DBNL3 Round Counter Flow Cooling Tower

DBNL3 Round Counter Flow Cooling Tower

Beijing, China
Beijing, China
Company
86-10-87911526
Mandy Wang
Contact person

Basic Information

Place of Origin Shandong China (Mainland)
Brand Name SHUANGYI
Model Number DBNL3 Round Counter Flow Cooling ...
QUALITY CHARACTERISTIC Good Performance Well designed DBNL3 cooling tower make the water andair distribution evenly ,and then the whole performance reached the best level . Good Quality Adopt good patent pouring water filler ,special closed motor ,three spray nozzle ,big diameter special fanfor cooling tower and well-designed belt-driven system .The shell is made of FRP ,the colour is bright ,surface is smoothand anti-aging ,makes the cooling tower always looks new . Energy-saving Water used for admission to control leaching losses in the following ten thousandth prevent the drift water pollution; Use wide blades, low-speed fan and effectively reduce the dynamic pressure from drafts loss, energy-saving and environmentally friendly. Super Low Noise Level Reducer using imported bearings, fan blades wide low-speed, fan noise has been effectively contained, cloth water nozzle, The unique design of tricking silencer pad noise to a minimum Smart and light Cooling tower professionally optimized design, the maximum size of the decrease. Tower structure hot galvanized steel and FRP composite materials, greatly reducing the weight of the tower. Super-Low Noise is available for selection. Low noise cooling towers, not including air inlet shield and shield out drafts. Performance Parameters for Common DBNL3 Cooling Tower Note: * The table shown in the design wet bulb temperature t = 28 ° C and t = 27 ° C in the cooling water, their working conditions are as follows : When the water temperature drop Δ t= 5 ° C, inlet temperature of 37 ° C = t1, t2 water temperature = 32 ° C; When the cooling water Δ t = 8 ° C, 40 ° C = t1, t2 = 32 ° C, Other parameters of the cooling water Please check thermal performance curve table. * Inlet pressure refers to takeover pressure points. 1kgf/cm2 = 9.8 × 104pa, therefore, pressure in this series between 0 .2-0.49kgf/cm2. * Noise standards measured point D, diameter from the tower wall far from the base 1.5 meters high.

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