Matches in SemOpenAlex for { <https://semopenalex.org/work/W2938746516> ?p ?o ?g. }
- W2938746516 abstract "The application of thermo-rheological models to forecast active lava flow emplacement and quantify the eruptive parameters of older flow-producing eruptions has become a somewhat common tool over the last decade. With the modification and adaption of these models to modular computing languages, they are now easier, quicker, and being incorporated into studies of both terrestrial and planetary volcanism. These models, such as FLOWGO, rely on numerous assumptions and input parameters, some of which such as radiant emissivity are not well understood for molten materials. Without a well-grounded knowledge of how this parameter governs radiant cooling, physics-based estimates of temperature and models such as FLOWGO that track cooling with time will be in error. Here, we perform a detailed FLOWGO-based modeling study of lava flows emplaced at Tolbachik volcano during the 2012-2013 and the 1975-1976 eruptions. Specifically, we have modified the FLOWGO model to incorporate a two-component emissivity model linked to the fraction of molten lava and cooled crust. We focus first on the large Leningradskoye Flow emplaced at the start of the 2012 eruption, relying on data from numerous other orbital sensors including MODIS, ASTER and ALI to constrain some of the model input parameters. The two-component emissivity adaption produced better fits to the final flow length and was found to be most significant for flows with lower percentages of initial crust cover. We then applied these results and model constraints to the large Cone II flow formed in 1975, for which no satellite-based constraining data are available. By knowing the final flow dimensions coupled with the constraints determined from the previous modeling, we were able to estimate an effusion rate (700 m3/s), initial velocity (1.5 to 2 m/s) and final viscosity (108 Pa·s). Interestingly, a nearly identical model fit was achieved with a higher effusion rate (1250 m3/s) and correspondingly lower crust cover. In this scenario, modeling the two-component emissivity was critical for accurate model results. This represents the first study to implement two-component emissivity into thermo-rheological modeling of lava flows. The results show that this is an important factor for model accuracy and critical for large, higher effusion rate flows as well as for our understanding of older, “data-limited” flows on Earth and other planets." @default.
- W2938746516 created "2019-04-25" @default.
- W2938746516 creator A5013970453 @default.
- W2938746516 creator A5031671052 @default.
- W2938746516 creator A5045507076 @default.
- W2938746516 creator A5050861768 @default.
- W2938746516 date "2019-04-08" @default.
- W2938746516 modified "2023-10-15" @default.
- W2938746516 title "The influence of emissivity on the thermo-rheological modeling of the channelized lava flows at Tolbachik volcano" @default.
- W2938746516 cites W1913734344 @default.
- W2938746516 cites W1977626264 @default.
- W2938746516 cites W1978120935 @default.
- W2938746516 cites W1986269999 @default.
- W2938746516 cites W1987012800 @default.
- W2938746516 cites W1991218745 @default.
- W2938746516 cites W2004682871 @default.
- W2938746516 cites W2015773982 @default.
- W2938746516 cites W2016862752 @default.
- W2938746516 cites W2022758125 @default.
- W2938746516 cites W2034256519 @default.
- W2938746516 cites W2034299044 @default.
- W2938746516 cites W2035282540 @default.
- W2938746516 cites W2038967637 @default.
- W2938746516 cites W2046426212 @default.
- W2938746516 cites W2048599340 @default.
- W2938746516 cites W2055057957 @default.
- W2938746516 cites W2069079210 @default.
- W2938746516 cites W2070484211 @default.
- W2938746516 cites W2072213322 @default.
- W2938746516 cites W2074511800 @default.
- W2938746516 cites W2083073290 @default.
- W2938746516 cites W2084689997 @default.
- W2938746516 cites W2087060899 @default.
- W2938746516 cites W2092524478 @default.
- W2938746516 cites W2093236692 @default.
- W2938746516 cites W2102016095 @default.
- W2938746516 cites W2103361248 @default.
- W2938746516 cites W2109210050 @default.
- W2938746516 cites W2109271534 @default.
- W2938746516 cites W2110970978 @default.
- W2938746516 cites W2113091736 @default.
- W2938746516 cites W2117988002 @default.
- W2938746516 cites W2143156687 @default.
- W2938746516 cites W2150038996 @default.
- W2938746516 cites W2153383544 @default.
- W2938746516 cites W2153976186 @default.
- W2938746516 cites W2164897185 @default.
- W2938746516 cites W2170615863 @default.
- W2938746516 cites W2181427404 @default.
- W2938746516 cites W2312997001 @default.
- W2938746516 cites W2413471311 @default.
- W2938746516 cites W2440116684 @default.
- W2938746516 cites W2580112499 @default.
- W2938746516 cites W2610752197 @default.
- W2938746516 cites W2738011528 @default.
- W2938746516 cites W2740741471 @default.
- W2938746516 cites W2773586403 @default.
- W2938746516 cites W427784047 @default.
- W2938746516 cites W776852714 @default.
- W2938746516 cites W886602929 @default.
- W2938746516 doi "https://doi.org/10.4401/ag-8077" @default.
- W2938746516 hasPublicationYear "2019" @default.
- W2938746516 type Work @default.
- W2938746516 sameAs 2938746516 @default.
- W2938746516 citedByCount "12" @default.
- W2938746516 countsByYear W29387465162019 @default.
- W2938746516 countsByYear W29387465162020 @default.
- W2938746516 countsByYear W29387465162021 @default.
- W2938746516 countsByYear W29387465162022 @default.
- W2938746516 countsByYear W29387465162023 @default.
- W2938746516 crossrefType "journal-article" @default.
- W2938746516 hasAuthorship W2938746516A5013970453 @default.
- W2938746516 hasAuthorship W2938746516A5031671052 @default.
- W2938746516 hasAuthorship W2938746516A5045507076 @default.
- W2938746516 hasAuthorship W2938746516A5050861768 @default.
- W2938746516 hasBestOaLocation W29387465161 @default.
- W2938746516 hasConcept C113754120 @default.
- W2938746516 hasConcept C120665830 @default.
- W2938746516 hasConcept C120806208 @default.
- W2938746516 hasConcept C121332964 @default.
- W2938746516 hasConcept C127313418 @default.
- W2938746516 hasConcept C163651212 @default.
- W2938746516 hasConcept C165205528 @default.
- W2938746516 hasConcept C2776698055 @default.
- W2938746516 hasConcept C38349280 @default.
- W2938746516 hasConcept C41008148 @default.
- W2938746516 hasConcept C51889082 @default.
- W2938746516 hasConcept C57879066 @default.
- W2938746516 hasConcept C5900021 @default.
- W2938746516 hasConcept C6363049 @default.
- W2938746516 hasConcept C76155785 @default.
- W2938746516 hasConcept C77928131 @default.
- W2938746516 hasConcept C8058405 @default.
- W2938746516 hasConceptScore W2938746516C113754120 @default.
- W2938746516 hasConceptScore W2938746516C120665830 @default.
- W2938746516 hasConceptScore W2938746516C120806208 @default.
- W2938746516 hasConceptScore W2938746516C121332964 @default.
- W2938746516 hasConceptScore W2938746516C127313418 @default.
- W2938746516 hasConceptScore W2938746516C163651212 @default.
- W2938746516 hasConceptScore W2938746516C165205528 @default.