论文标题
纵横比会影响冰山融化
Aspect ratio affects iceberg melting
论文作者
论文摘要
冰山融化是从冰冻圈到海洋的关键淡水通量。因此,全球气候模拟需要冰山熔化的简单准确的参数。冰山的形状是冰山融化的重要方面。冰山具有巨大的形状和大小,并且不同的过程主导了基础和侧面熔化。我们展示了不同的冰山纵横比和相对环境水速度如何使用合并的实验和数值研究影响融化。实验结果表明,不同冰山面之间以及每个冰山面之间的融化差异很大。这些发现是通过新颖的多物理数值模拟复制和解释的。在高相对的环境速度下,在面向流的侧面最大,并且在涡流中混合会导致局部融化速率的局部增加超过50%。当相对环境速度较低时,双扩散浮力效应将变得显着。现有的熔解参数不会再现我们的发现。我们提出了几个校正,以捕获长宽比对冰山融化的影响。
Iceberg meltwater is a critical freshwater flux from the cryosphere to the oceans. Global climate simulations therefore require simple and accurate parameterisations of iceberg melting. Iceberg shape is an important but often neglected aspect of iceberg melting. Icebergs have an enormous range of shapes and sizes, and distinct processes dominate basal and side melting. We show how different iceberg aspect ratios and relative ambient water velocities affect melting using a combined experimental and numerical study. The experimental results show significant variations in melting between different iceberg faces, as well as within each iceberg face. These findings are reproduced and explained with novel multiphysics numerical simulations. At high relative ambient velocities melting is largest on the side facing the flow, and mixing during vortex generation causes local increases in basal melt rates of over 50%. Double-diffusive buoyancy effects become significant when the relative ambient velocity is low. Existing melting parameterisations do not reproduce our findings. We propose several corrections to capture the influence of aspect ratio on iceberg melting.