Fill

Fills improve water distribution by splitting the water stream as it descends through the fill pack. High thermal performance and low pressure drop are balanced by utilizing advanced design and maintaining the highest manufacturing standards.
The Brentwood Turbo Splash PAC achieves high thermal performance in both counter flow and cross flow cooling towers, and its open, fouling-resistant design makes it an ideal choice for dirty water applications such as the Power, Refining, Petrochemical, Steel, Chemical, Pulp & Paper, and Food Processing industries.


» Highest thermal performance for counter flow splash fills.
» Folds into nested bundles (right) for easy, cost-effective shipping, storage, and installation.
» Open design provides maximum fouling resistance, even in applications where fibers are present.
» Simple, bottom-supported installation (No field assembly or hangers required).
» Turbo Splash PACs can be configured in various spacing and angles to optimize performance.
» Pipe Support Saddles are designed into the top and bottom of the Turbo Splash panel frames for positive alignment and secure installation onto the intermediate supports (3/4" [19 mm] Schedule 40 pipe).
» Available in 4" (SF100) and 6" (SF150) pair spread configurations.
» Constructed of durable, trouble-free Polypropylene Copolymer that is resistant to alkalis, acids, and oils.
» High Temperature Rated for continuous operation at 180°F (82.2°C) and a 24 hour maximum of 195°F (90.6°C).





V-Bar



PP Bigudi Type Fill


PP (Polypropylene) Bigudi fillings are preferred where the water is very hot or oily, where the environment is dirty and dusty. This filling, made of Polypropylene material, is capable to withstand temperature up to 90°C without damage. They are easy to clean.


PP Splash Type Fill


PP (Polypropylene) Splash fillings are consisted of bars letting an easy passage. Those fillings are preferred where the water is oily, where the environment is dirty and dusty, where there is more than 100 ppm total suspended solid and where the water tends to form scale. This filling, made of Polypropylene material, is capable to withstand temperature up to 90°C without damage.

» Cross-Fluted Fills improve water distribution by splitting the water stream as it descends through the fill pack. Brentwood’s CF1900/CF1900MA design splits the water stream 8 times in a 12” (305 mm) vertical path.
» High thermal performance (high KaV/L) and low pressure drop are achieved through engineered flute/microstructure design and the highest manufacturing standards.
» CF1200: For use in factory-assembled counterflow towers (HVAC and general industrial applications)
» CF1900: : The popular choice for field-erected or factory-assembled counterflow cooling towers. Can also be used in crossflow towers. For use in Power, Refining, Chemical, Steel, and Food Processing applications where water quality is “good”.
» CFS3000: For the same applications as the CF1900 and CF1900MA, but the CFS3000’s larger channels decrease fouling potential in low-quality wate

CF12/CF15/CF19/CF27
Dimensions of Modul: 2.400 x 300 mm, (height: 150, 300, 600 mm) other on request
CF12  CF15    CF19     CF27
Surface (m²/m³):    240    190    150    125
Weight: 20-60 kg/m³
Channel structure: crossflow
Material: PP, PVC
Temperature of operation (°C): PP: -20 to +75, PVC: 0 to +55, (further on request)


Vertical Flow Fills feature vertical flow channels with large openings that allow the higher water velocities necessary to create an anti-fouling environment in the fill. In the VF19PLuS we’ve added an engineered micro-structure to the flutes to improve water distribution and thermal mixing  For use in counterflow cooling towers where water quality is “poor” (poor make-up water or process contamination). Typical applications are Power, Refining, Chemical, Mining, and Food Processing.



Dimensions of modul:
2.400 x 300 mm, (height: 300, 600 mm)
Specific surface: 140 m²/m³
Channel structure: vertical
Material: PP, PVC
Temperature of operation: PP: -20 to 50°C, PVC: 0 bis 55°C, (higher on request)


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