Matches in SemOpenAlex for { <https://semopenalex.org/work/W1964315095> ?p ?o ?g. }
- W1964315095 endingPage "83" @default.
- W1964315095 startingPage "67" @default.
- W1964315095 abstract "MEPS Marine Ecology Progress Series Contact the journal Facebook Twitter RSS Mailing List Subscribe to our mailing list via Mailchimp HomeLatest VolumeAbout the JournalEditorsTheme Sections MEPS 248:67-83 (2003) - doi:10.3354/meps248067 Effect of eelgrass Zostera marina canopies on flow and transport Mohamed A. Abdelrhman* US Environmental Protection Agency Office Research and Development, National Health and Environmental Effects Research Laboratory, Atlantic Ecology Division, 27 Tarzwell Drive, Narragansett, Rhode Island 02882, USA *Email: abdelrhman.mohamed@epa.gov ABSTRACT: Ecological effects of the interaction between submerged aquatic vegetation and currents depend on the plants and their associated organisms as well as the large-scale transport of dissolved and suspended constituents near the canopy. Mathematical models for airflow within plant canopies were adapted to describe water flow through and above meadows of aquatic eelgrass Zostera marina. The resulting model provided the vertical distribution of velocity and shear in a water column within the meadow, and it was developed to automatically conserve flow within the canopy. It was tested and calibrated with data from the laboratory and the field, and it performed adequately. The flow profile was nearly exponential within the canopy and logarithmic above it. The model was used to study how the eelgrass canopy affected the horizontal transport of conservative constituents. The most important finding was that the vertical distribution of a constituent determines whether the canopy will reduce or enhance its transport through the water column. This effect has direct implications for transport of nonconservative constituents such as dissolved oxygen, nutrients, organic carbon, and particulate pollen, larvae, plankton, and detritus. It also has direct implications for biological issues such as vertical distributions of photosynthesis and of recruitment of organisms on blades of grass while they are exposed to varying degrees of currents and shear. KEY WORDS: Models · Eelgrass · Current profile · Transport Full text in pdf format PreviousNextExport citation RSS - Facebook - Tweet - linkedIn Cited by Published in MEPS Vol. 248. Online publication date: February 20, 2003 Print ISSN: 0171-8630; Online ISSN: 1616-1599 Copyright © 2003 Inter-Research." @default.
- W1964315095 created "2016-06-24" @default.
- W1964315095 creator A5073390360 @default.
- W1964315095 date "2003-01-01" @default.
- W1964315095 modified "2023-09-25" @default.
- W1964315095 title "Effect of eelgrass Zostera marina canopies on flow and transport" @default.
- W1964315095 cites W1550913548 @default.
- W1964315095 cites W1635960211 @default.
- W1964315095 cites W16642293 @default.
- W1964315095 cites W1964073130 @default.
- W1964315095 cites W1966204472 @default.
- W1964315095 cites W1966879755 @default.
- W1964315095 cites W1968810293 @default.
- W1964315095 cites W1971997642 @default.
- W1964315095 cites W1974169525 @default.
- W1964315095 cites W1985117521 @default.
- W1964315095 cites W1986270721 @default.
- W1964315095 cites W1986783416 @default.
- W1964315095 cites W1990147491 @default.
- W1964315095 cites W1991834864 @default.
- W1964315095 cites W2004409826 @default.
- W1964315095 cites W2007664364 @default.
- W1964315095 cites W2008615488 @default.
- W1964315095 cites W2008950209 @default.
- W1964315095 cites W2014159100 @default.
- W1964315095 cites W2014753847 @default.
- W1964315095 cites W2016595162 @default.
- W1964315095 cites W2022597165 @default.
- W1964315095 cites W2023355453 @default.
- W1964315095 cites W2027907772 @default.
- W1964315095 cites W2034232300 @default.
- W1964315095 cites W2038591650 @default.
- W1964315095 cites W2039803656 @default.
- W1964315095 cites W2040055553 @default.
- W1964315095 cites W2040177878 @default.
- W1964315095 cites W2041702671 @default.
- W1964315095 cites W2043017096 @default.
- W1964315095 cites W2048266952 @default.
- W1964315095 cites W2049000326 @default.
- W1964315095 cites W2054858236 @default.
- W1964315095 cites W2059205508 @default.
- W1964315095 cites W2065838074 @default.
- W1964315095 cites W2067429078 @default.
- W1964315095 cites W2069028098 @default.
- W1964315095 cites W2072694344 @default.
- W1964315095 cites W2072763669 @default.
- W1964315095 cites W2074672267 @default.
- W1964315095 cites W2084285667 @default.
- W1964315095 cites W2090894814 @default.
- W1964315095 cites W2103433145 @default.
- W1964315095 cites W2104806749 @default.
- W1964315095 cites W2109157582 @default.
- W1964315095 cites W2127932844 @default.
- W1964315095 cites W2131661438 @default.
- W1964315095 cites W2141758228 @default.
- W1964315095 cites W2150170357 @default.
- W1964315095 cites W2170934262 @default.
- W1964315095 cites W2178915036 @default.
- W1964315095 cites W2331596973 @default.
- W1964315095 cites W2474474275 @default.
- W1964315095 cites W560625596 @default.
- W1964315095 cites W2590119901 @default.
- W1964315095 doi "https://doi.org/10.3354/meps248067" @default.
- W1964315095 hasPublicationYear "2003" @default.
- W1964315095 type Work @default.
- W1964315095 sameAs 1964315095 @default.
- W1964315095 citedByCount "57" @default.
- W1964315095 countsByYear W19643150952012 @default.
- W1964315095 countsByYear W19643150952013 @default.
- W1964315095 countsByYear W19643150952014 @default.
- W1964315095 countsByYear W19643150952015 @default.
- W1964315095 countsByYear W19643150952016 @default.
- W1964315095 countsByYear W19643150952018 @default.
- W1964315095 countsByYear W19643150952019 @default.
- W1964315095 countsByYear W19643150952020 @default.
- W1964315095 countsByYear W19643150952021 @default.
- W1964315095 countsByYear W19643150952022 @default.
- W1964315095 countsByYear W19643150952023 @default.
- W1964315095 crossrefType "journal-article" @default.
- W1964315095 hasAuthorship W1964315095A5073390360 @default.
- W1964315095 hasBestOaLocation W19643150951 @default.
- W1964315095 hasConcept C101000010 @default.
- W1964315095 hasConcept C110872660 @default.
- W1964315095 hasConcept C122846477 @default.
- W1964315095 hasConcept C127313418 @default.
- W1964315095 hasConcept C187320778 @default.
- W1964315095 hasConcept C18903297 @default.
- W1964315095 hasConcept C2777400808 @default.
- W1964315095 hasConcept C2777858857 @default.
- W1964315095 hasConcept C2780695071 @default.
- W1964315095 hasConcept C39432304 @default.
- W1964315095 hasConcept C76886044 @default.
- W1964315095 hasConcept C86803240 @default.
- W1964315095 hasConceptScore W1964315095C101000010 @default.
- W1964315095 hasConceptScore W1964315095C110872660 @default.
- W1964315095 hasConceptScore W1964315095C122846477 @default.
- W1964315095 hasConceptScore W1964315095C127313418 @default.
- W1964315095 hasConceptScore W1964315095C187320778 @default.