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Geomorphic consequences of wave clim...
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Johnson, Jennifer Mason.
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Geomorphic consequences of wave climate alteration along cuspate coastlines.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Geomorphic consequences of wave climate alteration along cuspate coastlines./
作者:
Johnson, Jennifer Mason.
面頁冊數:
71 p.
附註:
Source: Masters Abstracts International, Volume: 52-02.
Contained By:
Masters Abstracts International52-02(E).
標題:
Geomorphology. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1545090
ISBN:
9781303378430
Geomorphic consequences of wave climate alteration along cuspate coastlines.
Johnson, Jennifer Mason.
Geomorphic consequences of wave climate alteration along cuspate coastlines.
- 71 p.
Source: Masters Abstracts International, Volume: 52-02.
Thesis (M.S.)--The University of North Carolina at Chapel Hill, 2013.
Cuspate coastlines are particularly sensitive to changes in wave climate and represent the best type of coastline for detecting initial responses to changing wave conditions. Previous work indicates that Capes Hatteras and Lookout in North Carolina---which are largely unaffected by shoreline stabilization efforts---have become increasingly asymmetric in shape in response to changes in Atlantic wave climate. Using shoreline change observations, nourishment data, wave climate data and model experiments, we find similar responses to wave climate change along Cape Fear, NC, discernible via temporal and spatial patterns of beach nourishment. Analyses of cuspate features in areas where the change in wave climate has been less pronounced (e.g., Fishing Point, MD & VA) or where local geology likely controls coastline shape (i.e., Cape Canaveral, FL), suggest that coastline shape changes in response to shifting wave climate are currently limited to sandy wave-dominated coastlines where wave climate changes are most pronounced.
ISBN: 9781303378430Subjects--Topical Terms:
542703
Geomorphology.
Geomorphic consequences of wave climate alteration along cuspate coastlines.
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Cuspate coastlines are particularly sensitive to changes in wave climate and represent the best type of coastline for detecting initial responses to changing wave conditions. Previous work indicates that Capes Hatteras and Lookout in North Carolina---which are largely unaffected by shoreline stabilization efforts---have become increasingly asymmetric in shape in response to changes in Atlantic wave climate. Using shoreline change observations, nourishment data, wave climate data and model experiments, we find similar responses to wave climate change along Cape Fear, NC, discernible via temporal and spatial patterns of beach nourishment. Analyses of cuspate features in areas where the change in wave climate has been less pronounced (e.g., Fishing Point, MD & VA) or where local geology likely controls coastline shape (i.e., Cape Canaveral, FL), suggest that coastline shape changes in response to shifting wave climate are currently limited to sandy wave-dominated coastlines where wave climate changes are most pronounced.
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