Thematic mapper analysis of Nantucket's nearshore marine environment

K. Richardson, N. West
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引用次数: 1

Abstract

While significant advances have been made with respect to the management and planning of the nation's coastal and nearshore marine environment, landcover information from both the terrestrial and marine portion of the coastal zone has often been difficult to obtain. The fully operational TM sensor onboard Landsat V which was placed in orbit late in 1984 has proved particularly useful for coastal landcover applications. This paper reports on an analysis of Nantucket Island, Massachusetts. The fine resolution (1/4 acre) and the addition of three electromagnetic bands greatly enhances the interpretive capabilities of the Landsat system, especially in the shallow nearshore marine environment. Nantucket Island is the last remnant of a terminal moraine, whose southern and western shores have been eroding since the end of the Pleistocene period. With a projected increase in sea level, these processes are likely to continue, perhaps even increase. Sand, silt and gravel are constantly being transported, trapped, reworked and redeposited by some of the strongest tidal currents in North America. This results in constantly changing banks, reefs, spits and barriers. The fine resolution and the frequency of orbital overpass make scenes from Landsat's TM sensor a particularly valuable coastal surveillance tool.
南塔开特岛近岸海洋环境专题制图分析
虽然在国家沿海和近岸海洋环境的管理和规划方面取得了重大进展,但沿海地区陆地和海洋部分的土地覆盖资料往往难以获得。1984年晚些时候在轨道上放置的陆地卫星5号上的全面操作TM传感器已证明对沿海土地覆盖应用特别有用。本文报道了对马萨诸塞州楠塔基特岛的分析。较好的分辨率(1/4 acre)和三个电磁波段的增加大大提高了Landsat系统的解译能力,特别是在浅水近岸海洋环境中。南塔开特岛是终末冰碛的最后遗迹,其南部和西部海岸自更新世末期以来一直受到侵蚀。随着海平面预计的上升,这些过程可能会继续,甚至可能增加。在北美一些最强的潮汐流的作用下,沙子、淤泥和砾石不断地被运输、困住、重新加工和重新沉积。这导致了不断变化的河岸、珊瑚礁、吐槽和屏障。高分辨率和高频率的轨道立交桥使得陆地卫星TM传感器的场景成为一种特别有价值的海岸监视工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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