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V-shaped groove
V-shaped groove
V-shaped groove
V-shaped groove
V-shaped groove
V-shaped groove
V-shaped groove
V-shaped groove

V-shaped groove

A V-shaped groove is a structural channel design widely used in water and wastewater treatment systems, drainage structures, and industrial sedimentation tanks. It is formed with an angled V profile that helps guide water flow, sludge collection, or solid-liquid separation within treatment facilities. In water treatment applications, a V-shaped groove is commonly installed at the bottom of channels, sedimentation tanks, or drainage systems to improve the movement and concentration of settled particles. Its geometry allows solids such as sludge or debris to naturally accumulate toward the center line, making collection and removal more efficient during maintenance operations. This structure is also used in combination with inclined plate settlers, filtration systems, and water distribution channels in municipal and industrial wastewater treatment projects. The V-shaped design helps maintain stable flow conditions and supports smoother operation of downstream treatment processes. Manufactured from materials such as stainless steel or reinforced concrete depending on application requirements, a V-shaped groove offers durability and long service life in environments exposed to continuous water flow and sediment load. It is suitable for both new installations and retrofit upgrades in water treatment infrastructure. Overall, a V-shaped groove is a practical hydraulic and structural component used to optimize flow direction and sediment handling in water and wastewater treatment systems.
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The stainless steel V-shaped trough consists of a stainless steel trough body with several stainless steel angle-steel supports installed in the middle of the trough. Installation angle steels are welded to the bottom of the vertical sides and to the end sections of the trough, and are fixed to the tank wall using expansion bolts.

Because the V-shaped trough body is made of stainless steel, the elevation error of the flushing holes can be controlled within ±1.5 mm, which ensures uniform backwashing and effective cleaning performance of the filter. Several angle-steel supports are arranged in the middle of the trough to enhance structural strength. For convenient installation and secure fixing, installation angle steels are welded to both the bottom of the vertical sides and the upper ends of the trough, achieving firm installation and an aesthetically pleasing appearance.