Transfer Behavior of Green Roof Systems Under Fire Condition: A Numerical Study". Buildings. 9 (9): 206. doi:10.3390/buildings9090206. hdl:20.500.11794/66393. ISSN 2075-5309.
  11. ^ Cascone, Stefano; Catania, Federico; Gagliano, Antonio; Sciuto, Gaetano (May 2018). "A comprehensive study on green roof performance for retrofitting existing buildings". Building and Environment. 136: 227–239. Bibcode:2018BuEnv.136..227C. doi:10.1016/j.buildenv.2018.03.052. ISSN 0360-1323.
  12. ^ a b "Permeable Pavements" (PDF). Pervious Pavement.
  13. ^ Rowe, Amy A.; Borst, Michael; O'Connor, Thomas P. (2012-04-26). "Pervious Pavement System Evaluation". Low Impact Development for Urban Ecosystem and Habitat Protection. pp. 1–9. doi:10.1061/41009(333)25. ISBN 9780784410097.
  14. ^ "Building Orientation for Optimum Energy". www.nachi.org. Retrieved 2021-12-16.

 

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Reviews for Rock N Block - Turf N Hardscapes


Rock N Block - Turf N Hardscapes

Dawna OgleYohe

(5)

My initial contact was with Ray, whom did an excellent job giving me an estimate on what I wanted done in my small yard and walkway., the guys that came out and did the work were superior. They did an excellent job. I’m very pleased with this company. I will highly recommend them to family and friends, and I will be using them in the near future for other little projects.

Rock N Block - Turf N Hardscapes

Josh Bodell

(5)

Eric and team did an amazing job. They worked with me for months while I got HOA approval for the project. Once they began working they were great, going over everything in detail and making sure things were perfect. This project included wall repair, stucco and paint repair, paver and turf installation. Extremely satisfied with this experience.

Rock N Block - Turf N Hardscapes

John Picard

(5)

Above and beyond. I’ve got 20 years in the construction industry and these guys are top notch. Tell them what you need, they’ll work with you. Communication is clear and they want to make you feel good about the whole process: If I had to do our back yard 100 more times I’d use rock n block every time. The owner is a stand up man, his project managers, even down to his workers. All respectful, hard working people. This is a call you won’t regret making.

Rock N Block - Turf N Hardscapes

Randy Blair

(5)

I had turf and a sidewalk of pavers put down. Wes was amazing and got me all hooked up with a plan and had tons of options for me to choose from. He handled everything. After we got locked in the crew showed up a few weeks later and the went to work like animals. Those guys killed it. Everything looks amazing. I plan to call Wes back when I'm ready for my next project in the front of the yard. Thank you Wes and everyone who killed this project

Rock N Block - Turf N Hardscapes

Rob Foster

(5)

We have been working with Al and the team for many years (8) to be exact. We have had the pleasure of working with many of their clients throughout this time and we absolutely love how their clients are so pleased with the work they do and the outcome of the projects! The sales team and staff have been very supportive and professional and that’s hard to come by. We look forward to many more years of this partnership with a very positive and motivated company that’s always looking out for the best interests of the community!

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Frequently Asked Questions

Absolutely! Artificial grass is ideal for Las Vegas due to its extreme heat and water restrictions. It stays green year-round without the need for constant watering or mowing. It also holds up well against UV rays, making it a durable and eco-friendly alternative to natural grass in desert environments

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With proper installation and minimal maintenance, artificial grass in Las Vegas can last 15–20 years. The synthetic turf is designed to withstand high temperatures, intense sun exposure, and heavy foot traffic—making it a long-lasting landscaping investment for homeowners and businesses alike.
 

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Artificial grass can become warm during peak summer heat, but modern turf products often come with cooling technologies or heat-reflective infills to reduce surface temperatures. You can also cool it down quickly with a light spray of water. Most homeowners find it still comfortable enough for pets and kids with some shading or planning.

 

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Yes! Most artificial grass products are non-toxic, lead-free, and soft underfoot, making them safe for children and pets. Many Las Vegas residents choose turf specifically designed for pet areas, which includes effective drainage systems and odor-reducing infill for cleanliness and hygiene.

 

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While artificial grass requires much less upkeep than natural grass, it still benefits from occasional maintenance. Light brushing, removing debris, and rinsing with water can keep your turf clean and looking fresh. For pet areas, routine deodorizing and proper drainage ensure a clean and odor-free space.

 

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Definitely. One of the biggest advantages of installing artificial grass in Las Vegas is the significant reduction in water usage. Since there's no need for irrigation, homeowners often see a noticeable drop in their water bills—plus it supports Las Vegas’ water conservation efforts amid ongoing drought conditions.

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