Empirical relations to estimate underwater PAR attenuation in San Quintín Bay using Secchi depth and horizontal sighting range

Empirical relationships to estimate vertical attenuation coefficient of photosynthetically available radiation (KPAR) usingSecchi disk, vertical black disk, and horizontal sighting ranges for San Quintín Bay, Baja California, were developed.Radiometric PAR profiles were used to calculate KPAR. Verti...

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Detalles Bibliográficos
Autores: Martín A. Montes-Hugo, Saúl Álvarez-Borrego
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2005
País:México
Institución:Centro de Investigación Científica y de Educación Superior de Ensenada
Repositorio:Redalyc-CICESE
OAI Identifier:oai:redalyc.org:48031408
Acceso en línea:https://www.redalyc.org/articulo.oa?id=48031408
Access Level:acceso abierto
Palabra clave:Ciencias de la Tierra
Secchi disk
PAR attenuation
Baja California
coastal lagoons
horizontal sighting range
Descripción
Sumario:Empirical relationships to estimate vertical attenuation coefficient of photosynthetically available radiation (KPAR) usingSecchi disk, vertical black disk, and horizontal sighting ranges for San Quintín Bay, Baja California, were developed.Radiometric PAR profiles were used to calculate KPAR. Vertical (ZD) and horizontal (HS) sighting ranges were measuredwith white (Secchi depth or ZSD, HSW) and black (ZBD, HSB) targets. The empirical power models KPAR = 1.48 ZSD–1.16, KPAR =0.87 ZBD–1.52, KPAR = 0.54 HSW–0.65 and KPAR = 0.53 HSB–0.92 were developed for the corresponding relationships. The parametersof these models are not significantly different from those of models developed for Punta Banda Estuary, another Baja Californialagoon, with the exception of the one for the KPAR-HSW relationship. Also, parameters of the KPAR-ZSD model for San Quintín Bayand Punta Banda Estuary are not significantly different from those developed for coastal waters near Santa Barbara, California. Aset of general models is proposed that may apply to coastal water bodies of northwestern Baja California and southern California(KPAR = 1.45 ZSD–1.10, KPAR = 0.92 ZBD–1.45, and KPAR = 0.70 HSB–1.10). While this approach may be universal, more data are neededto explore the variability of the parameters between different water bodies.