File:Sketches of Rossby wave's fundamental principles..png
From HandWiki

Size of this preview: 560 × 287 pixels. Other resolutions: 420 × 216 pixels | 3,648 × 1,872 pixels.
Original file (3,648 × 1,872 pixels, file size: 287 KB, MIME type: image/png)
This file is from a shared repository and may be used by other projects. The description on its file description page there is shown below.
Summary
DescriptionSketches of Rossby wave's fundamental principles..png |
English: a and b The restoring force. c–e The waveform’s velocity. In a, an air parcel follows along latitude φ_0 at an eastward velocity v_E with a meridional acceleration a_N=0 when the pressure gradient force balances the Coriolis force. In b, when the parcel encounters a small displacement δφ in latitude, the Coriolis force’s gradient imposes a meridional acceleration a_N=δφda_C/dφ=-δφv_E 2Ω"Cos" φ_0 that always points against δφ when v_E>0. Here, Ω denotes the Earth’s angular frequency and a_C=-ν_E 2Ω"Sin" φ is the northward Coriolis acceleration. While the parcel meanders along the blue arrowed line l in b , its waveform travels westward as sketched in c. The absolute vorticity composes the planetary vorticity f=2Ω"Sin" φ and the relative vorticity ζ, reflecting the Earth’s rotation and the parcel’s rotation with respect to the Earth, respectively. The conservation of absolute vorticity D(ζ+f)/Dt=0 determines a southward gradient of ζ, as denoted by the red shadow in c. The gradient’s projection along the flow path l is typically not zero and would cause a tangential velocity v_t. As an example, the path l in c is zoomed in at two green crosses, displayed in d and e. These two crosses are associated with positive and negative gradients of ζ along l, respectively, as denoted by the red and pink arrows in d and e. The black arrows v_t denote the vector sums of the red and pink arrows bordering the crosses, both of which project zonally westward. The parcels at these crosses drift toward the green points in c and, visually, the path l drifts westward toward the dotted line. |
Date | |
Source | Own work |
Author | Hmq512 |
Licensing
I, the copyright holder of this work, hereby publish it under the following license:



This file is licensed under the Creative Commons Attribution-Share Alike 4.0 International license.
- You are free:
- to share – to copy, distribute and transmit the work
- to remix – to adapt the work
- Under the following conditions:
- attribution – You must give appropriate credit, provide a link to the license, and indicate if changes were made. You may do so in any reasonable manner, but not in any way that suggests the licensor endorses you or your use.
- share alike – If you remix, transform, or build upon the material, you must distribute your contributions under the same or compatible license as the original.
![]() |
This media file is uncategorized.
Please help improve this media file by adding it to one or more categories, so it may be associated with related media files (how?), and so that it can be more easily found.
Please notify the uploader with {{subst:Please link images|File:Sketches of Rossby wave's fundamental principles..png}} ~~~~ |
Captions
Add a one-line explanation of what this file represents
Items portrayed in this file
depicts
some value
17 December 2022
image/png
File history
Click on a date/time to view the file as it appeared at that time.
Date/Time | Thumbnail | Dimensions | User | Comment | |
---|---|---|---|---|---|
current | 20:19, 16 December 2022 | ![]() | 3,648 × 1,872 (287 KB) | imagescommonswiki>Hmq512 | Uploaded while editing "Rossby wave" on en.wikipedia.org |
File usage
The following page uses this file:
Metadata
This file contains additional information, probably added from the digital camera or scanner used to create or digitize it.
If the file has been modified from its original state, some details may not fully reflect the modified file.
Horizontal resolution | 37.8 dpc |
---|---|
Vertical resolution | 37.8 dpc |