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Advancing Observation of Ocean Biogeochemistry, Biology, and Ecosystems with Cost-effective In Situ Sensing Technologies

机译:利用经济高效的原位传感技术促进海洋生物地球化学,生物学和生态系统的观察

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Advancing our understanding of ocean biogeochemistry, biology, and ecosystems relies on the ability to make observations both in the ocean and at the critical boundaries between the ocean and other earth systems at relevant spatial and temporal scales. After decades of advancement in ocean observing technologies, one of the key remaining challenges is how to cost-effectively make measurements at the increased resolution necessary for illuminating complex system processes and rapidly evolving changes. In recent years, biogeochemical and biological in situ sensors have been emerging that are three-fold or more lower in cost than established technologies,; cost reduction for many biological in situ sensors has also been significant, although the absolute costs are still relatively high. with cCost savings in these advancements has been driven by miniaturization, new methods of packaging, and lower-cost mass-produced components such as electronics and materials. Recently, field projects have demonstrated the potential for sciencequality data collection via large-scale deployments using cost-effective sensors and deployment strategies. In the coming decade, it is envisioned that ocean biogeochemistry and biology observations will be revolutionized by continued innovation in sensors with increasingly low price points and the scale-up of deployments of these in situ sensor technologies. The goal of this study is therefore to: (1) provide a review of existing sensor technologies that are already achieving costeffectiveness compared with traditional instrumentation, (2) present case studies of cost-effective in situ deployments that can provide insight into methods for bridging observational gaps, (3) identify key challenge areas where progress in cost reduction is lagging, and (4) present a number of potentially transformative directions for future ocean biogeochemical and biological studies using cost-effective technologies and deployment strategies.
机译:增进我们对海洋生物地球化学,生物学和生态系统的理解,取决于在相关的时空尺度上在海洋中以及在海洋与其他地球系统之间的临界边界处进行观测的能力。在海洋观测技术发展了数十年之后,主要的挑战之一是如何以经济有效的方式以提高分辨率的成本进行测量,以阐明复杂的系统过程和迅速变化的变化。近年来,出现了生物地球化学和生物原位传感器,其成本比现有技术低三倍或更多。尽管绝对成本仍然很高,但许多生物原位传感器的成本降低也很重要。小型化,新的包装方法以及低成本的批量生产组件(如电子产品和材料)推动了这些进步中的成本节省。最近,现场项目展示了使用具有成本效益的传感器和部署策略通过大规模部署进行科学质量数据收集的潜力。可以预见的是,在未来十年中,海洋生物地球化学和生物学观测将因价格不断降低的传感器的不断创新以及这些原位传感器技术的部署规模的扩大而发生革命性变化。因此,本研究的目标是:(1)对与传统仪器相比已经实现成本效益的现有传感器技术进行回顾,(2)对具有成本效益的原位部署进行案例研究,从而可以深入了解桥接方法观测上的差距,(3)确定成本降低进展滞后的关键挑战领域,(4)为使用成本效益高的技术和部署策略的未来海洋生物地球化学和生物学研究提供许多潜在的变革方向。

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