{"id":{"repo_id":"central-wash","oai_identifier":"oai:digitalcommons.cwu.edu:etd-1959"},"canonical_url":"https://search.dev.ndltd.org/etd/central-wash/oai:digitalcommons.cwu.edu:etd-1959","repository":{"repo_id":"central-wash","name":"Central Washington University","base_url":"https://digitalcommons.cwu.edu/do/oai/"},"display":{"title":"Quantifying Sedimentation Patterns of Small Watersheds in the Central Oregon Coast Range Using Landslide-Dammed Lakes","abstract":"Up to 250 years of sedimentation patterns in headwater streams are preserved with detail in landslide-dammed lakes of the central Oregon Coast Range. I hypothesize that both anthropogenic and natural perturbations should increase linear and mass sediment accumulation rates and be discernible spatially and temporally in the sediment record with use of <sup>137</sup>Cs, high resolution charcoal stratigraphy, and aerial photography. Klickitat Lake and Wasson Lake are landslide-dammed lakes in small watersheds (<10 >km<sup>2</sup>) that contain drowned Douglas-fir stumps that are used for accurate dendrochronology and precise timing of the lake formation. An age-depth relationship was developed using <sup>137</sup>Cs and identifiable fire events, which demonstrates that each lake has high linear sedimentation accumulation rates (0.2 – 4.5 cm y<sup>-1</sup>) and variable mass accumulation rates. Both lakes exhibit similar changes in mass and sediment accumulation, with rates remaining low after formation of each landslide-dammed lake and stabilizing after the initial lake filling. Stand-replacing wildfires of the mid-19<sup>th</sup> century increased short- and long-term sedimentation and mass accumulation rates, but they are not a primary driver in sediment mobilization and deposition. Sedimentation to the lakes systematically and gradually increased after the 1920s. Rates peaked in the mid-20<sup>th</sup> century associated with above-average peak discharge events with wetter and cooler conditions across the Pacific Northwest. Sediment deposition to the repositories has since decreased, but remains elevated compared to pre-industrial logging and road development. Comparisons to other landslide-dammed sediment repositories in the region suggest higher sedimentation rates in the steeper southern Tyee Formation, and lower sediment mobilization potential in the deep-seated dominated northern Tyee Formation. Results of this study indicate that small landslide-dammed lakes are viable tools for assessing sediment mobility patterns in headwater channels and can be used to further understand sedimentation and erosional patterns in the central Oregon Coast Range.","abstract_html":"Up to 250 years of sedimentation patterns in headwater streams are preserved with detail in landslide-dammed lakes of the central Oregon Coast Range. I hypothesize that both anthropogenic and natural perturbations should increase linear and mass sediment accumulation rates and be discernible spatially and temporally in the sediment record with use of &lt;sup&gt;137&lt;/sup&gt;Cs, high resolution charcoal stratigraphy, and aerial photography. Klickitat Lake and Wasson Lake are landslide-dammed lakes in small watersheds (&lt;10 &gt;km&lt;sup&gt;2&lt;/sup&gt;) that contain drowned Douglas-fir stumps that are used for accurate dendrochronology and precise timing of the lake formation. An age-depth relationship was developed using &lt;sup&gt;137&lt;/sup&gt;Cs and identifiable fire events, which demonstrates that each lake has high linear sedimentation accumulation rates (0.2 – 4.5 cm y&lt;sup&gt;-1&lt;/sup&gt;) and variable mass accumulation rates. Both lakes exhibit similar changes in mass and sediment accumulation, with rates remaining low after formation of each landslide-dammed lake and stabilizing after the initial lake filling. Stand-replacing wildfires of the mid-19&lt;sup&gt;th&lt;/sup&gt; century increased short- and long-term sedimentation and mass accumulation rates, but they are not a primary driver in sediment mobilization and deposition. Sedimentation to the lakes systematically and gradually increased after the 1920s. Rates peaked in the mid-20&lt;sup&gt;th&lt;/sup&gt; century associated with above-average peak discharge events with wetter and cooler conditions across the Pacific Northwest. Sediment deposition to the repositories has since decreased, but remains elevated compared to pre-industrial logging and road development. Comparisons to other landslide-dammed sediment repositories in the region suggest higher sedimentation rates in the steeper southern Tyee Formation, and lower sediment mobilization potential in the deep-seated dominated northern Tyee Formation. Results of this study indicate that small landslide-dammed lakes are viable tools for assessing sediment mobility patterns in headwater channels and can be used to further understand sedimentation and erosional patterns in the central Oregon Coast Range.","abstract_has_math":false,"creators":["Wetherell, Logan"],"institution":null,"degree_name":"Master of Science (MS)","degree_level":null,"degree_discipline":"Geological Sciences","degree_department":null,"school":null,"contributors":["Lisa Ely","Megan K. Walsh","Joshua Roering"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2018,"date_issued":"2018-01-01T08:00:00Z","date_published":"2018-01-01T08:00:00Z","updated_at":"2026-07-24T01:37:23Z","subjects":["Geomorphology","sedimentation","landslide dam","wildfire","logging","Earth Sciences","Physical Sciences and Mathematics"],"languages":["English"],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://digitalcommons.cwu.edu/etd/931","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Lisa Ely","Megan K. 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I hypothesize that both anthropogenic and natural perturbations should increase linear and mass sediment accumulation rates and be discernible spatially and temporally in the sediment record with use of <sup>137</sup>Cs, high resolution charcoal stratigraphy, and aerial photography. Klickitat Lake and Wasson Lake are landslide-dammed lakes in small watersheds (<10 >km<sup>2</sup>) that contain drowned Douglas-fir stumps that are used for accurate dendrochronology and precise timing of the lake formation. An age-depth relationship was developed using <sup>137</sup>Cs and identifiable fire events, which demonstrates that each lake has high linear sedimentation accumulation rates (0.2 – 4.5 cm y<sup>-1</sup>) and variable mass accumulation rates. Both lakes exhibit similar changes in mass and sediment accumulation, with rates remaining low after formation of each landslide-dammed lake and stabilizing after the initial lake filling. Stand-replacing wildfires of the mid-19<sup>th</sup> century increased short- and long-term sedimentation and mass accumulation rates, but they are not a primary driver in sediment mobilization and deposition. Sedimentation to the lakes systematically and gradually increased after the 1920s. Rates peaked in the mid-20<sup>th</sup> century associated with above-average peak discharge events with wetter and cooler conditions across the Pacific Northwest. Sediment deposition to the repositories has since decreased, but remains elevated compared to pre-industrial logging and road development. Comparisons to other landslide-dammed sediment repositories in the region suggest higher sedimentation rates in the steeper southern Tyee Formation, and lower sediment mobilization potential in the deep-seated dominated northern Tyee Formation. Results of this study indicate that small landslide-dammed lakes are viable tools for assessing sediment mobility patterns in headwater channels and can be used to further understand sedimentation and erosional patterns in the central Oregon Coast Range."]},{"key":"dc:title","label":"Title","values":["Quantifying Sedimentation Patterns of Small Watersheds in the Central Oregon Coast Range Using Landslide-Dammed Lakes"]}]}],"canonical_facts":{"dc:contributor":["Lisa Ely","Megan K. Walsh","Joshua Roering"],"dc:creator":["Wetherell, Logan"],"dc:date.available":["2020-07-01T07:00:00Z"],"dc:description.abstract":["Up to 250 years of sedimentation patterns in headwater streams are preserved with detail in landslide-dammed lakes of the central Oregon Coast Range. I hypothesize that both anthropogenic and natural perturbations should increase linear and mass sediment accumulation rates and be discernible spatially and temporally in the sediment record with use of <sup>137</sup>Cs, high resolution charcoal stratigraphy, and aerial photography. Klickitat Lake and Wasson Lake are landslide-dammed lakes in small watersheds (<10 >km<sup>2</sup>) that contain drowned Douglas-fir stumps that are used for accurate dendrochronology and precise timing of the lake formation. An age-depth relationship was developed using <sup>137</sup>Cs and identifiable fire events, which demonstrates that each lake has high linear sedimentation accumulation rates (0.2 – 4.5 cm y<sup>-1</sup>) and variable mass accumulation rates. Both lakes exhibit similar changes in mass and sediment accumulation, with rates remaining low after formation of each landslide-dammed lake and stabilizing after the initial lake filling. Stand-replacing wildfires of the mid-19<sup>th</sup> century increased short- and long-term sedimentation and mass accumulation rates, but they are not a primary driver in sediment mobilization and deposition. Sedimentation to the lakes systematically and gradually increased after the 1920s. Rates peaked in the mid-20<sup>th</sup> century associated with above-average peak discharge events with wetter and cooler conditions across the Pacific Northwest. Sediment deposition to the repositories has since decreased, but remains elevated compared to pre-industrial logging and road development. Comparisons to other landslide-dammed sediment repositories in the region suggest higher sedimentation rates in the steeper southern Tyee Formation, and lower sediment mobilization potential in the deep-seated dominated northern Tyee Formation. Results of this study indicate that small landslide-dammed lakes are viable tools for assessing sediment mobility patterns in headwater channels and can be used to further understand sedimentation and erosional patterns in the central Oregon Coast Range."],"dc:identifier":["https://digitalcommons.cwu.edu/etd/931"],"dc:language":["English"],"dc:subject":["Geomorphology","sedimentation","landslide dam","wildfire","logging","Earth Sciences","Physical Sciences and Mathematics"],"dc:title":["Quantifying Sedimentation Patterns of Small Watersheds in the Central Oregon Coast Range Using Landslide-Dammed Lakes"],"dc:type":["Text"],"thesis:degree_discipline":["Geological Sciences"],"thesis:degree_name":["Master of Science (MS)"]},"updated_at":"2026-07-24T01:37:23Z"}