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Titlebook: Remote Sensing of the Asian Seas; Vittorio Barale,Martin Gade Book 2019 Springer International Publishing AG, part of Springer Nature 2019

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The Sea of Okhotsk: Scientific Applications of Remote Sensing surface temperature, surface wind speed, sea ice parameters, atmospheric water vapor content, cloud liquid water content, as well as allows mapping of current and eddy boundaries, the surface manifestations of the internal waves, bottom topography signatures, the organized wind speed variations in the marine boundary layer of the atmosphere.
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Book 2019eas. The Arctic Ocean shelf seas off Siberia; the sheltered basins along the Pacific Ocean’s western rim; the coastal seas of the northernmost Indian Ocean, including the semi-enclosed Red Sea and Persian Gulf; the Caspian Sea, the remnants of the Aral Sea and a score of brackish or freshwater lakes
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A Historical Overview of Remote Sensing of the Asian Seasce, but also to gain deeper insight into specific processes in the marine environment. While most recent sensors and applications will be described in the following book chapters, here, we focus on historical sensors and missions, and we provide some examples of Remote Sensing of the Asian Seas, in the early days of spaceborne missions.
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A Historical Overview of Remote Sensing of the Asian Seas observation (EO) missions had started in the 1960s, the first remote sensing satellite observing, among others, the Asian Seas were launched in the 1970s. Nowadays, a wealth of earth-orbiting satellites is in place, carrying a variety of sophisticated sensors that can be used for routine surveillan
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An Introduction to Optical Remote Sensing of the Asian Seas: Chinese Dedicated Satellites and Data Processing techniques in China. Two satellites (HY-1A and HY-1B) have already been launched as part of the Chinese long-term (2015–2025) ocean colour observation program, which foresees the launch of more than 15 orbital platforms. Data processing techniques, including the development of a vector rad
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Sea-Ice Parameters from Satellite Remote Sensingres facing the Arctic Ocean. Long-term year-round, sustained monitoring of this sea-ice cover is, on the one hand, crucial for shipping, off-shore activities, near-coastal transport, and marine safety. On the other hand, it is crucial to better understand recent and predict future sea-ice cover chan
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Ocean Colour Remote Sensing in the Laptev Seasummer deliver large volumes of terrestrial matter into the Arctic shelf seas. In this chapter we investigate the applicability of Ocean Colour Remote Sensing during the ice-free summer season in the Siberian Laptev Sea region. We show that the early summer river peak discharge may be traced using r
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