DOFPro Team
DOFPro Team
Under Pressure Part 2
Under Pressure Part 1
Absolute, Atmospheric, and Gauge Pressure
\(\Delta P = P_1 - P_2 = P_\mathrm{absolute}=P_\mathrm{abs}\)
e.g., \(30\ \mathrm{psia}\)
\(\Delta P = P_1 - P_2 = P_\mathrm{atmosphere}=P_\mathrm{atm}\)
\(\Delta P = P_1 - P_2 = P_\mathrm{gauge}=P_\mathrm{g}\)
e.g., \(14.7\ \mathrm{psig}\)
Calculating Absolute, Atmospheric, Gauge Pressures
\(P_\mathrm{abs} = P_\mathrm{g}+P_\mathrm{atm}\)
\(P_\mathrm{g} = P_\mathrm{abs}-P_\mathrm{atm}\)
Barometric and Atmospheric Pressure
Weather report gives barometric, not atmospheric pressure.
The barometric pressure is the local atmospheric pressure adjusted for altitude to sea level.
\[P_\mathrm{baro}=P_\mathrm{atm}(1-2.25577 \times 10^{-5}h)^{5.25588}\]
\[P_\mathrm{atm}=P_\mathrm{baro}(1-2.25577 \times 10^{-5}h)^{-5.25588}\]
with \(h\) in meters.
Measure bicycle tire pressure in Claremont, CA, USA
\(P_\mathrm{baro} = 29.89\ \mathrm{inHg}\)
\(h_\mathrm{Claremont} = 1340\ \mathrm{ft}=408.4\ \mathrm{m}\)
\[\begin{aligned} P_\mathrm{atm} & =P_\mathrm{baro}(1-2.25577 \times 10^{-5}h)^{-5.25588} \\ & =29.89\ \mathrm{inHg}(1-2.25577 \times 10^{-5}\cdot408.4)^{-5.25588} \\ & = 28.47\ \mathrm{inHg}= 723.2\ \mathrm{Torr}= 13.98\ \mathrm{psia} \approx 14.0\ \mathrm{psia} \end{aligned}\]
\(P_\mathrm{g} = 36.0\ \mathrm{psig}\)
\[\begin{aligned} P_\mathrm{abs} & = P_\mathrm{g}+P_\mathrm{atm} \\ & =36.0\ \mathrm{psig}+14.0\ \mathrm{psia} = 50.0\ \mathrm{psia} =3.45\ \mathrm{bar} \end{aligned}\]
Background CC BY 3.0 link
Background CC BY-SA 3.0 link
Acronym | Name | Max P (Pa) | Min P (Pa) |
---|---|---|---|
HV | High Vacuum | \(10^{-1}\) | \(10^{-5}\) |
UHV | Ultrahigh Vacuum | \(10^{-5}\) | \(10^{-10}\) |
EHV | Extrememly High Vacuum | \(10^{-10}\) | \(<10^{-10}\) |
Thanks for watching!
The Full Story companion video is in the link in the upper left. The next video in the series is in the upper right. To learn more about Chemical and Thermal Processes, visit the website linked in the description to find previous and following videos in this series.
The DOFPro Team