首页> 外文会议>SPIE Defense + Security Conference >Interannual variability in the Indian River Lagoon, Florida, measured by a network of environmental sensors
【24h】

Interannual variability in the Indian River Lagoon, Florida, measured by a network of environmental sensors

机译:通过环境传感器网络测量的佛罗里达州印第安河泻湖的年际变化

获取原文

摘要

The Indian River Lagoon Observatory (IRLO) is investigating ecological relationships in the Indian River Lagoon (IRL) and how they are impacted by natural and human-induced stressors. An important IRLO component is a network of advanced observing stations: the Indian River Lagoon Observatory Network of Environmental Sensors (IRLON). IRLON has 10 sites in the IRL and St. Lucie Estuary (SLE) to provide real-time, high-accuracy, and high-resolution water quality and weather data through an interactive website. This network enables researchers to follow environmental changes in the IRL, assist resource and planning managers to make informed decisions, model and correlate environmental data to biological, chemical and physical phenomena, and contribute to education and public outreach on the lagoon. Here we contrast two years of water quality conditions in the IRL and SLE. 2016 was a very "'wet" year, including nine months of freshwater releases from Lake Okeechobee, which resulted in cyanobacteria blooms, and the nearby passage of Hurricane Matthew, which caused much shorter-term impacts in water quality. 2017 was a "dry" year, a significant drought early in the year, and major water quality parameters were substantially different than in 2016. until the nearby passage of Hurricane Irma. These high-frequency, continuous observatory data enable better quantification and modeling of relationships between environmental factors and biological processes in estuaries with tremendous climate-related interannual variability. This technology enables scientists, managers, educators, students, and the public to directly observe both long-term ecosystem changes and those driven by events, such as freshwater discharges, droughts, storms, and algal blooms.
机译:印度河泻湖天文台(IRLO)正在调查印度河泻湖(IRL)中的生态关系,以及它们如何受到自然和人为压力源的影响。 IRLO的重要组成部分是高级观测站网络:印度河泻湖环境传感器天文台网络(IRLON)。 IRLON在IRL和圣露西河口(SLE)中有10个站点,可通过一个交互式网站提供实时,高精度和高分辨率的水质和天气数据。该网络使研究人员能够追踪IRL中的环境变化,协助资源和计划管理者做出明智的决定,对环境数据与生物,化学和物理现象进行建模和关联,并为泻湖的教育和公众宣传做出贡献。在这里,我们对比了IRL和SLE中两年的水质状况。 2016年是非常“潮湿”的一年,其中包括奥基乔比湖释放的九个月淡水,导致蓝细菌大量繁殖,以及附近的马修飓风通过,这对水质造成了更短期的影响。 2017年是“干旱”年,年初早些时候发生了严重干旱,主要水质参数与2016年大不相同。这些高频率,连续的观测数据可以更好地量化和建模河口中环境因素与生物过程之间的关系,且与气候有关的年际变化很大。这项技术使科学家,管理人员,教育者,学生和公众能够直接观察长期的生态系统变化以及由淡水排放,干旱,暴风雨和藻华等事件驱动的变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号