#burnarea — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #burnarea, aggregated by home.social.
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Grain Size And Sediment Storage Explain Why Postfire Debris Flows Are Absent In Some Mountainous Landscapes
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https://doi.org/10.1126/sciadv.aec7923 <-- shared paper
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H/T @drew Coe | Staff Chief - Northern Region Resource Management
“We’ve speculated for years why the USGS post-fire debris flow model over-predicted debris flow likelihood in many parts of Northern California. This paper presents a mechanistic reason why…”
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“Postfire debris flow occurrence varies widely in mountainous landscapes, even under similar rainfall conditions. To understand why, [the authors] investigated two burned landscapes that experienced intense postfire rainfall: one in southern California with over 100 postfire debris flows and one in northern California with no postfire debris flows. Debris flows can initiate from bed failures that are predicted to occur when Shields stress τ* exceeds a threshold. [They] characterized τ* at the two sites, investigated bed failure, and conducted numerical experiments to identify controlling factors. Postfire increases in clear-water runoff raised τ* by up to threefold, whereas postfire reductions in channel grain size raised τ* by two orders of magnitude. No increase in runoff was required to initiate debris flows at the southern California site, yet debris flows were unlikely to initiate at the northern California site even for considerable increases in runoff. These results provide a mechanistic explanation for discrepancies in debris flow occurrence in mountainous landscapes…”
#engineeringgeology #wildfire #debrisflow #soil #geology #sediment #massmovement #postwildfire #burnarea #USGS #model #modeling #mechanistic #California #postfire #slope #drainagearea #mountain #rainfall #precipitation #water #hydrography #runoff #spatialanalysis #spatiotemporal #dynamic #mechanics #sheetwash #rilling -
Grain Size And Sediment Storage Explain Why Postfire Debris Flows Are Absent In Some Mountainous Landscapes
--
https://doi.org/10.1126/sciadv.aec7923 <-- shared paper
--
H/T @drew Coe | Staff Chief - Northern Region Resource Management
“We’ve speculated for years why the USGS post-fire debris flow model over-predicted debris flow likelihood in many parts of Northern California. This paper presents a mechanistic reason why…”
--
“Postfire debris flow occurrence varies widely in mountainous landscapes, even under similar rainfall conditions. To understand why, [the authors] investigated two burned landscapes that experienced intense postfire rainfall: one in southern California with over 100 postfire debris flows and one in northern California with no postfire debris flows. Debris flows can initiate from bed failures that are predicted to occur when Shields stress τ* exceeds a threshold. [They] characterized τ* at the two sites, investigated bed failure, and conducted numerical experiments to identify controlling factors. Postfire increases in clear-water runoff raised τ* by up to threefold, whereas postfire reductions in channel grain size raised τ* by two orders of magnitude. No increase in runoff was required to initiate debris flows at the southern California site, yet debris flows were unlikely to initiate at the northern California site even for considerable increases in runoff. These results provide a mechanistic explanation for discrepancies in debris flow occurrence in mountainous landscapes…”
#engineeringgeology #wildfire #debrisflow #soil #geology #sediment #massmovement #postwildfire #burnarea #USGS #model #modeling #mechanistic #California #postfire #slope #drainagearea #mountain #rainfall #precipitation #water #hydrography #runoff #spatialanalysis #spatiotemporal #dynamic #mechanics #sheetwash #rilling -
Grain Size And Sediment Storage Explain Why Postfire Debris Flows Are Absent In Some Mountainous Landscapes
--
https://doi.org/10.1126/sciadv.aec7923 <-- shared paper
--
H/T @drew Coe | Staff Chief - Northern Region Resource Management
“We’ve speculated for years why the USGS post-fire debris flow model over-predicted debris flow likelihood in many parts of Northern California. This paper presents a mechanistic reason why…”
--
“Postfire debris flow occurrence varies widely in mountainous landscapes, even under similar rainfall conditions. To understand why, [the authors] investigated two burned landscapes that experienced intense postfire rainfall: one in southern California with over 100 postfire debris flows and one in northern California with no postfire debris flows. Debris flows can initiate from bed failures that are predicted to occur when Shields stress τ* exceeds a threshold. [They] characterized τ* at the two sites, investigated bed failure, and conducted numerical experiments to identify controlling factors. Postfire increases in clear-water runoff raised τ* by up to threefold, whereas postfire reductions in channel grain size raised τ* by two orders of magnitude. No increase in runoff was required to initiate debris flows at the southern California site, yet debris flows were unlikely to initiate at the northern California site even for considerable increases in runoff. These results provide a mechanistic explanation for discrepancies in debris flow occurrence in mountainous landscapes…”
#engineeringgeology #wildfire #debrisflow #soil #geology #sediment #massmovement #postwildfire #burnarea #USGS #model #modeling #mechanistic #California #postfire #slope #drainagearea #mountain #rainfall #precipitation #water #hydrography #runoff #spatialanalysis #spatiotemporal #dynamic #mechanics #sheetwash #rilling -
Grain Size And Sediment Storage Explain Why Postfire Debris Flows Are Absent In Some Mountainous Landscapes
--
https://doi.org/10.1126/sciadv.aec7923 <-- shared paper
--
H/T @drew Coe | Staff Chief - Northern Region Resource Management
“We’ve speculated for years why the USGS post-fire debris flow model over-predicted debris flow likelihood in many parts of Northern California. This paper presents a mechanistic reason why…”
--
“Postfire debris flow occurrence varies widely in mountainous landscapes, even under similar rainfall conditions. To understand why, [the authors] investigated two burned landscapes that experienced intense postfire rainfall: one in southern California with over 100 postfire debris flows and one in northern California with no postfire debris flows. Debris flows can initiate from bed failures that are predicted to occur when Shields stress τ* exceeds a threshold. [They] characterized τ* at the two sites, investigated bed failure, and conducted numerical experiments to identify controlling factors. Postfire increases in clear-water runoff raised τ* by up to threefold, whereas postfire reductions in channel grain size raised τ* by two orders of magnitude. No increase in runoff was required to initiate debris flows at the southern California site, yet debris flows were unlikely to initiate at the northern California site even for considerable increases in runoff. These results provide a mechanistic explanation for discrepancies in debris flow occurrence in mountainous landscapes…”
#engineeringgeology #wildfire #debrisflow #soil #geology #sediment #massmovement #postwildfire #burnarea #USGS #model #modeling #mechanistic #California #postfire #slope #drainagearea #mountain #rainfall #precipitation #water #hydrography #runoff #spatialanalysis #spatiotemporal #dynamic #mechanics #sheetwash #rilling -
Grain Size And Sediment Storage Explain Why Postfire Debris Flows Are Absent In Some Mountainous Landscapes
--
https://doi.org/10.1126/sciadv.aec7923 <-- shared paper
--
H/T @drew Coe | Staff Chief - Northern Region Resource Management
“We’ve speculated for years why the USGS post-fire debris flow model over-predicted debris flow likelihood in many parts of Northern California. This paper presents a mechanistic reason why…”
--
“Postfire debris flow occurrence varies widely in mountainous landscapes, even under similar rainfall conditions. To understand why, [the authors] investigated two burned landscapes that experienced intense postfire rainfall: one in southern California with over 100 postfire debris flows and one in northern California with no postfire debris flows. Debris flows can initiate from bed failures that are predicted to occur when Shields stress τ* exceeds a threshold. [They] characterized τ* at the two sites, investigated bed failure, and conducted numerical experiments to identify controlling factors. Postfire increases in clear-water runoff raised τ* by up to threefold, whereas postfire reductions in channel grain size raised τ* by two orders of magnitude. No increase in runoff was required to initiate debris flows at the southern California site, yet debris flows were unlikely to initiate at the northern California site even for considerable increases in runoff. These results provide a mechanistic explanation for discrepancies in debris flow occurrence in mountainous landscapes…”
#engineeringgeology #wildfire #debrisflow #soil #geology #sediment #massmovement #postwildfire #burnarea #USGS #model #modeling #mechanistic #California #postfire #slope #drainagearea #mountain #rainfall #precipitation #water #hydrography #runoff #spatialanalysis #spatiotemporal #dynamic #mechanics #sheetwash #rilling