Matches in SemOpenAlex for { <https://semopenalex.org/work/W2912642313> ?p ?o ?g. }
- W2912642313 endingPage "14" @default.
- W2912642313 startingPage "1" @default.
- W2912642313 abstract "In this study, we develop a dimensionless assessment method to evaluate landslide dam formation by considering the relationship between the run-out distance of a tributary debris flow and the width of the main stream, deposition thickness of the tributary debris flow, and the water depth of the main stream. Based on the theory of debris flow run-out distance and fan formation, landslide dam formation may result from a tributary debris flow as a result of two concurrent formation processes: (1) the run-out distance of the tributary debris flow must be greater than the width of the main stream, and (2) the minimum deposition thickness of the tributary debris flow must be higher than the in situ water depth of the main stream. At the confluence, one of four types of depositional scenarios may result: (1) the tributary debris flow enters into the main stream and forms a landslide dam; (2) the tributary debris flow enters into the main stream but overflow occurs, thus preventing complete blockage of the main stream; (3) the tributary debris flow enters into the main stream, does not reach the far bank, and sediment remains partially above the water elevation of the main stream; or (4) the tributary debris flow enters into the main stream, does not reach the far bank, and sediment is fully submerged in the main stream. This method was applied to the analysis of 11 tributary debris flow events during Typhoon Morakot, and the results indicate that the dimensionless assessment method can be used to estimate potential areas of landslide dam formation caused by tributary debris flows. Based on this method, government authorities can determine potential areas of landslide dam formation caused by debris flows and mitigate possible disasters accordingly through a properly prepared response plan, especially for early identification." @default.
- W2912642313 created "2019-02-21" @default.
- W2912642313 creator A5020376568 @default.
- W2912642313 creator A5023838945 @default.
- W2912642313 creator A5036890405 @default.
- W2912642313 creator A5041289055 @default.
- W2912642313 creator A5062619680 @default.
- W2912642313 creator A5082636554 @default.
- W2912642313 date "2019-01-22" @default.
- W2912642313 modified "2023-10-15" @default.
- W2912642313 title "Dimensionless Assessment Method of Landslide Dam Formation Caused by Tributary Debris Flow Events" @default.
- W2912642313 cites W1047381126 @default.
- W2912642313 cites W1509249443 @default.
- W2912642313 cites W1966207721 @default.
- W2912642313 cites W1967700333 @default.
- W2912642313 cites W1974853076 @default.
- W2912642313 cites W1976578817 @default.
- W2912642313 cites W1977114321 @default.
- W2912642313 cites W1999419156 @default.
- W2912642313 cites W2000322743 @default.
- W2912642313 cites W2014529264 @default.
- W2912642313 cites W2021704225 @default.
- W2912642313 cites W2025014195 @default.
- W2912642313 cites W2027903918 @default.
- W2912642313 cites W2028881727 @default.
- W2912642313 cites W2030772686 @default.
- W2912642313 cites W2032870757 @default.
- W2912642313 cites W2058381406 @default.
- W2912642313 cites W2075878027 @default.
- W2912642313 cites W2093596033 @default.
- W2912642313 cites W2096443926 @default.
- W2912642313 cites W2110123902 @default.
- W2912642313 cites W2127365991 @default.
- W2912642313 cites W2134539360 @default.
- W2912642313 cites W2139417932 @default.
- W2912642313 cites W2144405045 @default.
- W2912642313 cites W2156033388 @default.
- W2912642313 cites W2297519777 @default.
- W2912642313 cites W2744186189 @default.
- W2912642313 cites W2752051856 @default.
- W2912642313 cites W2759347600 @default.
- W2912642313 cites W2801762495 @default.
- W2912642313 cites W4229855922 @default.
- W2912642313 doi "https://doi.org/10.1155/2019/7083058" @default.
- W2912642313 hasPublicationYear "2019" @default.
- W2912642313 type Work @default.
- W2912642313 sameAs 2912642313 @default.
- W2912642313 citedByCount "11" @default.
- W2912642313 countsByYear W29126423132019 @default.
- W2912642313 countsByYear W29126423132020 @default.
- W2912642313 countsByYear W29126423132021 @default.
- W2912642313 countsByYear W29126423132022 @default.
- W2912642313 countsByYear W29126423132023 @default.
- W2912642313 crossrefType "journal-article" @default.
- W2912642313 hasAuthorship W2912642313A5020376568 @default.
- W2912642313 hasAuthorship W2912642313A5023838945 @default.
- W2912642313 hasAuthorship W2912642313A5036890405 @default.
- W2912642313 hasAuthorship W2912642313A5041289055 @default.
- W2912642313 hasAuthorship W2912642313A5062619680 @default.
- W2912642313 hasAuthorship W2912642313A5082636554 @default.
- W2912642313 hasBestOaLocation W29126423131 @default.
- W2912642313 hasConcept C111368507 @default.
- W2912642313 hasConcept C114793014 @default.
- W2912642313 hasConcept C127313418 @default.
- W2912642313 hasConcept C16828302 @default.
- W2912642313 hasConcept C186295008 @default.
- W2912642313 hasConcept C187320778 @default.
- W2912642313 hasConcept C20470049 @default.
- W2912642313 hasConcept C205649164 @default.
- W2912642313 hasConcept C23389524 @default.
- W2912642313 hasConcept C2776023875 @default.
- W2912642313 hasConcept C2776643431 @default.
- W2912642313 hasConcept C2816523 @default.
- W2912642313 hasConcept C31258907 @default.
- W2912642313 hasConcept C39432304 @default.
- W2912642313 hasConcept C41008148 @default.
- W2912642313 hasConcept C42090638 @default.
- W2912642313 hasConcept C58640448 @default.
- W2912642313 hasConcept C64297162 @default.
- W2912642313 hasConcept C65589250 @default.
- W2912642313 hasConcept C76886044 @default.
- W2912642313 hasConceptScore W2912642313C111368507 @default.
- W2912642313 hasConceptScore W2912642313C114793014 @default.
- W2912642313 hasConceptScore W2912642313C127313418 @default.
- W2912642313 hasConceptScore W2912642313C16828302 @default.
- W2912642313 hasConceptScore W2912642313C186295008 @default.
- W2912642313 hasConceptScore W2912642313C187320778 @default.
- W2912642313 hasConceptScore W2912642313C20470049 @default.
- W2912642313 hasConceptScore W2912642313C205649164 @default.
- W2912642313 hasConceptScore W2912642313C23389524 @default.
- W2912642313 hasConceptScore W2912642313C2776023875 @default.
- W2912642313 hasConceptScore W2912642313C2776643431 @default.
- W2912642313 hasConceptScore W2912642313C2816523 @default.
- W2912642313 hasConceptScore W2912642313C31258907 @default.
- W2912642313 hasConceptScore W2912642313C39432304 @default.
- W2912642313 hasConceptScore W2912642313C41008148 @default.
- W2912642313 hasConceptScore W2912642313C42090638 @default.
- W2912642313 hasConceptScore W2912642313C58640448 @default.