![]() ![]() These options are most popular in marquee residential or commercial sites.įor other facing needs, Tensar’s RSS solutions can be used with stone facing or architectural veneers. When instant visual appeal is required, sod and landscape engineering can be used to quickly present a finished look that enhances the appearance and value of the project. Hydroseeding is a common facing choice for projects such as overpasses and roadways. For projects where cost savings is important and the project doesn’t require immediate aesthetic appeal, hydroseeding with flower or grass seed can be installed quickly. ![]() If your project needs to blend naturally with the surrounding environment, we offer vegetated facings that preserve natural beauty. Tensar’s RSS solutions are compatible with a variety of different facing options. Our RSS solutions offer a wide variety of facing options to satisfy aesthetic or environmental needs. In fact, our RSS installations typically cost 30-60% less than conventional concrete wall methods and have been used in commercial and industrial, transportation, utility and residential applications worldwide. These solutions often cost less than conventional concrete walls thanks to reduced fill requirements and the allowed use of on-site fills. Tensar’s reinforced soil slope (RSS) solutions are stabilized with geogrids to provide long-term durability and structural integrity that you can rely on. And their flexibility makes them applicable in a broad range of project types, from transportation infrastructure to single- and multi-family residential housing. Reinforced soil slopes can also provide effective resistance to differential settlement and seismic activity and eliminate surficial stability issues. Reinforced soil slopes and steepened slopes present unique stability challenges, but they can be better alternatives to other grade separation solutions when aesthetic appeal and environmental impacts must be considered. Reinforced Slopes & Steep Slope Stabilization Preserve aesthetic appeal and minimize environmental impact while maximizing usable land ![]()
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