infiltration/ventilation hvac 7a cnst 305 environmental systems 1 dr. berryman

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Infiltration/ Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

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Page 1: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Infiltration/Ventilation

HVAC 7a

CNST 305 Environmental Systems 1Dr. Berryman

Page 2: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Infiltration

Types of heat losses?

Types of heat gains?

Page 3: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Calculating Infiltration Crack method Air change method Effective leakage-area method

Sensible

BH = 1.08 x T x CFM

Latent

BH = 0.68 x G x CFM

Equations w/ Air Constants

Page 4: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Air Crack MethodDivide by 60 min for CFM

Lower pressure differentials mean tighter construction

Page 5: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Crack Example (winter)

EXAMPLEGiven:

•3o 5o Double Hung Window

•No added humidification

•IA conditions: DB=75oF

•OA conditions: DB=-5oF

•Medium Construction

How many BTUH are lost due to frame wall infiltration?

Page 6: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Air Change Converts equation to cubic feet

Equals one room change Designer will use 0.3 to 2.0 room changes

per hour Occupancy Climatic condition (i.e. winter vs. summer) Construction (tight or loose)

Least accurate of the three methods

BHsens = 1.08 x T x CF60

Page 7: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Air Change Example

EXAMPLEGiven:

•20’ x 60’ x 10’ room

•Winter - 0.35 RCH

•No added humidification

•IA conditions: DB=75oF

•OA conditions: DB=-5oF

How many BTUH lost due to infiltration?

Page 8: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Ventilation

+ pressure

1600 CFM

200 CFM

1400 CFM

FA

SA

RA

Page 9: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Calculating Ventilation CFM per Person

Use ASHARE chart Room Air Change per Hour

0.5 – 2.0 RCH

Sensible

BH = 1.08 x T x CFM

Latent

BH = 0.68 x G x CFM

Equations w/ Air Constants

Page 10: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Determining Ventilation Requirements

Determinates Building

Application # Occupants

Page 11: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Ventilation - CFM per Person

EXAMPLEGiven:

•2000 SF Coin Operated Laundry

•Winter design

•No added humidification

•IA conditions: DB=75oF

•OA conditions: DB=-5oF

How many BTUH lost due to ventilation?

Page 12: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Ventilation - Room ChangeGiven:

•2000 SF Coin Operated Laundry - 10’ walls

•Winter design 2.0 RCH

•No added humidification

•IA conditions: DB=75oF

•OA conditions: DB=-5oF

How many BTUH lost due to ventilation?

Page 13: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Summer Conditions- CFM per Person

Given:

• 2000 SF Coin Operated Laundry

• 15 CFM/person summer

• IA conditions: DB=75oF 40%RH

• OA conditions: DB= 95oF WB=80oF

How many BTUH gained due to ventilation?

BHsens = 1.08 x T x CFM

BHlat= 0.68 x G x CFM

Page 14: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

In Class: Given:

• 2000 SF Coin Operated Laundry 10’ walls

• 1.5 RCH

• IA conditions: DB=75oF 40%RH

• OA conditions: DB= 95oF WB=80oF

How many BTUH gained due to ventilation?

Summer Conditions- Room Change

Page 15: Infiltration/Ventilation HVAC 7a CNST 305 Environmental Systems 1 Dr. Berryman

Next Time Heat Gains Chapter 2.6 – 2.8 (Toa)

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