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Citizen Bio-Optical Observations from Coast- and Ocean and Their Compatibility with Ocean Colour Satellite Measurements

机译:沿海和海洋的公民生物光学观测及其与海洋彩色卫星测量的兼容性

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Marine processes are observed with sensors from both the ground and space over large spatio-temporal scales. Citizen-based contributions can fill observational gaps and increase environmental stewardship amongst the public. For this purpose, tools and methods for citizen science need to (1) complement existing datasets; and (2) be affordable, while appealing to different user and developer groups. In this article, tools and methods developed in the 7th Framework Programme of European Union (EU FP 7) funded project Citclops (citizens’ observatories for coast and ocean optical monitoring) are reviewed. Tools range from a stand-alone smartphone app to devices with Arduino and 3-D printing, and hence are attractive to a diversity of users; from the general public to more specified maker- and open labware movements. Standardization to common water quality parameters and methods allows long-term storage in regular marine data repositories, such as SeaDataNet and EMODnet, thereby providing open data access. Due to the given intercomparability to existing remote sensing datasets, these tools are ready to complement the marine datapool. In the future, such combined satellite and citizen observations may set measurements by the engaged public in a larger context and hence increase their individual meaning. In a wider sense, a synoptic use can support research, management authorities, and societies at large.
机译:在大的时空尺度上,地面和空间传感器都可以观测到海洋过程。基于公民的贡献可以填补观察上的空白,并提高公众的环境管理能力。为此,公民科学的工具和方法需要(1)补充现有数据集; (2)价格合理,同时吸引不同的用户和开发人员群体。在本文中,将回顾由欧盟第七框架计划(EU FP 7)资助的Citclops(公民海岸和海洋光学观测站)项目开发的工具和方法。工具范围很广,从独立的智能手机应用程序到具有Arduino和3-D打印的设备,因此吸引了众多用户。从普通大众到更特定的制造商和开放式实验室用具运动。通用水质参数和方法的标准化允许长期存储在常规海洋数据存储库中,例如SeaDataNet和EMODnet,从而提供开放数据访问。由于与现有遥感数据集具有给定的可比性,因此这些工具随时可以补充海洋数据池。将来,这种结合的卫星和公民观测可能会在更大的范围内设置参与公众的测量值,从而增加其个体意义。从广义上讲,天气用途可以为研究,管理当局和整个社会提供支持。

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