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Homework 2.1 Solid body rotation (XY): low pressure

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Presentation on theme: "Homework 2.1 Solid body rotation (XY): low pressure"— Presentation transcript:

1 Homework 2.1 Solid body rotation (XY): low pressure Divergent flow (XY): high pressure Shear flow (XY): *no pressure perturbation

2 2D Supercells?? Homework 2.2 2D Vorticity Eq. No tilting, stretching!!
2D Diagnostic Pressure: No rotationally-induced mid-level mesolow

3 A Simple “Model” of a Mesocyclone:
Homework 2.3 A Simple “Model” of a Mesocyclone: Cyclostrophic balance: Angular momentum: Rankine Combined Vortex: Solid-body rotation in core: Potential vortex outside: For full vortex: *For core region:

4 For Vortex at 3 km AGL:* Vmax=10 ms-1 .5 hPa 2 K 2 hPa Vmax=20 ms-1
Homework 2.3 For Vortex at 3 km AGL:* Vmax=10 ms-1 .5 hPa .5 K 2 K 2 hPa Vmax=20 ms-1 8 hPa 8 K Vmax=40 ms-1 *simply assuming pressure change from inner-core region

5 Homework 2.4 At R: V=5 ms-1 V=50 ms-1 V=5 ms-1

6 Homework 2.4 Beyond R: V=50 ms-1 V=25 ms-1 V=12.5 ms-1

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9 Vertical Vorticity: Horizontal Vorticity: Circulation: Eq. Potential Vorticity:

10 W, Qr Z = 4 km Z = .25 km

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13 Vortex Tube Circulation:

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18 Think on the box!!

19 Horizontal vorticity that gets tilted vertically into the low-level mesocyclone is storm generated…NOT necessarily environmental!!

20 Klemp and Rotunno, JAS, 1983 1 way nest, adjustment from 1km to 250m, 6 min simulation….

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26 Adlerman and Droegemeier, MWR, 2005

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