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<delPoint>800 NE Oregon St., Suite #965</delPoint>
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<collTitle>Open-File Report O-13-19, Summary of Tsunami Hazard Data for Oregon</collTitle>
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<rpIndName>Rachel Smith</rpIndName>
<rpOrgName>OR Dept. of Geology and Mineral Industries</rpOrgName>
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<delPoint>800 NE Oregon St., Suite #965</delPoint>
<city>Portland</city>
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<eMailAdd>rachel.smith@dogami.state.or.us</eMailAdd>
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<rpIndName>Taylore Wille, Kaleena Hughes, Sean Pickner</rpIndName>
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<delPoint>800 NE Oregon St. Suite #965</delPoint>
<city>Portland</city>
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<rpIndName>Robert C. Witter</rpIndName>
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<delPoint>9860 W. Saanich Road</delPoint>
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<rpIndName>Chris Goldfinger</rpIndName>
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<exDesc>This feature class identifies the tsunami inundation area for the AK64 scenario and covers the entire Oregon coast. The project area computational grids and resulting inundation scenarios were compiled and processed from 2009-2013.</exDesc>
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<tmEnd>2013-07-31T00:00:00</tmEnd>
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<idPurp>The intent of this digital data release is to provide seamless, statewide tsunami inundation scenarios in the form of ArcGIS shapefiles for seven scenarios selected for depiction on published Oregon Department of Geology and Mineral Industries (DOGAMI) tsunami inundation maps (TIM’s). These scenarios include five from local Cascadia subduction zone (CSZ) earthquakes (SM1, M1, L1, XL1, and XXL1), and two maximum-considered distant tsunamis from subduction zone earthquakes in the Gulf of Alaska: a historical maximum that occurred in 1964 (AK64) and a hypothetical maximum (AKMax) with higher uplift and more efficient focusing of tsunami energy at the Oregon coast than in 1964. Also included in this publication are supplemental files that support the tsunami model data publications, tsunami evacuation brochures, education and outreach initiatives, and other tsunami related publications (ex. TIM's).</idPurp>
<idAbs>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P&gt;&lt;SPAN&gt;This shapefile represents the AK64 tsunami inundation scenario for the Oregon coast. See the accompanying text report for more information.&lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</idAbs>
<idCredit>George R. Priest (1), Robert C. Witter (2), Y. Joseph Zhang (3), Kelin Wang (4), Chris Goldfinger (5), Laura L. Stimely (1), John English (6), Sean G. Pickner (7), Kaleena L.B. Hughes (7), Taylore E. Wille (7), and Rachel L. Smith (7)
1) Oregon Department of Geology and Mineral Industries, Coastal Field Office, 313 SW 2nd Street, Suite D, Newport, Oregon 97365
2) U.S. Geological Survey, Alaska Science Center, 4210 University Dr., Anchorage, Alaska, 99508
3) Virginia Institute of Marine Science, Center for Coastal Resources Management, 1375 Greate Road, P.O. Box 1346, Gloucester Point, VA 23062
4) Geological Survey of Canada, Pacific Geoscience Centre, Room 4714m, 9860 West Saanich Road, Sidney, British Columbia, Canada V8L 4B2
5) College of Earth, Ocean and Atmospheric Sciences, Oregon State University, Ocean Admin. Bldg. 104, Corvallis, Oregon 97331
6) City of Hillsboro, Information Services, Civic Center 150 E. Main Street, Hillsboro, Oregon, 97123
7) Oregon Department of Geology and Mineral Industries, 800 NE Oregon Street, #28, Suite 965, Portland, OR 97232</idCredit>
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<keyword>tsunami inundation</keyword>
<keyword>evacuation</keyword>
<keyword>emergency preparedness</keyword>
<keyword>Oregon coast</keyword>
<keyword>distant tsunami scenario</keyword>
</searchKeys>
<themeKeys>
<keyword>tsunami inundation, evacuation, emergency preparedness, distant tsunami scenario</keyword>
</themeKeys>
<placeKeys>
<keyword>Oregon, Oregon Coast, Curry County, Coos County, Douglas County, Lane County, Lincoln County, Tillamook County, Clatsop County</keyword>
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<keyword>2013</keyword>
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<rpIndName>Rachel Smith</rpIndName>
<rpOrgName>OR Dept. of Geology and Mineral Industries</rpOrgName>
<rpPosName>Project Operations Manager</rpPosName>
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<cntAddress addressType="both">
<delPoint>800 NE Oregon St., Suite #965</delPoint>
<city>Portland</city>
<adminArea>OR</adminArea>
<postCode>97232</postCode>
<eMailAdd>rachel.smith@dogami.state.or.us</eMailAdd>
<country>US</country>
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<rpIndName>Rachel Smith</rpIndName>
<rpOrgName>OR Dept. of Geology and Mineral Industries</rpOrgName>
<rpPosName>Project Operations Manager</rpPosName>
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<cntAddress addressType="both">
<delPoint>800 NE Oregon St., Suite #965</delPoint>
<city>Portland</city>
<adminArea>OR</adminArea>
<postCode>97232</postCode>
<eMailAdd>rachel.smith@dogami.state.or.us</eMailAdd>
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<useLimit>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P STYLE="font-style:italic;margin:0 0 0 0;"&gt;&lt;SPAN&gt;This product is for informational purposes and may not have been prepared for or be suitable for legal, engineering, or surveying purposes. Users of this information should review or consult the primary data and information sources to ascertain the usability of the information. This publication cannot substitute for site-specific investigations by qualified practitioners. Site-specific data may give results that differ from the results shown in the publication. See the accompanying text for more details on the limitations of the methods and data used to prepare this publication.&lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN /&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</useLimit>
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<eastBL Sync="TRUE">-123.483069</eastBL>
<northBL Sync="TRUE">46.273973</northBL>
<southBL Sync="TRUE">41.984236</southBL>
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<exDesc>This feature class identifies the tsunami inundation area for the AK64 scenario and covers the entire Oregon coast. </exDesc>
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<rpIndName>George Priest</rpIndName>
<rpOrgName>OR Dept. of Geology and Mineral Industries</rpOrgName>
<rpPosName>Geologist</rpPosName>
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<delPoint>313 SW 2nd St., Suite D</delPoint>
<city>Newport</city>
<adminArea>OR</adminArea>
<postCode>97365</postCode>
<eMailAdd>george.priest@dogami.state.or.us</eMailAdd>
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<displayName>George Priest</displayName>
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<rpIndName>Rachel Smith</rpIndName>
<rpOrgName>OR Dept. of Geology and Mineral Industries</rpOrgName>
<rpPosName>Project Operations Manager</rpPosName>
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<cntAddress addressType="both">
<delPoint>800 NE Oregon St., Suite #965</delPoint>
<city>Portland</city>
<adminArea>OR</adminArea>
<postCode>97232</postCode>
<eMailAdd>rachel.smith@dogami.state.or.us</eMailAdd>
<country>US</country>
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<displayName>Rachel Smith</displayName>
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<ScopeCd value="005"/>
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<scpLvlDesc>
<featSet>all</featSet>
<datasetSet>tsunami inundation scenario shapefile</datasetSet>
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<dataLineage>
<statement>All tsunami scenarios were provided as ASCII text files to GIS analysts who then used a GIS model to import the data into Esri file geodatabases. The model created several output files for each scenario including a master point feature class, a terrain feature class, and a contour line connecting the most landward wet nodes (wet contour) and the most landward dry nodes (dry contour). Interpretation and discretion are required to edit the lines for small island and pond features. These procedures are detailed in Appendix A below. Each scenario dry contour line was edited to correct vertices that lay landward of the next larger scenario. Once all contour lines were thoroughly QA'd and edited, they were used to create the wet/dry zone shown on the TIM's. This transition zone between wet and dry nodes equates to the amount of uncertainty in the model when determining the maximum inundation for each scenario. The inundation polygons are created conservatively and extend to the landward dry nodes (dry contour). Additional vector lines are drawn 180 degrees into the ocean from the most northern and southern dry contour vertex and then connected. These lines are then converted to a polygon to create the final inundation zone. </statement>
<prcStep>
<stepDesc>All of the project area computational grids contain areas of overlap. Therefore the files generated from these data have overlapping areas. The grids were seamed together (spliced) to form a cohesive polygon. The splice locality optimized precision of the overlapping simulations, using results from the most refined computational grid. The shapefile delineating these splice lines is included in this publication (Tsunami_Data_GridSeams). See the accompanying report for more details on the methodologies.</stepDesc>
<stepDateTm>2013-07-01T00:00:00</stepDateTm>
<stepProc>
<editorSource>external</editorSource>
<editorDigest>d7ab802b4901a877735ce32c16ed6de9</editorDigest>
<rpIndName>Taylore Wille, Kaleena Hughes, Sean Pickner</rpIndName>
<rpOrgName>OR Dept. of Geology and Mineral Industries</rpOrgName>
<rpPosName>GIS Technician</rpPosName>
<rpCntInfo>
<cntAddress addressType="both">
<delPoint>800 NE Oregon St. Suite #965</delPoint>
<city>Portland</city>
<adminArea>OR</adminArea>
<postCode>97232</postCode>
<country>US</country>
</cntAddress>
<cntPhone>
<voiceNum tddtty="">971-673-1555</voiceNum>
</cntPhone>
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<editorSave>True</editorSave>
<displayName>Taylore Wille, Kaleena Hughes, Sean Pickner</displayName>
<role>
<RoleCd value="009"/>
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<measDesc>This feature class provides information for the entire Oregon coast.</measDesc>
</report>
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<eainfo>
<detailed Name="DC_Tsunami_Inundation_Scenario">
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<enttypt Sync="TRUE">Feature Class</enttypt>
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<enttypd>AK64 tsunami inundation polygon for the Oregon coast</enttypd>
<enttypds>DOGAMI</enttypds>
</enttyp>
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<attrdefs Sync="TRUE">Esri</attrdefs>
<attrdomv>
<udom Sync="TRUE">Sequential unique whole numbers that are automatically generated.</udom>
</attrdomv>
</attr>
<attr>
<attrlabl>Shape</attrlabl>
<attrdef>Feature geometry.</attrdef>
<attrdefs>ESRI</attrdefs>
<attrdomv>
<udom>Coordinates defining the features.</udom>
</attrdomv>
<attalias Sync="TRUE">Shape</attalias>
<attrtype Sync="TRUE">Geometry</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl Sync="TRUE">Shape_Leng</attrlabl>
<attalias Sync="TRUE">Shape_Leng</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">38</atprecis>
<attscale Sync="TRUE">8</attscale>
</attr>
<attr>
<attrlabl Sync="TRUE">Source</attrlabl>
<attalias Sync="TRUE">Source</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">255</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl Sync="TRUE">Shape.STArea()</attrlabl>
<attalias Sync="TRUE">Shape.STArea()</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">0</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl Sync="TRUE">Shape.STLength()</attrlabl>
<attalias Sync="TRUE">Shape.STLength()</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">0</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
</detailed>
</eainfo>
<mdHrLvName Sync="TRUE">dataset</mdHrLvName>
<refSysInfo>
<RefSystem>
<refSysID>
<identCode Sync="TRUE" code="0"/>
</refSysID>
</RefSystem>
</refSysInfo>
<spatRepInfo>
<VectSpatRep>
<geometObjs Name="DC_Tsunami_Inundation_Scenario">
<geoObjTyp>
<GeoObjTypCd Sync="TRUE" value="002"/>
</geoObjTyp>
<geoObjCnt Sync="TRUE">0</geoObjCnt>
</geometObjs>
<topLvl>
<TopoLevCd Sync="TRUE" value="001"/>
</topLvl>
</VectSpatRep>
</spatRepInfo>
<spdoinfo>
<ptvctinf>
<esriterm Name="DC_Tsunami_Inundation_Scenario">
<efeatyp Sync="TRUE">Simple</efeatyp>
<efeageom Sync="TRUE" code="4"/>
<esritopo Sync="TRUE">FALSE</esritopo>
<efeacnt Sync="TRUE">0</efeacnt>
<spindex Sync="TRUE">TRUE</spindex>
<linrefer Sync="TRUE">FALSE</linrefer>
</esriterm>
</ptvctinf>
</spdoinfo>
<mdDateSt Sync="TRUE">20210331</mdDateSt>
</metadata>
