How to Calculate Cooling Tower Efficiency? | Cooling Tower Efficiency | Cooling Tower

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Core Engineering

Core Engineering

Күн бұрын

Пікірлер: 14
@Coreengineers
@Coreengineers Жыл бұрын
Watch more technical videos:🛠️👇 1. Industrial Engineering Videos: kzbin.info/aero/PLrqNx2OqGF51_BYmmF_z2TrR2x0EkVH3z 2.Industrial Pump Videos: kzbin.info/aero/PLrqNx2OqGF51IVvA2ivV1XdiMRnlWMLsC 3. Centrifugal Pump Videos: kzbin.info/aero/PLrqNx2OqGF513HW1AN7M9sw0kTqnO1ESX 4. Instrumentation Engineering Videos: kzbin.info/aero/PLrqNx2OqGF50F-gYBOccjSb9E-9F8zCi7 5. Piping Engineering Videos: kzbin.info/aero/PLrqNx2OqGF513CRbtuqu77IKBuIak9M3S
@danielodeliro2412
@danielodeliro2412 Жыл бұрын
Thanks
@javeedhvactechnician7760
@javeedhvactechnician7760 Жыл бұрын
kzbin.info/www/bejne/roesZmOdns51ldksi=Be6-JC0TtNeuLxkM
@Omkar_-168
@Omkar_-168 Жыл бұрын
Sir please bring more video about vacuum distillation
@HarshSharma0008
@HarshSharma0008 5 ай бұрын
Sir what is RH in cooling tower?
@nidhishanandanwar4059
@nidhishanandanwar4059 Жыл бұрын
Plzz make vedio on line sizing & pump sizing
@Coreengineers
@Coreengineers Жыл бұрын
sure... uploading soon
@javeedhvactechnician7760
@javeedhvactechnician7760 Жыл бұрын
kzbin.info/www/bejne/roesZmOdns51ldksi=Be6-JC0TtNeuLxkM
@Unknown_09is
@Unknown_09is Жыл бұрын
Hi, I have two questions. The range of the cooling tower is a function of process heat load and cooling water circulation flow rate (Q=m.Cp.dT). Heat load and flow rate will decide the dT. What role the cooling tower has in controlling the dT (or range)? And if we know the efficiency of cooling tower, what steps we can take to improve it?
@javeedhvactechnician7760
@javeedhvactechnician7760 Жыл бұрын
kzbin.info/www/bejne/roesZmOdns51ldksi=Be6-JC0TtNeuLxkM
@stevenabel7422
@stevenabel7422 Жыл бұрын
thank you for your explanation. i have question, how was the effect of surround air humidity on cooling tower? is there any way we can calculate the cooling tower efficiency with including the effect from humidity?
@Coreengineers
@Coreengineers Жыл бұрын
Surrounding air humidity affects cooling tower performance by influencing the rate of evaporation and heat transfer. Higher humidity reduces the rate of water evaporation and cooling, while lower humidity enhances cooling efficiency. To calculate this effect, you can use the concept of "wet-bulb temperature." This is a measure of air temperature accounting for humidity and is lower than the dry-bulb temperature (regular air temperature). The cooling tower's performance can be estimated using the approach of "approach to wet-bulb temperature," which is the difference between the cooling tower outlet water temperature and the wet-bulb temperature of the inlet air. A smaller approach indicates better cooling tower efficiency. To calculate the effect of humidity, follow these steps: 1. Measure the dry-bulb temperature (regular air temperature) and wet-bulb temperature of the incoming air. 2. Calculate the approach to wet-bulb temperature: Approach = Outlet Water Temperature - Wet-Bulb Temperature. 3. Compare the calculated approach with different humidity levels to assess the impact on cooling tower efficiency.
@stevenabel7422
@stevenabel7422 Жыл бұрын
@@Coreengineers thank you so much for your answer. cmiiw, the range and approach method have been including the air surrounding humidity? and second, what's the equation for point number 1 which is the measure dry bulb - wet bulb? thank you so much for your attention
@Srk7028
@Srk7028 Жыл бұрын
@2.07 , Approach of CT formulae plz check
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