中国海阳核电站取水口海蜇分布特征及环境因素分析

Biology Pub Date : 2024-06-12 DOI:10.3390/biology13060433
Yunpeng Song, Tiantian Wang, Minsi Xiong, Shenglong Yang, Heng Zhang, Jie Ying, Yongchuang Shi, Guoqing Zhao, Xiumei Zhang, Xiaodan Liu, Cankun Lin, Zuli Wu, Yumei Wu
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引用次数: 0

摘要

近年来,中国近岸海域频繁爆发海蜇疫情,对核电站冷却水取水口及附近生态系统的结构、功能、安全和经济造成了严重影响。因此,本研究重点关注中国近岸海域,尤其是山东半岛附近海域的水母暴发情况。通过分析水母丰度数据,综合环境因素的广义相加模型揭示了温度和盐度对水母密度的巨大影响。结果表明,水母密度在不同年份存在差异,沿海地区水母密度较高。该模型解释了 42.2% 的变异,突出了温度(20-26 °C)与水母密度之间的正相关性,以及盐度(27.5-29‰)的影响。此外,洋流在近岸水母聚集中也起着重要作用,洋流与地点坐标之间存在相关性。本研究旨在调查水母群与环境因素之间的关系。研究结果为预防和控制核电站冷却系统堵塞提供数据支持,为核电站实施监测措施提供数据依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Distribution Characteristics of Jellyfish and Environmental Factors in the Seawater Intake Area of the Haiyang Nuclear Power Plant in China
In recent years, there have been frequent jellyfish outbreaks in Chinese coastal waters, significantly impacting the structure, functionality, safety, and economy of nuclear power plant cooling water intake and nearby ecosystems. Therefore, this study focuses on jellyfish outbreaks in Chinese coastal waters, particularly near the Shandong Peninsula. By analyzing jellyfish abundance data, a Generalized Additive Model integrating environmental factors reveals that temperature and salinity greatly influence jellyfish density. The results show variations in jellyfish density among years, with higher densities in coastal areas. The model explains 42.2% of the variance, highlighting the positive correlation between temperature (20–26 °C) and jellyfish density, as well as the impact of salinity (27.5–29‰). Additionally, ocean currents play a significant role in nearshore jellyfish aggregation, with a correlation between ocean currents and site coordinates. This study aims to investigate the relationship between jellyfish blooms and environmental factors. The results obtained from the study provide data support for the prevention and control of blockages in nuclear power plant cooling systems, and provide a data basis for the implementation of monitoring measures in nuclear power plants.
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