Matches in SemOpenAlex for { <https://semopenalex.org/work/W1992978326> ?p ?o ?g. }
- W1992978326 endingPage "77" @default.
- W1992978326 startingPage "66" @default.
- W1992978326 abstract "Abstract The vertically generalized production model (VGPM), which was designed for open ocean waters ( Behrenfeld and Falkowski, 1997a ; henceforth BF), was evaluated using in situ measurements of primary productivity (PP) in the characteristically turbid coastal waters of Ariake Bay, southwestern Japan, to develop a regionally modified version of the model. The euphotic depth (Zeu)-integrated PP (IPP) calculated from the VGPM using in situ chlorophyll a (Chl a) and sea surface temperature (SST) was significantly overestimated (by factors of 2–3), but 52% of the observed variability was explained. The weak correlation could have partially resulted from overestimations by the sub-models embedded in the original VGPM model for estimation of Zeu ( Morel and Berthon, 1989 ; henceforth MB) and the optimal Chl a-normalized PP ( p opt B ). The sub-model estimates of p opt B and Zeu with in situ p opt B and Zeu showed significant improvement, accounting for 84% of the variability and causing less overestimation. Zeu was the most important parameter influencing the modeled IPP variation in Ariake Bay. Previous research suggested that the Zeu model, which was based on surface Chl a, overestimated in situ Zeu by a factor of 2–3, resulting in weak correlation between the modeled and in situ IPP. The Zeu sub-model was not accurate in the present study area because it was basically developed for clear (case 1) waters. A better estimation of Zeu could be obtained from the in situ remote sensing reflectance (Rrs) using a quasi-analytical algorithm (QAA) in this turbid water ecosystem. Among the parameters of PP models, p opt B is conventionally considered the most important. However, in this study p opt B was of secondary importance because the contribution of p opt B to the variation in modeled IPP was less than the contribution of Zeu. The modeled and in situ p opt B were weakly correlated with 50% of the data points that overestimated the in situ values. The estimation of Chl a was improved by optimizing the Chl a algorithm with in situ Rrs data. Incorporating the QAA-based Zeu and the optimized Chl a and constant (median) p opt B value led to improved performance of the VGPM for the study area. Thus, even though the VGPM is a global open ocean model, when coupled with turbid water algorithms for Zeu and Chl a and constant (median) p opt B , it provided realistic estimates of IPP in the turbid water ecosystem of Ariake Bay." @default.
- W1992978326 created "2016-06-24" @default.
- W1992978326 creator A5015515695 @default.
- W1992978326 creator A5026812279 @default.
- W1992978326 creator A5042007470 @default.
- W1992978326 creator A5070720248 @default.
- W1992978326 creator A5082585412 @default.
- W1992978326 date "2012-01-01" @default.
- W1992978326 modified "2023-10-14" @default.
- W1992978326 title "Modification of the vertically generalized production model for the turbid waters of Ariake Bay, southwestern Japan" @default.
- W1992978326 cites W1533208962 @default.
- W1992978326 cites W1546484591 @default.
- W1992978326 cites W1964617419 @default.
- W1992978326 cites W1968227579 @default.
- W1992978326 cites W1969014004 @default.
- W1992978326 cites W1971834216 @default.
- W1992978326 cites W1976554399 @default.
- W1992978326 cites W1976659247 @default.
- W1992978326 cites W1982281954 @default.
- W1992978326 cites W1986509023 @default.
- W1992978326 cites W1990531989 @default.
- W1992978326 cites W1991421453 @default.
- W1992978326 cites W1995811252 @default.
- W1992978326 cites W1996239808 @default.
- W1992978326 cites W1996864021 @default.
- W1992978326 cites W1997339436 @default.
- W1992978326 cites W1998884236 @default.
- W1992978326 cites W2001161096 @default.
- W1992978326 cites W2005966494 @default.
- W1992978326 cites W2007144328 @default.
- W1992978326 cites W2009383769 @default.
- W1992978326 cites W2021968333 @default.
- W1992978326 cites W2025127104 @default.
- W1992978326 cites W2025492456 @default.
- W1992978326 cites W2027797921 @default.
- W1992978326 cites W2028722328 @default.
- W1992978326 cites W2028921645 @default.
- W1992978326 cites W2029222794 @default.
- W1992978326 cites W2032810031 @default.
- W1992978326 cites W2033769810 @default.
- W1992978326 cites W2051663919 @default.
- W1992978326 cites W2053687336 @default.
- W1992978326 cites W2054845964 @default.
- W1992978326 cites W2054863361 @default.
- W1992978326 cites W2064173966 @default.
- W1992978326 cites W2064781222 @default.
- W1992978326 cites W2065141406 @default.
- W1992978326 cites W2067538691 @default.
- W1992978326 cites W2069845172 @default.
- W1992978326 cites W2076354687 @default.
- W1992978326 cites W2077873856 @default.
- W1992978326 cites W2081185045 @default.
- W1992978326 cites W2083910798 @default.
- W1992978326 cites W2085002785 @default.
- W1992978326 cites W2087975043 @default.
- W1992978326 cites W2093463708 @default.
- W1992978326 cites W2103813153 @default.
- W1992978326 cites W2108084128 @default.
- W1992978326 cites W2113977799 @default.
- W1992978326 cites W2119990922 @default.
- W1992978326 cites W2121226477 @default.
- W1992978326 cites W2140974905 @default.
- W1992978326 cites W2151458290 @default.
- W1992978326 cites W2157536504 @default.
- W1992978326 cites W2164917428 @default.
- W1992978326 cites W2167705142 @default.
- W1992978326 cites W2169787625 @default.
- W1992978326 cites W2170038491 @default.
- W1992978326 cites W2328099027 @default.
- W1992978326 cites W2335414707 @default.
- W1992978326 cites W339356786 @default.
- W1992978326 doi "https://doi.org/10.1016/j.ecss.2011.11.025" @default.
- W1992978326 hasPublicationYear "2012" @default.
- W1992978326 type Work @default.
- W1992978326 sameAs 1992978326 @default.
- W1992978326 citedByCount "14" @default.
- W1992978326 countsByYear W19929783262016 @default.
- W1992978326 countsByYear W19929783262017 @default.
- W1992978326 countsByYear W19929783262019 @default.
- W1992978326 countsByYear W19929783262020 @default.
- W1992978326 countsByYear W19929783262021 @default.
- W1992978326 countsByYear W19929783262023 @default.
- W1992978326 crossrefType "journal-article" @default.
- W1992978326 hasAuthorship W1992978326A5015515695 @default.
- W1992978326 hasAuthorship W1992978326A5026812279 @default.
- W1992978326 hasAuthorship W1992978326A5042007470 @default.
- W1992978326 hasAuthorship W1992978326A5070720248 @default.
- W1992978326 hasAuthorship W1992978326A5082585412 @default.
- W1992978326 hasConcept C111368507 @default.
- W1992978326 hasConcept C115880899 @default.
- W1992978326 hasConcept C127313418 @default.
- W1992978326 hasConcept C187320778 @default.
- W1992978326 hasConcept C39432304 @default.
- W1992978326 hasConcept C505870484 @default.
- W1992978326 hasConcept C76886044 @default.
- W1992978326 hasConcept C86803240 @default.
- W1992978326 hasConceptScore W1992978326C111368507 @default.
- W1992978326 hasConceptScore W1992978326C115880899 @default.