Engineering Fundamentals:part I Related to moist air and water

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Presentation transcript:

Engineering Fundamentals:part I Related to moist air and water Thermodynamic properties of moist air State Process Pad and Fan system Pad efficiency at various facing velocity Pad efficiency and pressure drop at various thickness Fan curves Efficiency of the nozzle in misting/fogging system Psychrometric related Tables generated by Psychart software

Thermodynamic properties of moist air dry bulb T wet bulb T dew point T relative humidity absolute humidity (humidity ratio) specific volume enthalpy vapor pressure saturated vapor pressure

With 2 independent properties and the given atmospheric pressure The state of the moist air can be defined.

Psychrometric Chart

Independent Properties   Twb rh Tdp AH SV H Pws hfg Pv Tdb P I

Digital Psychrometric Chart

Zoom in & Zoom out

Process: between states Sensible Heating (3->4) Sensible Cooling (4->3) Humidification (4->5) Dehumidification (5->4) Heating (3->5, 3->1) Cooling (5->3, 1->3) Air Mixing (1, 2->3) Evaporative Cooling,Drying (1->2, 1->3) Combination of above (1->2->3->4->5)

A process with sensible heat gain

Move along prefix lines & Curves Constant Twb Constant RH Constant Tdp, Pw, AH Constant Tdp, Pw, AH Constant RH Constant Twb

Efficiency of a Pad and Fan system

Pad efficiency at various facing velocity Eff = 86.62 – 20.787 * V + 2.755 * V2 Kool-Cel pad Eff = 91.034 – 17.91 * V + 5.231 * V2 CELdek pad Eff = 76.055 + 2.909 * V – 17.414 * V2 Excelsior pad Trumbull, et al. (1986) Thickness of the pads were not mentioned. 10 cm ?

Pad efficiency at various facing velocity and thickness 10 cm pad 20 cm pad

Pressure drop at various facing velocity and pad thickness 10 cm pad 20 cm pad

Fan curves of various models of

Blow-off of water from the pad at 1 m/s for the Excelsior pad, at 1.6 m/s for the Kool-Cel pad and at 2 m/s for the CELdek pad Trumbull, et al. (1986)

Efficiency of nozzle (misting/fogging system) β = 0.124 + 1.35 * 10-4 * P Bottcher et al. (1991) P = 64.888 ATM  β= 100% Considering some head loss and friction loss, 70 ATM (70 kg/cm2) was used in my research.

Handy Tables

User friendly 3-step design in PsyTable 1.Define the ranges 2.Set the intervals 3.list the values

Twb = f(Tdb, RH) Twb RH (50 – 100%)and Tdb (20 – 44 oC)

RH = f(Tdb,Twb) RH Twb (20 – 44 oC) and Tdb (20 – 44 oC)

Wet Bulb Depression is the limit of evaporative cooling methods. WBD = f(Tdb,RH) WBD Wet Bulb Depression is the limit of evaporative cooling methods.

Evaporative cooling Methods Pad and Fan system Spraying Misting Fogging Multi-Net Fogging and Fan system