利用ROMS-NPZD接合模型的韩半岛周边海域表层营养盐及氯气的季节变动性

Q4 Engineering
이준호, 김태훈, 문재홍
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引用次数: 1

摘要

最近,科学和商业领域的社区对物理-生物海洋建模系统的兴趣日益浓厚。在本文中,我们提出了西北太平洋边缘海的物理-生物耦合模型的初步结果。海洋环流组件是区域海洋模拟系统(ROMS)的实现,低营养级生态系统组件是营养物-浮游植物-浮游动物-碎屑(NPZD)模式。ROMSNPZD耦合系统的分辨率为25 km,由气候大气数据驱动,预测硝酸盐、浮游植物、浮游动物和碎屑的物理变量和浓度。模式结果与遥感海表温度和叶绿素以及气候海表盐度和硝酸盐进行了比较。该模型充分再现了观测到的硝酸盐和叶绿素浓度的空间分布和季节变化以及物理变量,在东海(ES)和黑潮/亲潮延伸区(KOE)具有较高的相关性,而在黄海(YS)和东海(ECS)具有相对较低的相关性。尽管在生物成分中发现了一些缺陷,例如对ES和KOE/ YS和ECS中浮游植物繁殖强度的高估/低估,但我们的系统证明了该模型在物理-生物过程中捕获和记录主要季节性变化的能力,这为更好地理解这些过程并做出更好的预测提供了希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ROMS-NPZD 접합모델을 이용한 한반도 주변해역의 표층 영양염 및 클로로필의 계절변동성
Recently, there has been a growing interest in physical-biological ocean-modeling systems by communities in the fields of science and business. In this paper, we present preliminary results from a coupled physical-biological model for the Northwestern Pacific marginal seas. The ocean circulation component is an implementation of the Regional Ocean Modeling System (ROMS), and the lower trophic level ecosystem component is a Nutrient-Phytoplankton-Zooplankton-Detritus (NPZD) model. The ROMSNPZD coupled system, with a 25 km resolution, is forced by climatological atmospheric data and predicts the physical variables and concentrations of nitrate, phytoplankton, zooplankton, and detritus. Model results are compared with remote-sensed sea surface temperature and chlorophyll, and with climatological sea surface salinity and nitrate. Our model adequately reproduces the observed spatial distribution and seasonal variability of nitrate and chlorophyll concentrations as well as physical variables, showing a high correlation in the East Sea (ES) and Kuroshio/Oyashio Extension (KOE) region but relatively low correlation in the Yellow Sea (YS) and East China Sea (ECS). Although some deficiencies were found in the biological components, such as the over/underestimation of the intensity of phytoplankton blooms in the ES and KOE/ the YS and ECS, our system demonstrates the capability of the model to capture and record dominant seasonal variability in physical-biological processes and this holds out the promise of coming to a better understanding of such processes and making better predictions .
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来源期刊
Ocean and Polar Research
Ocean and Polar Research Engineering-Ocean Engineering
CiteScore
0.80
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0.00%
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