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Object-Based Modeling of Marine Phytoplankton and Seaweeds  id статьи: 718
Тип публикации
статья в журнале
Язык
En
Журнал
JOURNAL OF MARINE SCIENCE AND ENGINEERING

ISSN:2077-1312
eSSN:2077-1312
Год
2020
Выходные данные
том 8
выпуск 9
страницы № 685
Авторы
EDN
Абстракт
The aim of this work is to simulate the dissolved oxygen deficiency in the coastal zone that sometimes occurs during the summer water stagnation. We consider the main components of the marine ecosystem that play a major role in such processes-concentrations of nitrogen, phosphorus and sulfur compounds in water, dissolved and particular organic matter, oxygen, biomass of phytoplankton and macroalgae. We use the object-based modeling technique to simulate the spatio-temporal variability of the ecosystem in a 2D domain. In comparison with the traditional approach, it gives several advantages: more precise parametrizations of the biological components' functionality; higher spatial resolution; possibility to account for the individual variability of hydrobionts; easy inclusion of an arbitrary number of species in the model. Our model included three species of phytoplankton and seven macroalgae. Individual-based modules control their functionality. Species of phytoplankton and seaweeds chosen for simulations are typical for the coastal zone of Crimea. In the simulations, we study the contribution of micro- and macroalgae to the processes of self-purification of a semi-enclosed basin in case of a sharp increase in nutrient concentration in water.
Ключевые слова
coastal ecosystem, dissolved oxygen, self-purification, metabolic processes, phytobenthos, phytoplankton
Дата занесения
2020-11-25 14:43:18
Scopus
Статус есть
Квартиль Q2
WoS
Статус есть
Квартиль Q2
РИНЦ
Статус нет
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Финансирование:

18-05-80028

0827-2018-0004
Комплексные междисциплинарные исследования океанологических процессов, определяющих функционирование и эволюцию экосистем прибрежных зон Черного и Азовского морей