Hidden pitfalls in Cooling tower selection – the four parameters that matter most In the cooling tower selection process, there is a particularly frustrating scenario: the equipment passes all factory tests, but on-site performance consistently fails to meet the design outlet water temperature. The client blames the selection, the manufacturer claims the site conditions d
Read MoreUneven Nozzle Distribution in Closed Cooling Towers: Why Heat Exchange Efficiency Drops Sharply? NEWIN NWN Series High-Efficiency Cooling Tower Deployed at Xinjiang Chemical Facility In the operational system of a closed cooling tower, the spray system plays a critically important role. Its core task is to evenly distribute spray water over the surface of the heat e
Read MoreCooling Tower WGR-Based Selection: Enthalpy Method or Pressure Difference Method? In the engineering practice of cooling tower design and selection, many engineers, after completing thermal calculations, tend to focus solely on whether the result "converges"—rarely pausing to ask: Is the method I am using actually suitable for this operating condition? Our previous techn
Read MoreCooling Tower Thermal Calculation: Merkel Enthalpy vs Pressure Difference – Differences & Applications One of the most fundamental questions in cooling tower design and selection is this: given the inlet water temperature, the outlet water temperature, and the prevailing climatic conditions, what fill volume is required to consistently deliver the cooling task? To address this, the
Read MoreCommon lssues During Cooling Tower Operation During long-term cooling tower operation, suspended solids in circulating water — such as dust, silt, and microbial slime — gradually settle in the bottom basin. Due to low flow velocity and insufficient hydraulic disturbance, these impurities easily accumulate, forming sediment that thickens and hardens over time. If not removed promptly
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