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Wave Sensor Technologies, St Petersburg, Florida, March 7-9, 2007: workshop proceedings

机译:2007年3月7日至9日,佛罗里达州圣彼得堡,波传感器技术公司:研讨会记录

摘要

The Alliance for Coastal Technologies (ACT) convened a workshop on "Wave Sensor Technologies" in St. Petersburg, Florida on March 7-9, 2007, hosted by the University of South Florida (USF) College of Marine Science, an ACT partner institution. The primary objectives of thisudworkshop were to: 1) define the present state of wave measurement technologies, 2) identify the major impediments to their advancement, and 3) make strategic recommendations for future development and on the necessary steps to integrate wave measurement sensors into operationaludcoastal ocean observing systems. The participants were from various sectors, including research scientists, technology developers and industry providers, and technology users, such as operational coastal managers and coastal decision makers.udWaves consistently are ranked as a critical variable for numerous coastal issues, from maritime transportation to beach erosion to habitat restoration. For the purposes of this workshop, the participants focused on measuring "wind waves" (i.e., waves on the water surface, generated by theudwind, restored by gravity and existing between approximately 3 and 30-second periods), although it was recognized that a wide range of both forced and free waves exist on and in the oceans. Also, whereas the workshop put emphasis on the nearshore coastal component of wave measurements, the participants also stressed the importance of open ocean surface waves measurement. Wave sensor technologies that are presently available for both environments include bottom-mounted pressure gauges, surface following buoys, wave staffs, acoustic Doppler current profilers, and shore-based remote sensing radar instruments.udOne of the recurring themes of workshop discussions was the dichotomous nature of wave data users. The two separate groups, open ocean wave data users and the nearshore/coastal wave data users, have different requirements. Generally, the user requirements increase both in spatial/temporal resolution and precision as one moves closer to shore. Most ocean going mariners areudadequately satisfied with measurements of wave period and height and a wave general direction.udHowever, most coastal and nearshore users require at least the first five Fourier parameters ("First 5"): wave energy and the first four directional Fourier coefficients. Furthermore, wave research scientists would like sensors capable of providing measurements beyond the first four Fourier coefficients. It was debated whether or not high precision wave observations in one location canudtake the place of a less precise measurement at a different location. This could be accomplished by advancing wave models and using wave models to extend data to nearby areas. However, the consensus was that models are no substitution for in situ wave data.[PDF contains 26 pages]
机译:沿海技术联盟(ACT)于2007年3月7日至9日在佛罗里达州圣彼得堡召开了有关“波传感器技术”的研讨会,该研讨会由ACT合作机构南佛罗里达大学(USF)海洋科学学院主办。该 udworkshop的主要目标是:1)定义波浪测量技术的现状,2)识别其发展的主要障碍,3)为未来的发展以及集成波浪测量传感器的必要步骤提出战略建议进入业务沿海海洋观测系统。参与者来自各个领域,包括研究科学家,技术开发人员和行业提供者以及技术用户,例如沿海运营经理和沿海决策者。 udWave一直被视为从海上运输到海滩的众多沿海问题的关键变量。侵蚀到生境恢复。就本讲习班而言,参与者着重于测量“风浪”(即,由“旋风”产生,在重力作用下恢复并存在于大约3至30秒的时间段内的水面上的浪),尽管已被公认海洋中和海洋中都存在着各种各样的强迫波和自由波。同样,尽管研讨会着重于波浪测量的近岸沿海部分,但与会人员也强调了开放海表波浪测量的重要性。当前在这两种环境中均可使用的波传感器技术包括底部安装的压力表,浮标,浮标,波谱仪,声学多普勒电流剖面仪和岸基遥感雷达仪器。 udary讨论的主题之一是二分法波浪数据用户的性质。公开海浪数据用户和近岸/沿海海浪数据用户这两个不同的组有不同的要求。通常,随着人们靠近海岸,用户需求在空间/时间分辨率和精度上都提高了。大多数海洋水手对波浪周期和高度以及波浪总方向的测量都非常满意。 ud但是,大多数沿海和近岸用户至少需要前五个傅里叶参数(“前五个”):波浪能量和前四个定向傅立叶系数。此外,波浪研究科学家希望传感器能够提供超出前四个傅里叶系数的测量值。在一个位置上进行高精度波观测是否可以取代在另一位置上进行较不精确测量的问题,这是有争议的。这可以通过推进波浪模型并使用波浪模型将数据扩展到附近区域来实现。但是,共识是模型不能替代原位波数据。[PDF包含26页]

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