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Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for...

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Warm Sector 1 Radar Palette Home Click Dual Polarized Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation
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Page 1: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 1Radar Palette Home Click Dual Polarized

Ahead of WCB within the Warm Sector

Click for the Conceptual Model and Explanation

Page 2: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 2Radar Palette Home Click Dual Polarized

Ahead of WCB

• Sensing the PDCB in the lowest levels

Ex 3C

Page 3: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 3Radar Palette Home Click Dual Polarized

WCB

Cross-section along Central Branch of the Warm Conveyor Belt (WCB) totally

within the WCB

Content under development

SurfaceWarm Front

A

B

A

CCB

Increasing CCB Moistening

Virga Precipitation

Lower

Hydrometeor

Density

B

Page 4: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 4Radar Palette Home Click Dual Polarized

Page 5: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 5Radar Palette Home Click Dual Polarized

Page 6: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 6Radar Palette Home Click Dual Polarized

Page 7: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 7Radar Palette Home Click Dual Polarized

Page 8: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 8Radar Palette Home Click Dual Polarized

Page 9: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 9Radar Palette Home Click Dual Polarized

Page 10: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 10Radar Palette Home Click Dual Polarized

Page 11: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 11Radar Palette Home Click Dual Polarized

Under WCB

• This is totally within the warm sector• Only the WCB are sensed• Cloud and precipitation streets will be sensed

Click for the Conceptual Model and Explanation

Page 12: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 12Radar Palette Home Click Dual Polarized

Page 13: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 13Radar Palette Home Click Dual Polarized

WCB

CCB

Cross-section along Central Branch of the Warm Conveyor Belt (WCB) totally

within the WCB

Content under development

Mixing Zone

SurfaceWarm Front

Increasing CCB Moistening

WCB oriented for

maximum frontal lift

Virga Precipitation

Lower

Hydrometeor

Density

A

B

A B

PrecipitationAt Surface

Page 14: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 14Radar Palette Home Click Dual Polarized

Page 15: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 15Radar Palette Home Click Dual Polarized

Page 16: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 16Radar Palette Home Click Dual Polarized

Page 17: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 17Radar Palette Home Click Dual Polarized

Page 18: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 18Radar Palette Home Click Dual Polarized

Page 19: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 19Radar Palette Home Click Dual Polarized

Page 20: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 20Radar Palette Home Click Dual Polarized

Page 21: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 21Radar Palette Home Click Dual Polarized

Behind WCB in the Warm Sector

Click for the Conceptual Model and Explanation

Page 22: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 22Radar Palette Home Click Dual Polarized

Behind WCB

• Pre cold front

Page 23: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 23Radar Palette Home Click Dual Polarized

WCB

Cross-section along Central Branch of the Warm Conveyor Belt (WCB) totally

within the WCB

Content under development

SurfaceWarm Front

A

B

A B

CCB

Mixing ZoneIncreasing CCB

Moistening

Virga Precipitation

Lower

Hydrometeor

Density

B

PrecipitationAt Surface

Page 24: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 24Radar Palette Home Click Dual Polarized

Behind WCB

Page 25: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 25Radar Palette Home Click Dual Polarized

Behind WCB

Page 26: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 26Radar Palette Home Click Dual Polarized

Behind WCB

Page 27: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 27Radar Palette Home Click Dual Polarized

Behind WCB

Page 28: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 28Radar Palette Home Click Dual Polarized

Behind WCB

Page 29: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 29Radar Palette Home Click Dual Polarized

Behind WCB

Page 30: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 30Radar Palette Home Click Dual Polarized

Behind WCB

Page 31: Radar Palette Home Click Dual Polarized Warm Sector 1 Ahead of WCB within the Warm Sector Click for the Conceptual Model and Explanation.

Warm Sector 31Radar Palette Home Click Dual Polarized

This must be and remain as Slide 31.

• The links to the three sections of the airflows that comprise each of the conveyor belts are located at Slide 1,11 and 21.

• Slide 11 is always the central, col limited circulation.

• This leaves 10 PowerPoint slides for the development of the training material which should be more than adequate.


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