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Tutorial for Psyc0226 Wei Fang, Ph.D., Professor Dept. of Bio-Industrial Mechatronics Engineering National Taiwan University Software last updated: 2002/02/26 Tutorial last updated: 2003/11/28

Tutorial for Psyc0226

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Tutorial for Psyc0226. Wei Fang, Ph.D., Professor Dept. of Bio-Industrial Mechatronics Engineering National Taiwan University Software last updated: 2002/02/26 Tutorial last updated: 2003/11/28. Capability of Psyc0226. Allow alteration on atmospheric pressure Provide handy PsyTables - PowerPoint PPT Presentation

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Page 1: Tutorial for Psyc0226

Tutorial for Psyc0226

Wei Fang, Ph.D., ProfessorDept. of Bio-Industrial Mechatronics Engineering

National Taiwan University

Software last updated: 2002/02/26Tutorial last updated: 2003/11/28

Page 2: Tutorial for Psyc0226

Capability of Psyc0226

Allow alteration on atmospheric pressure

Provide handy PsyTablesTotally 11 tables are available

Provide PsyChartsState calculation: besides AtmP, values of 2 independent states are required to calculate othersProcess calculation: find differences between 2 statesMore process calculation:

Evaporative cooling Vapor pressure deficit on leaf

Page 3: Tutorial for Psyc0226

Abbreviations of thermodynamic properties of moist air used in Psyc0226

1. Tdb: dry bulb Temp. 2. RH : relative humidity3. Twb: Wet bulb Temp.4. Tdp: dew point Temp.5. AH : absolute humidity 6. SV : specific volume7. Hfg: Saturated 8. DOS: degree of Saturation9. Pws: saturated vapor pressure10. Pw: vapor pressure

More message of the selected cell

Page 4: Tutorial for Psyc0226

Block in red defined as Psychart window

Page 5: Tutorial for Psyc0226

Set the Atmospheric pressure is the first step

Page 6: Tutorial for Psyc0226

Handy PsyTables

Page 7: Tutorial for Psyc0226

Totally 11 PsyTables

Page 8: Tutorial for Psyc0226

User friendly 3-step design in PsyTable

1. Define the ranges

3. List the values

2. Set the intervals

Page 9: Tutorial for Psyc0226

Table 1: Twb = f(Tdb, RH)

RH (50 – 100%)and Tdb (20 – 44 oC)

Twb

Page 10: Tutorial for Psyc0226

Table 2: WBD = f(Tdb,RH)

WBD

Wet Bulb Depression is the limit of evaporative cooling methods.

Page 11: Tutorial for Psyc0226

Table 3: RH = f(Tdb,Twb)

Twb (20 – 44 oC) and Tdb (20 – 44 oC)

RH

Page 12: Tutorial for Psyc0226

Table 4: VPD of air

Page 13: Tutorial for Psyc0226

VPD/AHD of air

VPD=Pws@Tdb – Pw@TdbAHD=Sat.AH@Tdb – Sat.AH@Tdp

Page 14: Tutorial for Psyc0226

Table 5: VPD’ of air

Page 15: Tutorial for Psyc0226

VPD’/AHD’ of air

VPD’=Pw@Twb – Pw@TdbAHD’=Sat.AH@Twb – Sat.AH@Tdp

Page 16: Tutorial for Psyc0226

PsychartsBesides atmospheric pressure, values of 2

independent states are required to derive

others

find differences between 2 states

Evaporative cooling process calculation

Vapor pressure deficit on leaf

Page 17: Tutorial for Psyc0226

State Calculation

Page 18: Tutorial for Psyc0226

Independent Properties (IP)Twb

RH Tdp AH SV H hfg DOS

Pws

Pw

Tdb IP IP IP IP IP IP IP IP

Any pair of IP can be the given values to derive others.

Page 19: Tutorial for Psyc0226

One click in Psychart window using left button of the mouse can define a

state

Page 20: Tutorial for Psyc0226

Process Calculation

Page 21: Tutorial for Psyc0226

Use mouse to define 2 states

1. To define 2nd state, change from ‘Inactive’ to ‘Active’ first.

2. Click in the Psychart window at the selected state or click on the crosshair region to move along constant lines or curves.

3. Click on ‘Cal.’ to calculate the difference.

Page 22: Tutorial for Psyc0226

Move along prefix lines or Curves

Constant Tdp, Pw,

AH

Constant Twb

Constant RH

Constant Twb

Constant Tdp, Pw,

AH

Constant RH

Constant Tdb

Constant Tdb

Page 23: Tutorial for Psyc0226

A process with sensible heat gain

Page 24: Tutorial for Psyc0226

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)

Page 25: Tutorial for Psyc0226

Evaporative cooling process

Page 26: Tutorial for Psyc0226

Enter ‘Tdb after pad’ or ‘pad efficiency’ to derive others followed by a Click on

‘Draw’ icon.

WBD

Page 27: Tutorial for Psyc0226

Temperature drop after passing through pad

(ΔT)ΔT = WBD of outdoor x Efficiency of the pad

T T- ΔT

Page 28: Tutorial for Psyc0226

Vapor pressure deficit (VPD)

VPD

Enter Leaf temperature, then click on Draw icon.

Page 29: Tutorial for Psyc0226

Other user friendly designs

Page 30: Tutorial for Psyc0226

Lines and curves can be visible or hidden by (de)selecting

related icons

Page 31: Tutorial for Psyc0226
Page 32: Tutorial for Psyc0226

Zoom in & out

Page 33: Tutorial for Psyc0226

Labels in Psychart window can be hidden by de-select the Unit label

icon

Page 34: Tutorial for Psyc0226

The state user defined in the psychart window using left button of the mouse will be placed in

the center of the psychart window if the Centralize icon was selected. This option is set

inactive by default.

Page 35: Tutorial for Psyc0226

Enjoy playing with

Digital PsychartPlease send us information regarding found bugs.

Mail to : [email protected]