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タイトル
和文: 
英文:A high-accuracy map of global terrain elevations 
著者
和文: 山崎大, 池嶋大樹, 田渡竜乃介, 山口 智宏, Fiachra O'Loughlin, Jeffery C Neal, Christopher C Sampson, 鼎信次郎, Paul D Bates.  
英文: Dai Yamazaki, Daiki Ikeshima, Ryunosuke Tawatari, Tomohiro Yamaguchi, O'Loughlin Fiachra, Neal Jeffery C, Sampson Christopher C, Shinjiro Kanae, Bates Paul D.  
言語 English 
掲載誌/書名
和文: 
英文:Geophysical Research Letters 
巻, 号, ページ Volume 44    11    Page 5844-5853
出版年月 2017年6月 
出版者
和文: 
英文:AGU Publications 
会議名称
和文: 
英文: 
開催地
和文: 
英文: 
公式リンク http://onlinelibrary.wiley.com/doi/10.1002/2017GL072874/full
 
DOI https://doi.org/10.1002/2017GL072874
アブストラクト Spaceborne digital elevation models (DEMs) are a fundamental input for many geoscience studies, but they still include nonnegligible height errors. Here we introduce a high-accuracy global DEM at 3″ resolution (~90 m at the equator) by eliminating major error components from existing DEMs. We separated absolute bias, stripe noise, speckle noise, and tree height bias using multiple satellite data sets and filtering techniques. After the error removal, land areas mapped with ±2 m or better vertical accuracy were increased from 39% to 58%. Significant improvements were found in flat regions where height errors larger than topography variability, and landscapes such as river networks and hill-valley structures, became clearly represented. We found the topography slope of previous DEMs was largely distorted in most of world major floodplains (e.g., Ganges, Nile, Niger, and Mekong) and swamp forests (e.g., Amazon, Congo, and Vasyugan). The newly developed DEM will enhance many geoscience applications which are terrain dependent.

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