Matches in SemOpenAlex for { <https://semopenalex.org/work/W4290047899> ?p ?o ?g. }
- W4290047899 endingPage "639" @default.
- W4290047899 startingPage "621" @default.
- W4290047899 abstract "Short waves growth is characterized by nonlinear and dynamic processes that couple ocean and atmosphere. Ocean surface currents can have a strong impact on short wave steepness and breaking, modifying the surface roughness, and consequently their growth. However, this interplay is poorly understood and observations are scarce. This work uses in situ measurements of near-surface winds, surface current, and waves under strong tidal current conditions to investigate the relative wind speed effect on the local short waves growth. Those observations were extensive compared with numerical modeling using WAVEWACHIII, where the simulations repeatedly fail to reproduce the observed wind sea energy under strong current conditions. Our field observations and coupled ocean-atmosphere numerical simulations suggest that surface currents can strongly modulate surface winds. That is a local process, better observed closer to the boundary layer than at 10 m height. Yet, it can cause a significant impact on the local wind shear estimation and consequently on the local waves’ growth source term. The results presented here show that the relative wind effect is not well solved inside spectral waves models, causing a significant bias around the peak of wind sea energy." @default.
- W4290047899 created "2022-08-06" @default.
- W4290047899 creator A5012025692 @default.
- W4290047899 creator A5022113887 @default.
- W4290047899 creator A5037486583 @default.
- W4290047899 creator A5041794907 @default.
- W4290047899 creator A5047991168 @default.
- W4290047899 creator A5070120947 @default.
- W4290047899 creator A5078712787 @default.
- W4290047899 creator A5083042125 @default.
- W4290047899 creator A5086011478 @default.
- W4290047899 date "2022-08-01" @default.
- W4290047899 modified "2023-10-16" @default.
- W4290047899 title "Relative current effect on short wave growth" @default.
- W4290047899 cites W1525646248 @default.
- W4290047899 cites W1559643192 @default.
- W4290047899 cites W1966469520 @default.
- W4290047899 cites W1978863037 @default.
- W4290047899 cites W1981410591 @default.
- W4290047899 cites W1990077491 @default.
- W4290047899 cites W1995609103 @default.
- W4290047899 cites W1995871939 @default.
- W4290047899 cites W2018875945 @default.
- W4290047899 cites W2021547931 @default.
- W4290047899 cites W2028965680 @default.
- W4290047899 cites W2032946827 @default.
- W4290047899 cites W2044219851 @default.
- W4290047899 cites W2045267044 @default.
- W4290047899 cites W2045812117 @default.
- W4290047899 cites W2078862266 @default.
- W4290047899 cites W2079201204 @default.
- W4290047899 cites W2082478787 @default.
- W4290047899 cites W2086661669 @default.
- W4290047899 cites W2090350240 @default.
- W4290047899 cites W2090592000 @default.
- W4290047899 cites W2097245972 @default.
- W4290047899 cites W2099829664 @default.
- W4290047899 cites W2105297156 @default.
- W4290047899 cites W2107628689 @default.
- W4290047899 cites W2109691029 @default.
- W4290047899 cites W2111839466 @default.
- W4290047899 cites W2122188921 @default.
- W4290047899 cites W2128120064 @default.
- W4290047899 cites W2128348918 @default.
- W4290047899 cites W2157473329 @default.
- W4290047899 cites W2162623208 @default.
- W4290047899 cites W2165185803 @default.
- W4290047899 cites W2239867333 @default.
- W4290047899 cites W2472967701 @default.
- W4290047899 cites W2528123212 @default.
- W4290047899 cites W2586673183 @default.
- W4290047899 cites W2596431214 @default.
- W4290047899 cites W2613687640 @default.
- W4290047899 cites W2618796261 @default.
- W4290047899 cites W2808463965 @default.
- W4290047899 cites W3103145119 @default.
- W4290047899 cites W3105018599 @default.
- W4290047899 cites W4248346840 @default.
- W4290047899 doi "https://doi.org/10.1007/s10236-022-01520-0" @default.
- W4290047899 hasPublicationYear "2022" @default.
- W4290047899 type Work @default.
- W4290047899 citedByCount "1" @default.
- W4290047899 countsByYear W42900478992023 @default.
- W4290047899 crossrefType "journal-article" @default.
- W4290047899 hasAuthorship W4290047899A5012025692 @default.
- W4290047899 hasAuthorship W4290047899A5022113887 @default.
- W4290047899 hasAuthorship W4290047899A5037486583 @default.
- W4290047899 hasAuthorship W4290047899A5041794907 @default.
- W4290047899 hasAuthorship W4290047899A5047991168 @default.
- W4290047899 hasAuthorship W4290047899A5070120947 @default.
- W4290047899 hasAuthorship W4290047899A5078712787 @default.
- W4290047899 hasAuthorship W4290047899A5083042125 @default.
- W4290047899 hasAuthorship W4290047899A5086011478 @default.
- W4290047899 hasBestOaLocation W42900478994 @default.
- W4290047899 hasConcept C100858432 @default.
- W4290047899 hasConcept C111368507 @default.
- W4290047899 hasConcept C120665830 @default.
- W4290047899 hasConcept C121332964 @default.
- W4290047899 hasConcept C127313418 @default.
- W4290047899 hasConcept C135558025 @default.
- W4290047899 hasConcept C148043351 @default.
- W4290047899 hasConcept C153294291 @default.
- W4290047899 hasConcept C161067210 @default.
- W4290047899 hasConcept C165082838 @default.
- W4290047899 hasConcept C169596890 @default.
- W4290047899 hasConcept C44886760 @default.
- W4290047899 hasConcept C49204034 @default.
- W4290047899 hasConcept C57879066 @default.
- W4290047899 hasConcept C65440619 @default.
- W4290047899 hasConcept C8058405 @default.
- W4290047899 hasConcept C84174578 @default.
- W4290047899 hasConcept C91586092 @default.
- W4290047899 hasConceptScore W4290047899C100858432 @default.
- W4290047899 hasConceptScore W4290047899C111368507 @default.
- W4290047899 hasConceptScore W4290047899C120665830 @default.
- W4290047899 hasConceptScore W4290047899C121332964 @default.
- W4290047899 hasConceptScore W4290047899C127313418 @default.
- W4290047899 hasConceptScore W4290047899C135558025 @default.