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Hello, I am doing a MassandEnergyBalanceforaCoolingTowerLab and I need to answer these (b,c,d and e) questions. I need help with that. Below is the data:
Hello,
I am doing a MassandEnergyBalanceforaCoolingTowerLab and I need to answer these (b,c,d and e) questions. I need help with that. Below is the data:
\fApply the Steady FlmlluI Equatinn to the system indicated by me Boundary e] Activity 5: Calculate the energy ow rate out of the system [with the air}. Compare this with the energy fl ow rate into the system. Energyr ow rate out uf the system with the 511;; mg; i:[hm'rau: hair in} Section B: Procedure The cooling tower is allowed to stabilise under the following conditions: Orifice differential, x = 16 mm H20 Water flow rate, 40 gg's Cooling load, 1.0 kW Energy Transferred to Water by Pump: 0.1 kw WaterCapacity of System: 3.0 litre [excluding makeuptankl Dimensions of Column: 150 mm x 150 mm x600 mm high Water Capacity of System: 3.0 litre [excluding makeup tan kl [Stability is reached when there is no fu rth er a pprecia ble change in temperature 1 \fd) Activity 4: Compare this with the mass flow rate of moisture leaving the system (with the air). mass flow rate of moisture leaving the system = maj(@out - win)\fStep by Step Solution
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