APPROACH TEMPERATURE IN COOLING TOWER

May 14, 11
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  • Mar 10, 2011 . The diagram shows the default drawing of the cooling tower, with the required . and the approach temperature to this wet bulb temperature. .
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  • Capacity — The amount of water (gpm) that a cooling tower will cool through a specified range, at a specified approach and wet-bulb temperature. Unit: gpm .
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  • Cooling Range The difference in temperature between the hot water entering the tower and the cold water leaving the tower is the cooling range. Approach The .
  • In a wet cooling tower, the cooled water can approach the wet bulb temperature of the air. In a dry cooling tower the cooled water temperature can only .
  • The equivalent ton on the cooling tower side actually rejects about 15000 . .. Approach - The approach is the difference in temperature between the .
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  • Cooling Range. The difference in temperature between the hot water entering the tower and the cold water leaving the tower is the cooling range. Approach .
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  • Tower size varies inversely with the approach to the wet-bulb temperature. At a 5oF approach, the size of the cooling tower begins to increase .
  • At an outside wet bulb temperature of 50°F, a typical cooling tower temperature approach is on the order of 15°F. Even with this approach divergence, .
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  • 14 posts - 10 authors - Last post: Jun 7, 2007Cooling towers also have a design approach temperature, which is the difference between the wet bulb temperature and the supply water given .
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  • Open evaporative cooling tower technology. . Counter flow cooling towers can approach the wet bulb temperature better compared with cross flow cooling .
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  • The required tower size will be a function of: 1. Cooling range 2. Approach to wet bulb temperature 3. Mass flowrate of water 4. Web bulb temperature .
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  • Real approach shall depend upon cooling tower design, mainly air to water contact and contact time. This approach, hence cold water temperature depends upon .
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  • Cooling Tower Approach The difference in temperature between the water off the tower and the design air inlet wet bulb; for 90°F outlet and 83°F w.b. air .
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  • The difference between the leaving water temperature and the entering air wet bulb temperature is the approach of the cooling tower. The approach is a .
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  • Mar 17, 2011 . To go from an approach temperature of 8.3°C (15°F) to an approach temperature of 5.6°C (10°F), the cooling tower size would have to .
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  • Dry cooling becomes more economical when the approach temperature becomes considerably high. Other factors that affect the performance of dry cooling towers .
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  • Sep 15, 2008 . The water then is pumped to the cooling tower, where it is cooled via evaporation. This system design has two approach temperatures: a .
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  • cooling tower. Cooling towers are rated in terms of approach and range, where. the approach is the difference in temperature between the cooled-water .
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  • Cooling range. _ Cold water from tower. 70°F. Approach. Wet-bulb temperature. 65 '. Figure 26 — Diagram showing definition of "Cooling Range" and "Approach". .

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