ML103620059: Difference between revisions

From kanterella
Jump to navigation Jump to search
(Created page by program invented by StriderTol)
(StriderTol Bot change)
 
(One intermediate revision by the same user not shown)
Line 2: Line 2:
| number = ML103620059
| number = ML103620059
| issue date = 12/28/2010
| issue date = 12/28/2010
| title = 2010/12/28-NREL: Dynamic Maps, Gis Data, and Analysis Tools - Solar Maps
| title = NREL: Dynamic Maps, Gis Data, and Analysis Tools - Solar Maps
| author name =  
| author name =  
| author affiliation = National Renewable Energy Lab
| author affiliation = National Renewable Energy Lab
Line 19: Line 19:


=Text=
=Text=
{{#Wiki_filter:NREL: Dynamic Maps, GIS Data, and Analysis Tools - Solar Maps http://www.nrel.gov/gis/solar.html[12/27/2010 4:33:13 PM]More Search OptionsSite Map MapSearchSearching for maps hasnever been easier. Annual (JPG 177 KB
{{#Wiki_filter:NREL: Dynamic Maps, GIS Data, and Analysis Tools - Solar Maps http://www.nrel.gov/gis/solar.html[12/27/2010 4:33:13 PM]
)January (JPG 106 KB
More Search Options Site Map MapSearch Searching for maps has never been easier.
)February (JPG 110 KB
Annual (JPG 177 KB)
)March (JPG 112 KB
January (JPG 106 KB)
)April (JPG 109 KB
February (JPG 110 KB)
)May (JPG 108 KB
March (JPG 112 KB)
)June (JPG 109 KB
April (JPG 109 KB)
)Annual (JPG 105 KB
May (JPG 108 KB)
)January (JPG 111 KB
June (JPG 109 KB)
)February (JPG 112 KB
Annual (JPG 105 KB)
)March (JPG 116 KB
January (JPG 111 KB)
)April (JPG 114 KB
February (JPG 112 KB)
)May (JPG 114 KB
March (JPG 116 KB)
)June (JPG 110 KB
April (JPG 114 KB)
)Annual (JPG 263 KB
May (JPG 114 KB)
)January (JPG 256 KB
June (JPG 110 KB)
)February (JPG 267 KB
Annual (JPG 263 KB)
)March (JPG 272 KB
January (JPG 256 KB)
)April (JPG 270 KB
February (JPG 267 KB)
)May (JPG 267 KB
March (JPG 272 KB)
)Printable VersionSolar MapsSolar maps provide monthly average daily total solar resource information on gridcells. The insolation values represent the resource available to a flat plate collector, such as a photovoltaic panel, oriented due south at an angle from horizontal to equal to the latitude of the collector location. This is typical practice for PV system installation, although other orientations are also used.Several map variations are accessible below. For information on how these maps weredeveloped, access the How the Maps Were Made page.Types of MapsU.S. Solar Resource MapsThese maps show national solar photovoltaics (PV) resource potential andconcentrating solar power (CSP) resource potential for the United States. They are available in JPEG format.
April (JPG 270 KB)
PhotovoltaicsLow Resolution (JPG 111 KB
May (JPG 267 KB)
)High Resolution (JPG 32.5 MB
Printable Version Solar Maps Solar maps provide monthly average daily total solar resource information on grid cells. The insolation values represent the resource available to a flat plate collector, such as a photovoltaic panel, oriented due south at an angle from horizontal to equal to the latitude of the collector location. This is typical practice for PV system installation, although other orientations are also used.
)Concentrating Solar PowerLow Resolution (JPG 113 KB
Several map variations are accessible below. For information on how these maps were developed, access the How the Maps Were Made page.
)High Resolution (JPG 8.7 MB
Types of Maps U.S. Solar Resource Maps These maps show national solar photovoltaics (PV) resource potential and concentrating solar power (CSP) resource potential for the United States. They are available in JPEG format.
)For more information on CSP resources, access the resource maps page on theConcentrating Solar Power site.PV Solar Radiation (10 km)-Static MapsThese maps provide monthly average and annual average daily total photovoltaic (PV) solar resource, averaged over surface cells of 0.1 degrees in both latitude and longitude, or about 10 km in size. This data was developed using the State University of New York/Albany satellite radiation model. See How the Maps Were Made formore information.July (JPG 108 KB
Photovoltaics Low Resolution (JPG 111 KB)
)August (JPG 109 KB
High Resolution (JPG 32.5 MB)
)September (JPG 107 KB
Concentrating Solar Power Low Resolution (JPG 113 KB)
)October (JPG 118 KB
High Resolution (JPG 8.7 MB)
)November (JPG 120 KB
For more information on CSP resources, access the resource maps page on the Concentrating Solar Power site.
)December (JPG 105 KB
PV Solar Radiation (10 km)Static Maps These maps provide monthly average and annual average daily total photovoltaic (PV) solar resource, averaged over surface cells of 0.1 degrees in both latitude and longitude, or about 10 km in size. This data was developed using the State University of New York/Albany satellite radiation model. See How the Maps Were Made for more information.
)Concentrating Solar Power Radiation (10 km)-Static MapsThese maps provide monthly average and annual average daily total concentrating solar power (CSP)resource, averaged over surface cells of 0.1 degrees in both latitude and longitude, or about 10 km in size.
July (JPG 108 KB)
This data was developed using the State University of New York/Albany satellite radiation model. See Howthe Maps Were Made for more information.July (JPG 112 KB
August (JPG 109 KB)
)August (JPG 127 KB
September (JPG 107 KB)
)September (JPG 112 KB
October (JPG 118 KB)
)October (JPG 109 KB
November (JPG 120 KB)
)November (JPG 107 KB
December (JPG 105 KB)
)December (JPG 121 KB
Concentrating Solar Power Radiation (10 km)Static Maps These maps provide monthly average and annual average daily total concentrating solar power (CSP) resource, averaged over surface cells of 0.1 degrees in both latitude and longitude, or about 10 km in size.
)PV Solar Radiation (Flat Plate, Facing South, Latitude Tilt)-Static MapsThese maps provide monthly average daily total solar resource information on grid cells of approximately 40km by 40 km in size. The insolation values represent the resource available to a flat plate collector, such as a photovoltaic panel, oriented due south at an angle from horizontal to equal to the latitude of the collector location. Learn more about Solar Resources for Flat Plate Collectors
This data was developed using the State University of New York/Albany satellite radiation model. See How the Maps Were Made for more information.
.July (JPG 267 KB
July (JPG 112 KB)
)August (JPG 269 KB
August (JPG 127 KB)
)September (JPG 273 KB
September (JPG 112 KB)
)October (JPG 268 KB
October (JPG 109 KB)
)November (JPG 262 KB
November (JPG 107 KB)
)December (JPG 260 KB
December (JPG 121 KB)
) NREL GIS HomeAbout NREL GIS Maps MapSearch Biomass Federal Energy Management Program Geothermal
PV Solar Radiation (Flat Plate, Facing South, Latitude Tilt)Static Maps These maps provide monthly average daily total solar resource information on grid cells of approximately 40 km by 40 km in size. The insolation values represent the resource available to a flat plate collector, such as a photovoltaic panel, oriented due south at an angle from horizontal to equal to the latitude of the collector location. Learn more about Solar Resources for Flat Plate Collectors.
July (JPG 267 KB)
August (JPG 269 KB)
September (JPG 273 KB)
October (JPG 268 KB)
November (JPG 262 KB)
December (JPG 260 KB)
NREL GIS Home About NREL GIS Maps MapSearch Biomass Federal Energy Management Program Geothermal Hydrogen Solar Wind Data & Analysis Tools


Hydrogen Solar WindData & Analysis Tools NREL: Dynamic Maps, GIS Data, and Analysis Tools - Solar Maps http://www.nrel.gov/gis/solar.html[12/27/2010 4:33:13 PM]June (JPG 261 KB
NREL: Dynamic Maps, GIS Data, and Analysis Tools - Solar Maps http://www.nrel.gov/gis/solar.html[12/27/2010 4:33:13 PM]
)Annual (JPG 287 KB
June (JPG 261 KB)
)January (JPG 268 KB
Annual (JPG 287 KB)
)February (JPG 278 KB
January (JPG 268 KB)
)March (JPG 286 KB
February (JPG 278 KB)
)April (JPG 296 KB
March (JPG 286 KB)
)May (JPG 294 KB
April (JPG 296 KB)
)June (JPG 290 KB
May (JPG 294 KB)
)Direct Normal Solar Radiation (Two-Axis Tracking Concentrator)-Static MapsThese maps provide monthly average daily total solar resource information on grid cells of approximately 40km by 40 km in size. The insolation values represent the resource available to concentrating systems that track the sun throughout the day.July (JPG 294 KB
June (JPG 290 KB)
)August (JPG 299 KB
Direct Normal Solar Radiation (Two-Axis Tracking Concentrator)Static Maps These maps provide monthly average daily total solar resource information on grid cells of approximately 40 km by 40 km in size. The insolation values represent the resource available to concentrating systems that track the sun throughout the day.
)September (JPG 296 KB
July (JPG 294 KB)
)October (JPG 291 KB
August (JPG 299 KB)
)November (JPG 272 KB
September (JPG 296 KB)
)December (JPG 270 KB
October (JPG 291 KB)
)If you have difficulty accessing these maps because of a disability, please contact the Webmaster.Printable VersionContent Last Updated: November 09, 2010Need Help?
November (JPG 272 KB)
lSecurity & Privacy lDisclaimer lNREL HomeThis Web site is powered by renewable energy
December (JPG 270 KB)
.}}
If you have difficulty accessing these maps because of a disability, please contact the Webmaster.
Printable Version Content Last Updated: November 09, 2010 Need Help? l Security & Privacy l Disclaimer l NREL Home This Web site is powered by renewable energy.}}

Latest revision as of 00:52, 14 January 2025

NREL: Dynamic Maps, Gis Data, and Analysis Tools - Solar Maps
ML103620059
Person / Time
Site: Davis Besse Cleveland Electric icon.png
Issue date: 12/28/2010
From:
National Renewable Energy Lab
To:
Atomic Safety and Licensing Board Panel
SECY RAS
Shared Package
ML103620058 List:
References
License Renewal 2, RAS 19321, 50-346-LR, RLS1
Download: ML103620059 (2)


Text

NREL: Dynamic Maps, GIS Data, and Analysis Tools - Solar Maps http://www.nrel.gov/gis/solar.html[12/27/2010 4:33:13 PM]

More Search Options Site Map MapSearch Searching for maps has never been easier.

Annual (JPG 177 KB)

January (JPG 106 KB)

February (JPG 110 KB)

March (JPG 112 KB)

April (JPG 109 KB)

May (JPG 108 KB)

June (JPG 109 KB)

Annual (JPG 105 KB)

January (JPG 111 KB)

February (JPG 112 KB)

March (JPG 116 KB)

April (JPG 114 KB)

May (JPG 114 KB)

June (JPG 110 KB)

Annual (JPG 263 KB)

January (JPG 256 KB)

February (JPG 267 KB)

March (JPG 272 KB)

April (JPG 270 KB)

May (JPG 267 KB)

Printable Version Solar Maps Solar maps provide monthly average daily total solar resource information on grid cells. The insolation values represent the resource available to a flat plate collector, such as a photovoltaic panel, oriented due south at an angle from horizontal to equal to the latitude of the collector location. This is typical practice for PV system installation, although other orientations are also used.

Several map variations are accessible below. For information on how these maps were developed, access the How the Maps Were Made page.

Types of Maps U.S. Solar Resource Maps These maps show national solar photovoltaics (PV) resource potential and concentrating solar power (CSP) resource potential for the United States. They are available in JPEG format.

Photovoltaics Low Resolution (JPG 111 KB)

High Resolution (JPG 32.5 MB)

Concentrating Solar Power Low Resolution (JPG 113 KB)

High Resolution (JPG 8.7 MB)

For more information on CSP resources, access the resource maps page on the Concentrating Solar Power site.

PV Solar Radiation (10 km)Static Maps These maps provide monthly average and annual average daily total photovoltaic (PV) solar resource, averaged over surface cells of 0.1 degrees in both latitude and longitude, or about 10 km in size. This data was developed using the State University of New York/Albany satellite radiation model. See How the Maps Were Made for more information.

July (JPG 108 KB)

August (JPG 109 KB)

September (JPG 107 KB)

October (JPG 118 KB)

November (JPG 120 KB)

December (JPG 105 KB)

Concentrating Solar Power Radiation (10 km)Static Maps These maps provide monthly average and annual average daily total concentrating solar power (CSP) resource, averaged over surface cells of 0.1 degrees in both latitude and longitude, or about 10 km in size.

This data was developed using the State University of New York/Albany satellite radiation model. See How the Maps Were Made for more information.

July (JPG 112 KB)

August (JPG 127 KB)

September (JPG 112 KB)

October (JPG 109 KB)

November (JPG 107 KB)

December (JPG 121 KB)

PV Solar Radiation (Flat Plate, Facing South, Latitude Tilt)Static Maps These maps provide monthly average daily total solar resource information on grid cells of approximately 40 km by 40 km in size. The insolation values represent the resource available to a flat plate collector, such as a photovoltaic panel, oriented due south at an angle from horizontal to equal to the latitude of the collector location. Learn more about Solar Resources for Flat Plate Collectors.

July (JPG 267 KB)

August (JPG 269 KB)

September (JPG 273 KB)

October (JPG 268 KB)

November (JPG 262 KB)

December (JPG 260 KB)

NREL GIS Home About NREL GIS Maps MapSearch Biomass Federal Energy Management Program Geothermal Hydrogen Solar Wind Data & Analysis Tools

NREL: Dynamic Maps, GIS Data, and Analysis Tools - Solar Maps http://www.nrel.gov/gis/solar.html[12/27/2010 4:33:13 PM]

June (JPG 261 KB)

Annual (JPG 287 KB)

January (JPG 268 KB)

February (JPG 278 KB)

March (JPG 286 KB)

April (JPG 296 KB)

May (JPG 294 KB)

June (JPG 290 KB)

Direct Normal Solar Radiation (Two-Axis Tracking Concentrator)Static Maps These maps provide monthly average daily total solar resource information on grid cells of approximately 40 km by 40 km in size. The insolation values represent the resource available to concentrating systems that track the sun throughout the day.

July (JPG 294 KB)

August (JPG 299 KB)

September (JPG 296 KB)

October (JPG 291 KB)

November (JPG 272 KB)

December (JPG 270 KB)

If you have difficulty accessing these maps because of a disability, please contact the Webmaster.

Printable Version Content Last Updated: November 09, 2010 Need Help? l Security & Privacy l Disclaimer l NREL Home This Web site is powered by renewable energy.