Puget-Sound-Verwerfungen (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Puget-Sound-Verwerfungen" in German language version.

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annalsofgeophysics.eu

  • C. Finn: Aeromagnetic map compilation: procedures for merging and an example from Washington. In: Annali di Geofisica. Band 42, Nr. 2, April 1999, S. 327–331 (Online).

boisestate.edu

earth.boisestate.edu

  • A. P. Lamb, L. M. Liberty, R. J. Blakely, T. L. Pratt, B. L. Sherrod, K. Van Wijik: Western limits of the Seattle fault zone and its interaction with the Olympic Peninsula, Washington. In: Geosphere. Band 8, Nr. 4, 26. Juni 2012, S. 915–930, doi:10.1130/GES00780.1 (Online [PDF]).

cocc.edu

web.cocc.edu

  • A. R. Nelson, S. Y. Johnson, H. M. Kelsey, R. E. Wells, B. L. Sherrod, S. K. Pezzopane, L. Bradley, R. D. Koehler, R. C. Bucknam: Late Holocene earthquakes on the Toe Jam Hill fault, Seattle fault zone, Bainbridge Island, Washington. In: Geological Society of America Bulletin. November 2003, S. 1368–1403, archiviert vom Original (nicht mehr online verfügbar) am 14. Juni 2010; abgerufen am 19. November 2022.  Info: Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.@1@2Vorlage:Webachiv/IABot/web.cocc.edu

columbia.edu

ldeo.columbia.edu

confex.com

gsa.confex.com

  • A. P. Lamb, L. M. Liberty, R. J. Blakely, K. Van Wijk: The Tahuya Lineament: Southwestern Extension of the Seattle Fault? [Paper No. 182-3]. In: Geological Society of America 2009 Annual meeting, Abstracts with Programs. Band 41, Nr. 7, 2009, S. 479 (Online).
  • S. Magsino, E. Sanger, T. J. Walsh, S. P. Palmer, R. J. Blakely: The Olympia structure; ramp or discontinuity? New gravity data provide information [abstract]. In: Geological Society of America 2003 Annual meeting, Abstracts with Programs. Band 35, Nr. 6, November 2003, S. 479 (Online).
  • M. P. Molinari, R. L. Burk: The Everett fault: a newly discovered late Quaternary fault in north-central Puget Sound, Washington [abstract]. In: Geological Society of America 2003 Annual Meeting, Abstracts with programs. Band 35, Nr. 6, November 2003, S. 479 (Online).

cornell.edu

geo.cornell.edu

  • N. J. Finnegan, M. E. Pritchard, R. B. Lohman, P. R. Lundgren: Constraints on surface deformation in the Seattle, WA, urban corrider from satellite radar interferometry time-series analysis. In: Geophysical Journal International. Band 174, 2008, S. 29–41, doi:10.1111/j.1365-246X.2008.03822.x (Online [PDF]).

doi.org

  • R. C. Bucknam, E. Hemphill-Haley, E. B. Leopold: Abrupt Uplift Within the Past 1700 Years at Southern Puget Sound, Washington. In: Science. Band 258, 4. Dezember 1992, S. 1611–1614, doi:10.1126/science.258.5088.1611, PMID 17742525 (Online [PDF]).
  • R. E. Karlin, S. E. B. Abella: A history of Pacific Northwest earthquakes recorded in Holocene sediments from Lake Washington. In: Journal of Geophysical Research. Band 110, B3, 10. März 1996, S. 6137–6150, doi:10.1029/95JB01626.
  • Z. F. Daneš, M. M. Bonno, E. Brau, W. D. Gilham, T. T. Hoffman, D. Johansen, M. H. Jones, B. Malfait, J. Masten, G. O. Teague: Geophysical Investigation of the Southern Puget Sound Area, Washington. In: Journal of Geophysical Research. Band 70, Nr. 22, 15. November 1965, S. 5573–5580, doi:10.1029/JZ070i022p05573 (Online [PDF]).
  • J. Adams: Paleoseismology: A Search for Ancient Earthquakes in Puget Sound. In: Science. Band 258, 4. Dezember 1992, S. 1592–1593, doi:10.1126/science.258.5088.1592 (Online [PDF]).
  • S. Y. Johnson, A. R. Nelson, S. F. Personius, R. E. Wells, H. M. Kelsey, B. L. Sherrod, K. Okumura, R. Koehler, R. C. Witter, L. Bradley, D. J. Harding: Evidence for Late Holocene Earthquakes on the Utsalady Point Fault, Northern Puget Lowland, Washington. In: Bulletin of the Seismological Society of America. Band 94, Nr. 6, Dezember 2004, S. 2299–2316, doi:10.1785/0120040050 (Online [PDF]).
  • T. M. Brocher, T. Parsons, R. J. Blakely, N. I. Christensen, M. A. Fisher, R. E. Wells: Upper crustal structure in Puget Lowland, Washington: Results from the 1998 Seismic Hazards Investigation in Puget Sound. In: Journal of Geophysical Research. Band 106, B7. SHIPS Working Group, 10. Juli 2001, S. 13.541–13.564, doi:10.1029/2001JB000154.
  • R. J. Blakely, R. E. Wells, C. S. Weaver, S. Y. Johnson: Location, structure, and seismicity of the Seattle fault zone, Washington: Evidence from aeromagnetic anomalies, geologic mapping, and seismic-reflection data. In: Geological Society of America Bulletin. Band 114, Nr. 2, Februar 2002, S. 169–177, doi:10.1130/0016-7606(2002)114<0169:LSASOT>2.0.CO;2 (Online [PDF]).
  • A. J. Calvert, M. A. Fisher: Imaging the Seattle Fault Zone with high-resolution seismic tomography. In: Geophysical Research Letters. Band 28, Nr. 12. SHIPS working group, 15. Juni 2001, S. 2337–2340, doi:10.1029/2000GL012778.
  • T. Parsons, R. E. Wells, M. A. Fisher, E. Flueh, U. S. ten Brink: Three-dimensional velocity structure of Siletzia and other accreted terranes in the Cascadia forearc of Washington. In: Journal of Geophysical Research. Band 104, B8, 10. August 1999, S. 18,015–18,039, doi:10.1029/1999jb900106 (Online [PDF]). Online (Memento des Originals vom 29. Oktober 2013 im Internet Archive)  Info: Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.@1@2Vorlage:Webachiv/IABot/profile.usgs.gov
  • M. T. Brandon, A. R. Calderwood: High-pressure metamporphism and uplift of the Olympic subduction complex. In: Geology. Band 18, Dezember 1990, S. 1252–1255, doi:10.1130/0091-7613(1990)018<1252:HPMAUO>2.3.CO;2 (Online).
  • R. W. Tabor: Late Mesozoic and possible early Tertiary accretion in western Washington State: the Helena-Haystack mélange and the Darrington-Devils Mountain Fault Zone. In: Geological Society of America Bulletin. Band 106, Nr. 2, 1994, S. 217–232, doi:10.1130/0016-7606(1994)106<0217:lmapet>2.3.co;2.
  • R. J. Blakely, B. L. Sherrod, C. S. Weaver, R. E. Wells, A. C. Rohay, E. A. Barnett, N. E. Knepprath: Connecting the Yakima fold and thrust belt to active faults in the Puget Lowland, Washington. In: Journal of Geophysical Research. Band 116, B07105, 7. Juli 2011, doi:10.1029/2010JB008091.
  • R. S. Babcock, R. F. Burmester, D. C. Engebretsen, A. Warnock: A Rifted Margin Origin for the Crescent Basalts and Related Rocks in the Northern Coast Range Volcanic Province, Washington and British Columbia. In: Journal of Geophysical Research. Band 97, B5, 10. Mai 1992, S. 6.799–6.821, doi:10.1029/91JB02926.
  • S. Y. Johnson, C. J. Potter, J. M. Armentrout, J. J. Miller, C. A. Finn, C. S. Weaver: The southern Whidbey Island fault – An active structure in the Puget Lowland, Washington. In: Geological Society of America Bulletin. Band 108, Nr. 3, März 1996, S. 334–354, doi:10.1130/0016-7606(1996)108<0334:TSWIFA>2.3.CO;2 (Online [PDF]).
  • B. L. Sherrod, R. J. Blakely, C. S. Weaver, H. M. Kelsey, E. Barnett, L. Liberty, K. L. Meagher, K. M. Pape: Finding concealed active faults: Extending the southern Whidbey Island fault across the Puget Lowland, Washington. In: Journal of Geophysical Research. Band 113, B5, Mai 2008, S. B05313, doi:10.1029/2007JB005060 (Online [PDF]).
  • C. Finn: Geophysical constraints on Washington convergent margin structure. In: Journal of Geophysical Research. Band 95, B12, 10. November 1990, S. 19.553–19.546, doi:10.1029/JB095iB12p19533.
  • C. G. Mace, K. M. Keranen: Oblique fault systems crossing the Seattle Basin: Geophysical evidence for additional shallow fault systems in the central Puget Lowland. In: Journal of Geophysical Research. Band 117, B03105, März 2012, doi:10.1029/2011JB008722.
  • S. Y. Johnson, C. J. Potter, J. M. Armentrout: Origin and evolution of the Seattle Fault and Seattle Basin, Washington. In: Geology. Band 22, Nr. 1, Januar 1994, S. 71–74, doi:10.1130/0091-7613(1994)022<0071:OAEOTS>2.3.CO;2 (Online).
  • C. M. Snelson, T. M. Brocher, K. C. Miller, T. L. Pratt, A. M. Tréhu: Seismic Amplification within the Seattle Basin, Washington State: Insights from SHIPS Seismic Tomography Experiments. In: Bulletin of the Seismological Society of America. Band 97, Nr. 5, Oktober 2007, S. 1432–1448, doi:10.1785/0120050204 (Online [PDF]).
  • T. M. Van Wagoner, R. S. Crosson, K. C. Creager, G. Medema, L. Preston: Crustal structure and relocated earthquakes in the Puget Lowland, Washington, from high-resolution seismic tomography. In: Journal of Geophysical Research. Band 107, B12, 10. Dezember 2002, doi:10.1029/2001JB000710.
  • K. Ramachandran: Constraining fault interpretation through tomographic velocity gradients: application to northern Cascadia. In: Solid Earth. Band 3, 2012, S. 53–61, doi:10.5194/se-3-53-2012 (Online [PDF]).
  • T. M. Brocher, R. J. Blakely, R. E. Wells: Interpretation of the Seattle Uplift, Washington, as a Passive-Roof Duplex. In: Bulletin of the Seismological Society of America. Band 94, Nr. 4, August 2004, S. 1379–1401, doi:10.1785/012003190 (Online [PDF]).
  • U. S. ten Brink, J. Song, R. C. Bucknam: Rupture models for the A.D. 900–930 Seattle fault earthquake from uplifted shorelines. In: Bulletin of the Geological Society of America. Band 34, Nr. 7, Juli 2006, S. 585–588, doi:10.1130/G22173.1 (Online [PDF]).
  • S. Y. Johnson, S. V. Dadisman, J. R. Childs, W. D. Stanley: Active tectonics of the Seattle fault and central Puget Sound, Washington – Implications for earthquake hazards. In: Geological Society of America Bulletin. Band 111, Nr. 7, Juli 1999, S. 1042–1053, doi:10.1130/0016-7606(1999)111<1042:ATOTSF>2.3.CO;2 (Online [abgerufen am 10. September 2017]).
  • A. P. Lamb, L. M. Liberty, R. J. Blakely, T. L. Pratt, B. L. Sherrod, K. Van Wijik: Western limits of the Seattle fault zone and its interaction with the Olympic Peninsula, Washington. In: Geosphere. Band 8, Nr. 4, 26. Juni 2012, S. 915–930, doi:10.1130/GES00780.1 (Online [PDF]).
  • R. J. Blakely, B. L. Sherrod, J. F. Hughes, M. L. Anderson, R. E. Wells, C. S. Weaver: The Saddle Mountain Fault Deformation Zone, Olympic Peninsula, Washington: Western Boundary of the Seattle Uplift. In: Geosphere. Band 5, Nr. 2, April 2009, S. 105–125, doi:10.1130/GES00196.1 (Online [PDF]).
  • B. L. Sherrod: Evidence for earthquake-induced subsidence ~1100 yr ago in coastal marshes of southern Puget Sound, Washington. In: Geological Society of America Bulletin. Band 113, Nr. 10, 2001, S. 1299–1311, doi:10.1130/0016-7606(2001)113<1299:EFEISA>2.0.CO;2.
  • C. R. Clement, T. R. Pratt, M. A. Holmes, B. L. Sherrod: High-Resolution Seismic Reflection Imaging of Growth Folding and Shallow Faults beneath the Southern Puget Lowland, Washington State. In: Bulletin of the Seismological Society of America. Band 100, Nr. 4, August 2010, S. 1710–1723, doi:10.1785/0120080306.
  • C. S. Weaver, S. W. Smith: Regional Tectonic and Earthquake Hazard Implications of a Crustal Fault Zone in Southwestern Washington. In: Journal of Geophysical Research. Band 92, B12, 10. Dezember 1983, S. 10.371–10.383, doi:10.1029/JB088iB12p10371.
  • R. J. Blakely, R. C. Jachens: Volcanism, Isostatic Residual Gravity, and Regional Tectonic Setting of the Cascade Volcanic Province. In: Journal of Geophysical Research. Band 95, B12, 10. November 1990, S. 19.439–19.451, doi:10.1029/JB095iB12p19439.
  • C. S. Weaver, W. C. Grant, J. E. Shemeta: Crustal Extension at Mount St. Helens, Washington. In: Journal of Geophysical Research. Band 92, B10, 10. September 1987, S. 10.170–10.178, doi:10.1029/JB092iB10p10170.
  • W. D. Stanley, C. Finn, J. L. Plesha: Tectonics and Conductivity Structures in the Southern Washington Cascades. In: Journal of Geophysical Research. Band 92, B10, 10. September 1987, S. 10.179–10.193, doi:10.1029/JB092iB10p10179.
  • G. D. Egbert, J. R. Booker: Imaging Crustal Structure in Southwestern Washington With Small Magnetometer Arrays. In: Journal of Geophysical Research. Band 98, B9, 10. September 1993, S. 15.967–15.985, doi:10.1029/93JB00778 (Online [PDF]).
  • R. C. Evarts, R. P. Ashley, J. G. Smith: Geology of the Mount St. Helens Area: Record of Discontinuous Volcanic and Plutonic Activity in the Cascade Arc of Southern Washington. In: Journal of Geophysical Research. Band 82, B10, 10. September 1987, S. 10.155–10.169, doi:10.1029/JB092iB10p10155.
  • J. M. Hughes, R. E. Stoiber, M. J. Carr: Segmentation of the Cascade volcanic chain. In: Geology. Band 8, Nr. 1, Januar 1980, S. 15–17, doi:10.1130/0091-7613(1980)8<15:SOTCVC>2.0.CO;2.
  • M. Guffanti, C. S. Weaver: Distribution of late Cenozoic volcanic vents in the Cascade Range: Volcanic arc segmentation and regional tectonic considerations. In: Journal of Geophysical Research. Band 93, B6, 10. Juni 1988, S. 6513–6529, doi:10.1029/JB093iB06p06513.
  • S. Y. Johnson: Stratigraphy, age, and paleogeography of the Eocene Chuckanut Formation, northwest Washington. In: Canadian Journal of Earth Sciences. Band 21, 1984, S. 92–106, doi:10.1139/e84-010.
  • N. J. Finnegan, M. E. Pritchard, R. B. Lohman, P. R. Lundgren: Constraints on surface deformation in the Seattle, WA, urban corrider from satellite radar interferometry time-series analysis. In: Geophysical Journal International. Band 174, 2008, S. 29–41, doi:10.1111/j.1365-246X.2008.03822.x (Online [PDF]).

gac.ca

  • R. J. Blakely, B. L. Sherrod, C. S. Weaver, R. E. Wells: Connecting Crustal Faults and Tectonics from Puget Sound across the Cascade Range to the Yakima Fold and Thrust Belt, Washington: Evidence from New High-Resolution Aeromagnetic Data [Abstract GP232-02]. In: Eos, Transactions, American Geophysical Union. Band 90, Nr. 20, 2009 (Online).

geoscienceworld.org

geology.geoscienceworld.org

geosyntec.com

kingcounty.gov

mahabghodss.net

  • W. D. Stanley, S. Y. Johnson, A. I. Qamar, C. S. Weaver, J. M. Williams: Tectonics and Seismicity of the Southern Washington Cascade Range. In: Bulletin of the Seismological Society of America. Februar 1996, S. 1–18, archiviert vom Original (nicht mehr online verfügbar) am 20. August 2011; abgerufen am 19. November 2022.  Info: Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.@1@2Vorlage:Webachiv/IABot/mahabghodss.net
  • C. M. Snelson, T. M. Brocher, K. C. Miller, T. L. Pratt, A. M. Tréhu: Seismic Amplification within the Seattle Basin, Washington State: Insights from SHIPS Seismic Tomography Experiments. In: Bulletin of the Seismological Society of America. Band 97, Nr. 5, Oktober 2007, S. 1432–1448, doi:10.1785/0120050204 (Online [PDF]).

nih.gov

ncbi.nlm.nih.gov

oregongeology.org

  • I. Wong, W. Silva, J. Bott, D. Wright, P. Thomas, N. Gregor, S. Li, M. Mabey, A. Sojourner, Y. Wang: Earthquake scenario and probabilistic ground shaking maps for the Portland, Oregon, metropolitan area. In: Oregon Department of Geology and Mineral Industries. Interpretive Map Series IMS-16, 2000 (Online [PDF]).

oregonstate.edu

scholarsarchive.library.oregonstate.edu

ir-dev.library.oregonstate.edu

osti.gov

  • W. D. Stanley, S. Y. Johnson: Analysis of Deep Seismic Reflection and Other Data From the Southern Washington Cascades. In: Fuels Technology Contractors Review Meeting, Morgantown, West Virginia, November 16–18, 1993. U.S. Dept. of Energy, 1993 (Online [PDF]).

pdx.edu

nwdata.geol.pdx.edu

prithivi.net

kumar.prithivi.net

redirecter.toolforge.org

sciencemag.org

solid-earth.net

  • K. Ramachandran: Constraining fault interpretation through tomographic velocity gradients: application to northern Cascadia. In: Solid Earth. Band 3, 2012, S. 53–61, doi:10.5194/se-3-53-2012 (Online [PDF]).

umt.edu

  • R. J. Blakely, R. E. Wells, C. S. Weaver, S. Y. Johnson: Location, structure, and seismicity of the Seattle fault zone, Washington: Evidence from aeromagnetic anomalies, geologic mapping, and seismic-reflection data. In: Geological Society of America Bulletin. Band 114, Nr. 2, Februar 2002, S. 169–177, doi:10.1130/0016-7606(2002)114<0169:LSASOT>2.0.CO;2 (Online [PDF]).

usgs.gov

earthquake.usgs.gov

  • B. L. Sherrod, T. M. Brocher, C. S. Weaver, R. C. Bucknam, R. J. Blakely, H. M. Kelsey, A. R. Nelson, R. Haugerud: Holocene fault scarps near Tacoma, Washington, USA. In: Geology. Januar 2004, S. 9–12, archiviert vom Original (nicht mehr online verfügbar) am 7. Juni 2011; abgerufen am 19. November 2022.  Info: Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.@1@2Vorlage:Webachiv/IABot/earthquake.usgs.gov
  • S. Y. Johnson, A. R. Nelson, S. F. Personius, R. E. Wells, H. M. Kelsey, B. L. Sherrod, K. Okumura, R. Koehler, R. C. Witter, L. Bradley, D. J. Harding: Evidence for Late Holocene Earthquakes on the Utsalady Point Fault, Northern Puget Lowland, Washington. In: Bulletin of the Seismological Society of America. Band 94, Nr. 6, Dezember 2004, S. 2299–2316, doi:10.1785/0120040050 (Online [PDF]).
  • S. Y. Johnson, R. J. Blakely, W. J. Stephenson, S. V. Dadisman, M. A. Fisher: Active shortening of the Cascadia forearc and implications for seismic hazards of the Puget Lowland. In: Tectonics. 2004, S. 1–27, archiviert vom Original (nicht mehr online verfügbar) am 7. Juni 2011; abgerufen am 19. November 2022.  Info: Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.@1@2Vorlage:Webachiv/IABot/earthquake.usgs.gov
  • Utsalady Point fault. USGS, abgerufen am 15. Oktober 2018 (englisch).
  • R. J. Blakely, B. L. Sherrod: Findings on the southern Whidbey Island fault zone from aeromagnetic anomalies, lidar surveys, and trenching. In: U.S. Geological Survey. März 2006 (Online [PDF]): „Presentation at USGS NSHMP (National Seismic Hazard Maps) Pacific Northwest Workshop, 28.–29.03.2006“
  • S. Y. Johnson, R. J. Blakely, T. M. Brocher, B. L. Sherrod, D. J. Lidke, H. M. Kelsey: Quaternary fault and fold database of the United States: Fault number 572, Southern Whidbey Island Fault. U.S. Geological Survey, 2004; (englisch).
  • L. M. Liberty, K. M. Pape: Seismic Characterization of the Seattle and Southern Whidbey Island Fault Zones in the Snoqualmie River Valley, Washington. In: U.S. Geological Service. NEHRP, 2008 (Online [PDF]): „Project Award Number 06HQGR0111“
  • H. M. Kelsey, B. L. Sherrod: Late Holocene displacement on the Southern Whidbey Island fault zone, northern Puget lowland. In: U.S. Geological Survey. NEHRP, 2001 (Online [PDF]): „Program Award 00HQGR0067“
  • QFFDB Fault #565
  • L. M. Liberty: The western extension of the Seattle fault: new insights from seismic reflection data. In: U.S. Geological Service. 2009, archiviert vom Original (nicht mehr online verfügbar) am 28. Januar 2017; abgerufen am 19. November 2022: „Project Award Number 08HQGR0075“  Info: Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.@1@2Vorlage:Webachiv/IABot/earthquake.usgs.gov
  • T. M. Brocher, R. J. Blakely, R. E. Wells: Interpretation of the Seattle Uplift, Washington, as a Passive-Roof Duplex. In: Bulletin of the Seismological Society of America. Band 94, Nr. 4, August 2004, S. 1379–1401, doi:10.1785/012003190 (Online [PDF]).
  • L. M. Liberty: Seismic reflection imaging across the eastern portions of the Tacoma fault zone. In: U.S. Geological Service. NEHRP, 2007 (Online [PDF]): „Project Award Number 07HQGR0088“
  • QFFDB, Fault #552. USGS, abgerufen am 30. Oktober 2018 (englisch).
  • R. C. Witter, R. W. Givler: Final Technical Report: Two Post-Glavial Earthquakes on the Saddle Mountain West Fault, southeastern Olympic Peninsula, Washington. In: U.S. Geological Survey. NEHRP, 2005 (Online [PDF]): „Program Award 05HQGR0089“
  • Faults near The Dalles. USGS, abgerufen am 5. November 2018 (englisch).
  • (siehe die Karte der Verwerfungen in der QFFDB)
  • (siehe QFFDB, Fault 556)
  • siehe die Karte zur Datenbank der Verwerfungen

pubs.usgs.gov

  • E. A. Barnett, R. A. Haugerud, B. L. Sherrod, C. S. Weaver, T. L. Pratt, R. J. Blakely: Preliminary atlas of active shallow tectonic deformation in the Puget Lowland, Washington. In: U.S. Geological Survey. Open-File Report 2010-1149, 2010, S. 32 (Online): „14 maps“
  • M. A. Fisher, R. D. Hyndman, S. Y. Johnson, T. M. Brocher, R. S. Crosson, R. A. Wells, A. J. Calvert, U. S. ten Brink: Crustal Structure and Earthquake Hazards of the Subduction Zone in Southwestern British Columbia and Western Washington. In: U. S. Geological Survey. Professional Paper 1661-C, 2005 (Online [PDF]).
  • D. Stanley, A. Villaseñor, H. Benz: Subduction zone and crustal dynamics of western Washington: A tectonic model for earthquake hazards evaluation. In: U.S. Geological Survey. Open-File Report 99-311, 1999 (Online).
  • Seismic Maps. U. S. Geological Survey, abgerufen am 5. Oktober 2018 (englisch).
  • R. J. Blakely, R. E. Wells, C. S. Weaver: Puget Sound Aeromagnetic Maps and Data. In: U.S. Geological Survey. Open-File Report 99-514, 1999 (Online).
  • R. W. Tabor, V. A. Frizzell, D. B. Booth, R. B. Jr. Waitt: Geologic map of the Snoqualmie Pass 60 minute by 30 minute quadrangle, Washington. [Karte]. In: U.S. Geological Survey. Miscellaneous Investigations Map 2538, 2000 (englisch, usgs.gov): “1 Karte mit Erklärung, Maßstab 1:100.000”
  • THICKNESS OF UNCONSOLIDATED QUATERNARY DEPOSITS. USGS, abgerufen am 16. Oktober 2018 (englisch).
  • R. J. Blakely, B. L. Sherrod, R. E. Wells, C. S. Weaver, D. H. McCormack, K. G. Troost, R. A. Haugerud: The Cottage Lake Aeromagnetic Lineament: A possible onshore extension of the Southern Whidbey Island Fault, Washington. In: U.S. Geological Survey. Open-File Report 2004-1204, 2004 (Online [PDF]).
  • B. L. Sherrod, R. J. Blakely, C. S. Weaver, H. Kelsey, E. Barnett, R. Wells: Holocene fault scarps and shallow magnetic anomalies along the Southern Whidbey Island Fault Zone near Woodinville, Washington. In: U.S. Geological Survey. Open-File Report 2005-1136, 2005 (Online [PDF]).
  • (siehe auch die online verfügbare Abb. 64)
  • J. C. Yount, H. D. Gower: Bedrock Geologic Map of the Seattle 30' by 60' Quadrangle, Washington. In: U.S. Geological Survey. Open-File Report 91-147, 1991, S. 37 (Online): „4 Tafeln“
  • A. R. Nelson, S. F. Personius, B. L. Sherrod, J. Buck, L. Bradley, G. Henley II, L. M. Liberty, H. M. Kelsey, R.C. Witter, R.D. Koehler, E.R. Schermer, E.S. Nemser, T.T. Cladouhos: Field and laboratory data from an earthquake history study of scarps in the hanging wall of the Tacoma fault, Mason and Pierce Counties, Washington. In: U.S. Geological Survey. Scientific Investigations Map 3060, 2008 (Online): „3 Kartenblätter“
  • B. L. Sherrod, A. R. Nelson, H. M. Kelsey, T. M. Brocher, R. J. Blakely, C. S. Weaver, N. K. Rountree, B. S. Rhea, B. S. Jackson: The Catfish Lake Scarp, Allyn, Washington: Preliminary Field Data and Implications for Earthquake Hazards posed by the Tacoma Fault. In: U.S. Geological Survey. Open-File Report 03-0455, 2003 (Online).
  • Stanley Abb. 64 aus Stanley et al. (1999)
  • OFR 99-311, figures 46—50. USGS, abgerufen am 2. November 2018 (englisch).
  • (Download der Karte, auf der diese Anomalie dargestellt ist. Weitere aeromagnetische und gravitätische Abbildungen der Olympia- und weiterer Strukturen sind auf der geologischen Karte Summit Lake dargestellt.)

geopubs.wr.usgs.gov

  • P. J. Haeussler, K. M. Clark: Geologic map of the Wildcat Lake 7.5’ quadrangle, Kitsap and Mason Counties, Washington. In: U. S. Geological Survey. 2000, archiviert vom Original (nicht mehr online verfügbar) am 19. Februar 2013; abgerufen am 19. November 2022: „1 Kartenblatt, Maßstab 1:24.000“  Info: Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.@1@2Vorlage:Webachiv/IABot/geopubs.wr.usgs.gov
  • G. C. Rogers: Phase changes, fluids and the co-location of the deep and shallow seismicity beneath Puget Sound and southern Georgia Strait. In: S. Kirby, K. Wang, S. Dunlop (Hrsg.): The Cascadia Subduction Zone and Related Subduction Systems: Seismic Structure, Intraslab Earthquakes and Processes, and Earthquake Hazards. Open-File Report 02-328. U.S. Geological Survey, August 2002 (geopubs.wr.usgs.gov [PDF]).

gldims.cr.usgs.gov

  • Fault 562a. USGS, abgerufen am 1. November 2018 (englisch).
  • Fault 562b. USGS, abgerufen am 1. November 2018 (englisch).

pubs.er.usgs.gov

  • H. D. Gower, J. C. Yount, R. S. Crosson: Seismotectonic map of the Puget Sound region, Washington. In: U. S. Geological Survey. Miscellaneous Investigations Map I-1613, 1985, S. 15 (Online): „1:250.000“

profile.usgs.gov

  • T. Parsons, R. E. Wells, M. A. Fisher, E. Flueh, U. S. ten Brink: Three-dimensional velocity structure of Siletzia and other accreted terranes in the Cascadia forearc of Washington. In: Journal of Geophysical Research. Band 104, B8, 10. August 1999, S. 18,015–18,039, doi:10.1029/1999jb900106 (Online [PDF]). Online (Memento des Originals vom 29. Oktober 2013 im Internet Archive)  Info: Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.@1@2Vorlage:Webachiv/IABot/profile.usgs.gov

woodshole.er.usgs.gov

  • U. S. ten Brink, J. Song, R. C. Bucknam: Rupture models for the A.D. 900–930 Seattle fault earthquake from uplifted shorelines. In: Bulletin of the Geological Society of America. Band 34, Nr. 7, Juli 2006, S. 585–588, doi:10.1130/G22173.1 (Online [PDF]).

wa.gov

dnr.wa.gov

  • R. L. Logan, R. L. Schuster, P. T. Pringle, T. J. Walsh, S. P. Palmer: Radiocarbon Ages of Probable Coseismic Features from the Olympic Peninsula and Lake Sammamish, Washington. In: Washington Geology. Band 26, Nr. 2–3, September 1998, S. 59–67 (Online [PDF]).
  • J. D. Dragovich, A. J. DeOme: Geologic map of the McMurray 7.5-minute Quadrangle, Skagit and Snohomish Counties, Washington, with a Discussion of the Evidence for Holocene Activity on the Darrington–Devils Mountain Fault Zone. In: Washington Division of Geology and Earth Resources. Geological Map GM–61, Juni 2006, S. 18 (Online): „1 Blatt, Maßstab 1:24.000“
  • J. D. Dragovich, G. T. Petro, G. W. Thorsen, S. L. Larson, G. R. Foster, D. K. Norman: Geologic map of the Oak Harbor, Crescent Harbor, and part of the Smith Island 7.5-minute quadrangles, Island County,. In: Washington Division of Geology and Earth Resources. Geological Map GM–59, Juni 2005 (Online): „2 Blatt, Maßstab 1:24.000“
  • J. D. Dragovich, M. L. Anderson, T. J. Walsh, B. L. Johnson, T. L. Adams: Geologic map of the Fall City 7.5-minute quadrangle, King County, Washington. In: Washington Division of Geology and Earth Resources. Geological Map GM–67, November 2007, S. 16 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • J. D. Dragovich, T. J. Walsh, M. L. Anderson, R. Hartog, S. A. DuFrane, J. Vervoot, S. A. Williams, R. Cakir, K. D. Stanton, F. E. Wolff, D. K. Norman, J. L. Czajkowski: Geologic map of the North Bend 7.5-minute quadrangle, King County, Washington, with a discussion of major faults, folds, and basins in the map area. In: Washington Division of Geology and Earth Resources. Geological Map GM–73, Februar 2009, S. 39 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • J. D. Dragovich, H. A. Littke, M. L. Anderson, G. R. Wessel, C. J. Koger, J. H. Saltonstall, J. H. Jr. MacDonald, S. A. Mahan, S. A. DuFrane: Geologic map of the Carnation 7.5-minute quadrangle, King County, Washington. In: Washington Division of Geology and Earth Resources. Open-File Report 2010-1, Juni 2010, S. 21 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • J. D. Dragovich, M. L. Anderson, S. A. Mahan, J. H. MacDonald, C. P. McCabe, Recep Cakir, B. A. Stoker, N. M. Villeneuve, D. T. Smith, J. P. Bethel: Geologic map of the Lake Joy 7.5-minute quadrangle, King County, Washington. In: Washington Division of Geology and Earth Resources. Map Series 2012-01, Oktober 2012, S. 70 (Online): „2 Kartenblätter, Maßstab 1:24.000“
  • (Das Plangebiet für die großräumigen Kartierungen und der aktuelle Status sind unter DNR Washington zu finden.)
  • J. D. Dragovich, R. L. Logan, H. W. Schasse, T. J. Walsh, W. S. Lingley, D. K. Norman, W. J. Gerstel, T. J. Lapen, J. E. Schuster, K. D. Meyers: Geologic Map of Washington — Northwest Quadrant. In: Washington Division of Geology and Earth Resources. Geologic Map GM-50, 2002, S. 72 (Online [PDF]): „3 Kartenblätter, Maßstab 1:250.000“
  • J. H. Mackin, A. S. Cary: Origin of Cascade Landscapes. Information Circular 41. 1965; (englisch).
  • E. S. Cheney: Major Cenozoic faults in the northern Puget Lowland of Washington. In: J. E. Schuster (Hrsg.): Selected papers on the Geology of Washington (= Washington DGER Bulletin). Band 77, 1987, S. 149–168 (dnr.wa.gov [PDF]).
  • J. D. Dragovich, C. L. Frattali, M. L. Anderson, S. A. Mahan, J. H. MacDonald Jr., B. A. Stoker, D. T. Smith, C. J. Koger, R. Cakir, A. DuFrane, K. B. Sauer: Geologic Map of the Lake Chaplain 7.5-minute Quadrangle, Snohomish County, Washington. In: Washington Division of Geology and Earth Resources. Map Series 2014–01, Dezember 2014, S. 51 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • J. D. Dragovich, S. P. Mavor, M. L. Anderson, S. A. Mahan, J. H. Jr. MacDonald, J. H. Tepper, D. T. Smith, B. A. Stoker, C. J. Koger, R. Cakir, A. DuFrane, S. P. Scott, B. J. Justman: Geologic Map of the Granite Falls 7.5-minute Quadrangle, Snohomish County, Washington. In: Washington Division of Geology and Earth Resources. Map Series 2016–03, November 2016, S. 63 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • J. D. Dragovich, S. A. Mahan, M. L. Anderson, J. H. Jr MacDonald, J. F. Schilter, C. L. Frattali, C. J. Koger, D. T. Smith, B. A. Stoker, Andrew DuFrane, M. P. Eddy, Recep Cakir, K. B. Sauer: Geologic map of the Lake Roesiger 7.5-minute quadrangle, Snohomish County, Washington. In: Washington Division of Geology and Earth Resources. Map Series 2015-01, Oktober 2015, S. 47 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • J. D. Dragovich, D. K. Norman, C. L. Grisamer, R. L. Logan, G. Anderson: Geologic Map and Interpreted Geologic History of the Bow and Alger 7.5-minute Quadrangles, Western Skagit County, Washington. In: Washington Division of Geology and Earth Resources. Open-File Report 98-5, September 1998, S. 80 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • Joe D. Dragovich, Heather A. Littke, Shannon A. Mahan, Megan L. Anderson, James H. Jr. MacDonald, Recep Cakir, Bruce A. Stoker, Curtis J. Koger, S. Andrew DuFrane, John P. Bethel, Daniel T. Smith, Nathan M. Villeneuve: Geologic map of the Sultan 7.5-minute quadrangle, Snohomish and King Counties, Washington. In: Washington Division of Geology and Earth Resources. Map Series 2013-01, Oktober 2013, S. 52 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • J. D. Dragovich, M. L. Anderson, J. H. Jr. MacDonald, S. A. Mahan, S. A. DuFrane, H. A. Littke, G. R. Wessel, J. H. Saltonstall, C. J. Koger, Recep Cakir: Supplement to the geologic map of the Carnation 7.5-minute quadrangle, King County, Washington — Geochronologic, geochemical, point count, geophysical, earthquake, fault, and neotectonic data. In: Washington Division of Geology and Earth Resources. Open File Report 2010-2, Juni 2010, S. 42 (Online): „8 digitale Anhänge“
  • E. H. Brown, J. D. Dragovich: Tectonic elements and evolution of northwest Washington. In: Washington Division of Geology and Earth Resources. Geological Map GM–52, Dezember 2003, S. 12 (Online): „1 Kartenblatt, Maßstab 1:625.000“
  • J. D. Dragovich, M. L. Anderson, S. A. Mahan, C. J. Koger, J. H. Saltonstall, J. H. MacDonald, G. R. Wessel, B. A. Stoker, J. P. Bethel, J. E. Labadie, Recep Cakir, J. D. Bowman, S. A. DuFrane: Geologic map of the Monroe 7.5-minute quadrangle, King County, Washington. In: Washington Division of Geology and Earth Resources. Open-File Report 2011-1, November 2011, S. 24 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • M. Polenz, E. Spangler, L. A. Fusso, D. A. Reioux, R. A. Cole, T. J. Walsh, R. Cakir, K. P. Clark, J. H. Tepper, R. J. Carson, D. Pileggi, S. A. Mahan: Geologic map of the Brinnon 7.5-minute quadrangle, Jefferson and Kitsap Counties, Washington. In: Washington Division of Geology and Earth Resources. Map Series 2012-02, Dezember 2012, S. 47 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • T. A. Contreras, E. Spangler, L. A. Fusso, D. A. Reioux, G. Legorreta Paulin, P. T. Pringle, R. J. Carson, E. F. Lindstrum, K. P. Clark, J. H. Tepper, D. Pileggi, S. A. Mahan: Geologic map of the Eldon 7.5-minute quadrangle, Jefferson, Kitsap, and Mason Counties, Washington. In: Washington Division of Geology and Earth Resources. Map Series 2012-03, Dezember 2012, S. 60 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • T. A. Contreras, S. A. Weeks, K. M. D. Stanton, B. W. Stanton, B. B. Perry, T. J. Walsh, R. J. Carson, K. P. Clark, S. A. Mahan: Geologic map of the Holly 7.5-minute quadrangle, Jefferson, Kitsap, and Mason Counties, Washington. In: Washington Division of Geology and Earth Resources. Open File Report 2011-5, August 2012, S. 13 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • M. Polenz, G. T. Petro, T. A. Contreras, K. A. Stone, G. Legorreta Paulin, R. Cakir: Geologic map of the Seabeck and Poulsbo 7.5-minute quadrangles, Kitsap and Jefferson Counties, Washington. In: Washington Division of Geology and Earth Resources. Map Series 2013-02, Oktober 2013, S. 39 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • T. A. Contreras, G. Legorreta Paulin, J. L. Czajkowski, M. Polenz, R. L. Logan, R. J. Carson, S. A. Mahan, T. J. Walsh, C. N. Johnson, R. H. Skov: Geologic map of the Lilliwaup 7.5-minute quadrangle, Mason County, Washington. In: Washington Division of Geology and Earth Resources. Open File Report 2010-4, Juni 2010, S. 13 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • M. Polenz, T. A. Contreras, J. L. Czajkowski, G. Legorreta Paulin, B. A. Miller, M. E. Martin, T. J. Walsh, R. L. Logan, R. J. Carson, C. N. Johnson, R. H. Skov, S. A. Mahan, C. R. Cohan: Supplement to Geologic Maps of the Lilliwaup, Skokomish Valley, and Union 7.5-minute Quadrangles, Mason County, Washington— Geologic Setting and Development Around the Great Bend of Hood Canal. In: Washington Division of Geology and Earth Resources. Open-File Report 2010-5, Juni 2010, S. 27 (Online [PDF]).
  • R. J. Carson: First known active fault in Washington. In: Washington Geological Newsletter. Band 1, Nr. 3, Juli 1973, S. 1–3 (Online [PDF]).
  • R. J. Carson, J. R. Wilson: Quaternary faulting on Dow Mountain, Mason County. In: Washington Geological Newsletter. Band 2, Nr. 4, Oktober 1974, S. 1 (Online [PDF]).
  • T. J. Walsh, R. L. Logan: Field data for a trench on the Canyon River fault, southeast Olympic Mountains, Washington. In: Washington Division of Geology and Earth Resources. Open File Report 2007-1, 2007 (Online [PDF]): „Poster“
  • (Download der Karte, auf der diese Anomalie dargestellt ist. Weitere aeromagnetische und gravitätische Abbildungen der Olympia- und weiterer Strukturen sind auf der geologischen Karte Summit Lake dargestellt.)
  • R. L. Logan, T. J. Walsh: Geologic map of the Summit Lake 7.5-minute quadrangle, Thurston and Mason Counties, Washington. In: Washington Division of Geology and Earth Resources. Open-File Report 2004-10, Juni 2004 (Online [PDF]): „1 Kartenblatt, Maßstab 1:24.000“
  • M. Polenz, J. L. Czajkowski, G. Legorreta Paulin, T. A. Contreras, B. A. Miller, M. E. Martin, T. J. Walsh, R. L. Logan, R. J. Carson, C. N. Johnson, R. H. Skov, S. A. Mahan, C. R. Cohan: Geologic map of the Skokomish Valley and Union 7.5-minute quadrangles, Mason County, Washington. In: Washington Division of Geology and Earth Resources. Open-File Report 2010-3, Juni 2010, S. 21 (Online): „1 Kartenblatt, Maßstab 1:24.000“
  • T. J. Walsh, R. L. Logan: Geologic Map of the East Olympia 7.5-minute Quadrangle, Thurston County, Washington. In: Washington Division of Geology and Earth Resources. Geological Map GM–56, Juni 2005 (Online [PDF]): „1 Kartenblatt, Maßstab 1:24.000“
  • T. J. Walsh, M. A. Korosec, W. M. Phillips, R. L. Logan, H. W. Schasse: Geologic map of Washington – Southwest Quadrant. In: Washington Division of Geology and Earth Resources. Geologic Map GM–34, 1987, S. 28 (Online [PDF]): „2 Kartenblätter, Maßstab 1:250.000“
  • Die gesamte Karte ist online verfügbar
  • C. Finn, W. D. Stanley: Something old, something new, something borrowed, something blue - a new perspective on seismic hazards in Washington using aeromagnetic data. In: Washington Geology. Band 25, Nr. 2, Juni 1997, S. 3–7 (Online [PDF]).
  • J. D. Vine: Stratigraphy of Eocene rocks in a part of King County, Washington. In: Report of Investigations No. 21. Washington State Division of Mines and Geology, 1962 (Online [PDF]).
  • J. E. Schuster: Geologic map of Washington State. In: Washington Division of Geology and Earth Resources. Geological Map GM–53, 2005, S. 44 (Online): „1 Kartenblatt, Maßstab 1:500.000“

wadot.wa.gov

washington.edu

earthweb.ess.washington.edu

  • R. A. Haugerud, D. J. Harding, S. Y. Johnson, J. L. Harless, C. S. Weaver, B. L. Sherrod: High-Resolution Lidar Topography of the Puget Lowland, Washington — A Bonanza for Earth Science. In: GSA Today. Juni 2003, S. 4–10 (Online [PDF]).
  • B. L. Sherrod, R. J. Blakely, C. S. Weaver, H. M. Kelsey, E. Barnett, L. Liberty, K. L. Meagher, K. M. Pape: Finding concealed active faults: Extending the southern Whidbey Island fault across the Puget Lowland, Washington. In: Journal of Geophysical Research. Band 113, B5, Mai 2008, S. B05313, doi:10.1029/2007JB005060 (Online [PDF]).
  • R. J. Blakely, B. L. Sherrod, J. F. Hughes, M. L. Anderson, R. E. Wells, C. S. Weaver: The Saddle Mountain Fault Deformation Zone, Olympic Peninsula, Washington: Western Boundary of the Seattle Uplift. In: Geosphere. Band 5, Nr. 2, April 2009, S. 105–125, doi:10.1130/GES00196.1 (Online [PDF]).

courses.washington.edu

pugetsoundlidar.ess.washington.edu

  • D. J. Harding, G. S. Berghoff: Fault scarp detection beneath dense vegetation cover: airborne LIDAR mapping of the Seattle Fault Zone, Bainbridge Island, Washington State. In: Proceedings of the American Society of Photogrammetry and Remote Sensing Annual Conference, Washington, D.C., May, 2000. 2000 (Online [PDF]).

faculty.washington.edu

web.archive.org

yale.edu

earth.geology.yale.edu