Shoreface and Holocene sediment thickness offshore of Rockaway Peninsula, New York

E. Wei, J. Miselis, A. Forde
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Abstract

During September and October 2019, the U.S. Geological Survey mapped the shoreface and inner continental shelf offshore of the Rockaway Peninsula in New York using high-resolution chirp seismic reflection and single-beam bathymetry geophysical techniques. The results from this study are important for assessing the Quaternary evolution of the Rockaway Peninsula and determining coastal sediment availability, which is crucial for establishing sediment budgets, understanding sediment dispersal, and managing coastlines. This report presents preliminary interpretations of seismic profiles and maps of shoreface and Holocene sediment thick ness from the shoreline to about 2 kilometers offshore. The results indicate that shoreface and Holocene sediment thickness demonstrates zonal variability because of underlying geology and sediment availability. Based on geomorphic features and underlying stratigraphy, the study area is separated into west, west-central, east-central, and east zones. Holocene sediment, which includes the shoreface and seafloor features with positive morphology (for example, nearshore bars, ebb-tide deltas, and sorted bedforms), thickens to the west and may be related to accommodation and westward dip of the regional unconformity. Shoreface units, which are thought to represent the active volume of littoral sediment, are thickest in the west-central peninsula where the geologic base of the shoreface is deeper. Shoreface units with moderate thickness are in the western and eastern peninsula where there are positive morphological features (for example, deposits accumulating updrift from the jetty, ebb-tide deltas, and so on). The thinnest shorefaces are in the east-central Rockaway Peninsula because of less accom modation caused by the shoaling regional unconformity.
纽约洛克威半岛近岸面和全新世沉积物厚度
在2019年9月和10月期间,美国地质调查局使用高分辨率啁啾地震反射和单波束测深地球物理技术绘制了纽约洛克威半岛近海的岸面和内大陆架。本研究的结果对于评估洛克威半岛第四纪演化和确定海岸沉积物可用性具有重要意义,这对于建立沉积物预算,了解沉积物扩散和管理海岸线至关重要。本报告介绍了地震剖面的初步解释,以及从海岸线到离岸约2公里的海岸面和全新世沉积物厚度图。结果表明,由于下伏地质和沉积物可利用性的影响,岸面和全新世沉积物厚度呈现地带性变化。根据地貌特征和下伏地层,将研究区划分为西部、中西部、东中部和东部带。全新世沉积物,包括具有正形态的湖滨和海底特征(如近岸沙洲、退潮三角洲和分选床型),向西增厚,可能与区域不整合的迁就和西倾有关。滨面单元被认为代表了沿海沉积物的活动体积,在半岛的中西部最厚,那里的滨面地质基础更深。中等厚度的滨面单元位于半岛的西部和东部,具有积极的形态特征(如从防波堤向上堆积的沉积物、退潮三角洲等)。最薄的岸面位于洛克威半岛的中东部,这是由于浅滩区域不整合造成的调节较少。
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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