论文标题

比较北极边缘冰区中的波浪观测与光谱模型的比较

A comparison of wave observations in the Arctic marginal ice zone with spectral models

论文作者

Løken, Trygve K., Rabault, Jean, Thomas, Erin E., Müller, Malte, Christensen, Kai H., Sutherland, Graig, Jensen, Atle

论文摘要

经济活动增加和对北极的研究兴趣提高了边际冰区(MIZ)对更好波的预测的需求。海冰中波传播的数学和数值模型将受益于更多原位数据进行验证。这项研究介绍了从MIZ校正高度计读数以进行船舶运动以获得估计的单点海面高程的造船波测量。从合并的测量值中,我们获得了显着的波高和零上跨期以及一维波光谱。此外,我们提供了从放置在Miz内部冰上的惯性运动单元(IMU)获得的光谱和集成参数。在开阔的海洋中,将结果与WAM-4光谱波模型的集成参数进行了比较。我们还将MIZ内部和内部内部的测量值与新的泛极WAM-3模型和欧洲北极的Wave Watch III模型进行了比较,这两个模型都在海冰中模型波衰减。与WAM-4和WW3在零上的越过周期和MIZ之外的显着波高相处,在偏差小于23%的情况下,发现了一个良好的协议。另一方面,WAM-3比观测值高60%。第二次世界大战和WAM-3能够估计MIZ内部明显的波高度和零上跨期的趋势,尽管相对于观测值的差异大于开阔的海洋。通过查看空间衰减系数研究了海冰的波浪阻尼。与观察相比,发现第二次世界大战的预测衰减系数为72-83%,WAM-3的预测系数较小,WAM-3的较小3-64%。因此,需要进一步的模型调整以更好地估计冰中的波浪参数。

Increased economic activity and research interest in the Arctic raise the need for better wave forecasts in the marginal ice zone (MIZ). Mathematical and numerical models of wave propagation in sea ice would benefit from more in situ data for validation. This study presents shipborne wave measurements from the MIZ where altimeter readings are corrected for ship motion to obtain estimated single point ocean surface elevation. From the combined measurements, we obtain significant wave height and zero up-crossing period, as well as one-dimensional wave spectra. In addition, we provide spectra and integrated parameters obtained from inertial motion units (IMU) placed on ice floes inside the MIZ. The results are compared with integrated parameters from the WAM-4 spectral wave model over a period of three days in the open ocean. We also compare our measurements outside and inside the MIZ with hindcast data from the new pan-Arctic WAM-3 model and the Wave Watch III model for the European Arctic, which both model wave attenuation in sea ice. A good agreement is found with WAM-4 and WW3 in zero up-crossing period and significant wave height outside the MIZ, where deviations are less than 23%. WAM-3 is on the other hand up to 60% higher than observations. WW3 and WAM-3 are able to estimate the trends for significant wave height and zero up-crossing period inside the MIZ, although the discrepancies with respect to the observations were larger than in the open ocean. Wave damping by sea ice is investigated by looking at the spatial attenuation coefficients. Predicted attenuation coefficients are found to be 72-83% smaller for WW3 and 3-64% larger for WAM-3 compared to observations. Hence, further model tuning is necessary to better estimate wave parameters in the ice.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源