Determine the Air Change Hours for the 185 m³ room following the CO, production, and assuming 30 people: P = 8.89×10-6 m³/s per person. P = 16.11×10-6 m³/s per person. P = 23.06×10-6 m³/s per person. P = 28.89×10-6 m³/s per person. Light work Moderate work Heavy Duty Extreme work %3D Cs =0.015% Cs =0.045% Cs =0.060% Cs =0.090% Cs =0.12% Cs =0.15% Cs =0.18% Cr =0.5%. Cr =0.5%. Cr =0.5%. Cr =0.5%. Cr =0.5%. Cr =0.5%. Cr =0.5%. GROUP 1: GROUP 2: GROUP 3: GROUP 4: GROUP 5: GROUP 6: GROUP 7:

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
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Exercise 4: ACH Requirements.
Determine the Air Change Hours for the 185 m³ room following the CO2
production, and assuming 30 people:
P = 8.89×10-6 m³/s per person.
P = 16.11×10-6 m³/s per person.
P = 23.06×10-6 m³/s per person.
P = 28.89×10-6 m³/s per person.
Light work
Moderate work
Heavy Duty
Extreme work
Cs =0.015%
Cs =0.045%
Cs =0.060%
Cs =0.090%
Cs =0.12%
Cs =0.15%
Cs =0.18%
Cr =0.5%.
Cr =0.5%.
Cr =0.5%.
Cr =0.5%.
Cr =0.5%.
Cr =0.5%.
Cr =0.5%.
GROUP 1:
GROUP 2:
GROUP 3:
GROUP 4:
GROUP 5:
GROUP 6:
GROUP 7:
Transcribed Image Text:Exercise 4: ACH Requirements. Determine the Air Change Hours for the 185 m³ room following the CO2 production, and assuming 30 people: P = 8.89×10-6 m³/s per person. P = 16.11×10-6 m³/s per person. P = 23.06×10-6 m³/s per person. P = 28.89×10-6 m³/s per person. Light work Moderate work Heavy Duty Extreme work Cs =0.015% Cs =0.045% Cs =0.060% Cs =0.090% Cs =0.12% Cs =0.15% Cs =0.18% Cr =0.5%. Cr =0.5%. Cr =0.5%. Cr =0.5%. Cr =0.5%. Cr =0.5%. Cr =0.5%. GROUP 1: GROUP 2: GROUP 3: GROUP 4: GROUP 5: GROUP 6: GROUP 7:
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