...
首页> 外文期刊>Marine Technology Society journal >Advances in the Ocean Observing System in the Gulf of Maine: Technical Capabilities and Scientific Results
【24h】

Advances in the Ocean Observing System in the Gulf of Maine: Technical Capabilities and Scientific Results

机译:缅因州海湾海洋观测系统的进展:技术能力和科学成果

获取原文
获取原文并翻译 | 示例
           

摘要

The Northeastern Regional Association of Coastal Ocean Observing Systems (NERACOOS), which began in 2008, includes the University of Maine's comprehensive data buoy array in the Gulf of Maine (GoM). The University of Maine buoy system started in 2001 as part of the Gulf of Maine Ocean Observing System (GoMOOS). The buoys provide a wide variety of oceanographic and marine meteorological data in real time to scientists, envircnmentalists, the National Weather Service, the U.S. Coast Guard and Canadian Coast Guard, educators, regional natural resource managers, the GoM fishing and maritime industries, and the general public. The GoM observing system is presently undergoing a redesign of the buoy control system to enhance remote access and reduce operational costs. The enhancements will allow remote trouble-shooting and reprogramming of the buoys and subsurface sensors. The system will also accommodate sensors from other research groups and allow them post-deployment control without assistance from our buoy group. Over the near-decade of operation, the system has revealed marked seasonal and interannual variability of the circulation and physical properties of the GoM. In the fall of 2004 to spring of 2005, Doppler currents measured an outflow of deep salty slope waters that suggest a regime shift in the inflow and outflow of transports through the Northeast Channel. During the same period, a salinity anomaly event lowered salinity throughout the GoM by roughly 2 psu by the winter of 2005. In following years, the previously unusual slope outflow and reduced salinity have often reoccurred.
机译:东北海岸海洋观测系统区域协会(NERACOOS)成立于2008年,包括缅因大学在缅因湾(GoM)的综合数据浮标阵列。缅因大学的浮标系统于2001年开始,是缅因湾海洋观测系统(GoMOOS)的一部分。浮标可为科学家,环境学家,国家气象局,美国海岸警卫队和加拿大海岸警卫队,教育工作者,区域自然资源管理者,GoM捕鱼和海事行业以及海洋学家实时提供各种海洋和海洋气象数据。公众。 GoM观测系统目前正在对浮标控制系统进行重新设计,以增强远程访问并降低运营成本。增强功能将允许对浮标和地下传感器进行远程故障排除和重新编程。该系统还将容纳来自其他研究小组的传感器,并允许它们在部署后进行控制,而无需我们的浮标小组的帮助。在近十年的运行中,该系统显示了GoM的流通和物理特性的明显季节性和年度变化。在2004年秋季至2005年春季,多普勒洋流测得深层咸斜坡水的流出,这表明通过东北海峡的运输的流入和流出均发生了变化。在同一时期,到2005年冬季,盐度异常事件使整个GoM的盐度降低了约2 psu。在随后的几年中,以前异常的斜坡外流和盐度降低常常再次发生。

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