...
首页> 外文期刊>Ocean modelling >Global prediction of abyssal hill roughness statistics for use in ocean models from digital maps of paleo-spreading rate, paleo-ridge orientation, and sediment thickness
【24h】

Global prediction of abyssal hill roughness statistics for use in ocean models from digital maps of paleo-spreading rate, paleo-ridge orientation, and sediment thickness

机译:根据古扩展率,古脊取向和沉积物厚度的数字地图在海洋模型中使用的深海丘陵粗糙度统计数据的全球预测

获取原文
获取原文并翻译 | 示例
           

摘要

Abyssal hills are the dominant small-scale roughness fabric over much of the ocean floor. Created at mid-ocean ridges by combined volcanic and tectonic processes, they are rafted away by plate spreading and modified through time by mass wasting and sedimentation. Abyssal hills are morphological indicators of spreading rate and direction: they are lineated parallel to the ridge at the time of formation, and their heights and widths are inversely correlated to spreading rate. Knowledge of abyssal hill roughness statistics is important for high-resolution models, including models of internal wave generation and mixing driven by tidal and low-frequency flows over the rough bottom. In this paper we present a prediction of abyssal hill roughness statistical parameters world-wide via relationships for the average statistical properties of abyssal hills as a function of spreading rate and direction, and for the modification to these roughness parameters as a function of sediment thickness. These relationships are constrained by new publicly-available digital maps of paleo-spreading rate and direction, and sediment thickness. We also develop a new method for generating synthetic topography with variable statistical properties over a grid, and present an example of synthetic abyssal hill roughness generated for the North Atlantic on a 1/2-min grid.
机译:深海丘陵是大部分海床中占主导地位的小型粗糙结构。它们是由火山和构造过程共同作用在中海​​脊形成的,它们通过板块扩散而被漂流,并随着时间的流逝被大量的浪费和沉积所改变。深海丘陵是扩展速率和方向的形态指标:它们在形成时平行于山脊排列,其高度和宽度与扩展速率成反比。深海丘陵粗糙度统计知识对于高分辨率模型非常重要,包括高分辨率模型,其中包括由粗糙底部的潮汐流和低频流驱动的内部波产生和混合模型。在本文中,我们通过对深海丘陵的平均统计特性与扩展速度和方向的函数关系以及对这些粗糙度参数随沉积物厚度变化的关系的关系,对全球深海丘陵粗糙度统计参数进行了预测。这些关系受到新的公众可用的数字地图(古分布速度和方向以及沉积物厚度)的限制。我们还开发了一种在网格上生成具有可变统计属性的合成地形的新方法,并给出了在1/2分钟的网格上为北大西洋生成的合成深海丘陵粗糙度的示例。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号