Zaloguj się

Change in atmospheric pressure with height is particularly interesting. The decrease in atmospheric pressure with increasing altitude is due to the decreasing gravitational force per unit area as we move away from the surface of the earth.

Assuming the air temperature is constant at a given altitude and that the ideal gas law of thermodynamics describes the atmosphere to a good approximation, one can find the variation of atmospheric pressure with height.

Let p(y) be the atmospheric pressure at height y. The density ρ at y, the temperature T in the Kelvin scale (K), and the mass m of a molecule of air are related to the absolute pressure by the ideal gas law, in the form:

Equation1

Using density from the ideal gas law, the rate of variation of pressure with height is integrated from sea level, and the final expression is obtained as:

Equation2

where,

Equation3

Atmospheric pressure drops exponentially with height, since the y-axis points up from the ground, and y has positive values in the atmosphere above sea level. The pressure drops by a factor of 1/e when the height is 1/α, which gives us a physical interpretation for α. The constant 1/α is a length scale that characterizes how pressure varies with height and is often referred to as the pressure scale height.

Tagi
Atmospheric PressureHeight VariationGravitational ForceIdeal Gas LawThermodynamicsDensityTemperaturePressure Scale HeightPressure DropSea LevelExponential Decrease

Z rozdziału 13:

article

Now Playing

13.4 : Variation of Atmospheric Pressure

Fluid Mechanics

1.8K Wyświetleń

article

13.1 : Charakterystyka płynów

Fluid Mechanics

3.4K Wyświetleń

article

13.2 : Gęstość

Fluid Mechanics

11.4K Wyświetleń

article

13.3 : Ciśnienie płynów

Fluid Mechanics

11.8K Wyświetleń

article

13.5 : Prawo Pascala

Fluid Mechanics

7.6K Wyświetleń

article

13.6 : Zastosowanie prawa Pascala

Fluid Mechanics

7.6K Wyświetleń

article

13.7 : Manometry

Fluid Mechanics

2.7K Wyświetleń

article

13.8 : Pływalności

Fluid Mechanics

5.7K Wyświetleń

article

13.9 : Zasada Archimedesa

Fluid Mechanics

7.4K Wyświetleń

article

13.10 : Gęstość i zasada Archimedesa

Fluid Mechanics

6.4K Wyświetleń

article

13.11 : Płyny przyspieszające

Fluid Mechanics

944 Wyświetleń

article

13.12 : Napięcie powierzchniowe i energia powierzchniowa

Fluid Mechanics

1.2K Wyświetleń

article

13.13 : Nadciśnienie wewnątrz kropli i pęcherzyka

Fluid Mechanics

1.5K Wyświetleń

article

13.14 : Kąt zwilżania

Fluid Mechanics

11.3K Wyświetleń

article

13.15 : Wzrost cieczy w rurce kapilarnej

Fluid Mechanics

1.1K Wyświetleń

See More

JoVE Logo

Prywatność

Warunki Korzystania

Zasady

Badania

Edukacja

O JoVE

Copyright © 2025 MyJoVE Corporation. Wszelkie prawa zastrzeżone