Coanda screens are designed and manufactured using the Coanda effect and our Wedge Wire technology....
Category: Wedge Wire Screen
Tags: #selfcleaning, #coanda, #screens
Coanda screens are designed and manufactured using the Coanda effect and our Wedge Wire technology. These screens feature self-cleaning functionality.
Coanda screens are installed on the downstream side of water intake structures. As liquid flows along the screen, the Coanda effect directs debris toward the filtration surface, effortlessly capturing and separating particles.
Coanda screens are designed and manufactured using the Coanda effect and Wedge Wire technology, featuring self-cleaning capabilities.
Coanda screens are used in liquid-solid separation and water screening applications. They can be used in the following applications:
▪ Hydro Turbine Guidance
▪ River Screening
▪ Hydro Inlet Screens
▪ Agricultural Water Diversion
▪ Stormwater Treatment
▪ Fish Protection
▪ Municipal Water Intake Guidance
▪ Industrial Pre-Treatment
▪ Mining Process Water Applications
Coanda screens are strategically placed on the downstream side of water intake structures. As liquid flows along the screen, the Coanda effect directs debris toward the filtration surface, effortlessly capturing and separating particles.
1. No moving parts, and the gravitational flow of water keeps the screens clean.
2. The Coanda Effect maximizes filtration efficiency while minimizing energy consumption.
3. Self-cleaning function with a streamlined wire design.
1. Efficient Filtration: Achieve superior filtration results with minimal pressure loss thanks to precise particle separation using the Coanda effect.
2. Self-Cleaning: Say goodbye to manual cleaning and enjoy continuous operation with the screens’ automatic self-cleaning feature.
3. Cost-Effective: Reduce maintenance costs, downtime, and labor expenses, providing long-term savings for your operation.
4. Durable Construction: Manufactured from high-quality stainless steel materials to ensure long-lasting performance and reliable operation even in harsh environments.