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Morphology, sedimentology and stratigraphy of Korean tidal flats - Implications for future coastal managements

机译:韩国潮滩的形态,沉积学和地层学-对未来沿海管理的启示

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摘要

Tidal flats constitute a unique and extensive depositional system encompassing the entire west coast of Korea. Tidal flats are classified into three types on the basis of morphologic setting, open-coast, embayment, and channel-margin. Macrotidal regime and highly indented coastlines favored tidal current-induced sedimentation, resulting in seaward coarsening sediment distribution. Tide-dominated sedimentary processes are complicated by the strong monsoonal climate, and associated seasonal wave activity and precipitation-induced discharge. Different exposure to wave activity leads to contrasting sedimentary processes, sedimentation and morphologic response among various types of tidal flats. Summertime heavy rainfalls accentuate runoff discharge-driven sedimentation in the tidal flats, irrespective of the presence of rivers. Tidal flats have been venue for government-driven mega reclamation projects such as Saemankeum, Sihwa, and Youngjong-Yongyou islands due to their geographic proximity to urban area and flat morphology. Massive destruction of tidal flats was justified by mandatory environmental impact assessments that failed to predict irreversible effects on coastal depositional system, triggering a nationwide controversy. Future reclamation projects must be supplemented by studies that can evaluate properly the complexity and dynamic behavior of tidal flats so as to minimize socio-economic cost as well as the loss of tidal flats.
机译:滩涂构成了一个独特而广泛的沉积系统,涵盖了整个韩国西海岸。滩涂根据形态,开阔海岸,退潮和河道裕度分为三类。巨潮状态和高度凹进的海岸线有利于潮汐引起的沉积,从而使沉积物向海分布变粗。强烈的季风气候以及相关的季节性波浪活动和降水引起的流量使潮汐主导的沉积过程变得复杂。不同的波浪活动暴露导致各种类型的滩涂之间的沉积过程,沉积和形态响应形成对比。夏季大量降雨加剧了潮汐带中径流排放驱动的沉降,而与河流的存在无关。潮滩一直是政府驱动的大型填海工程的场地,例如Saemankeum,Sihwa和Youngjong-Yongyou岛,因为它们在地理上靠近市区,而且形态平坦。强制性的环境影响评估未能证明对海岸带沉积系统造成不可逆转的影响,因此引发了全国性的争议。未来的填海工程必须辅之以能够正确评估滩涂的复杂性和动态行为的研究,以最大程度地降低社会经济成本以及滩涂的损失。

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  • 来源
    《Ocean & coastal management》 |2014年第12期|437-448|共12页
  • 作者

    Kyungsik Choi;

  • 作者单位

    School of Earth and Environmental Sciences, Seoul National University, Seoul, Republic of Korea;

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  • 正文语种 eng
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