2016Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIERequires access

Relationship of the wind-wave from HY-2 scatterometer and radar altimeter data

Zengzhou Hao, Siqi Zhang, Fang Gong, Difeng Wang, Qiankun Zhu

Open publisher page 0 citations

Abstract

The significant wave height can be measured only on the track of satellite observation, while wind field can be obtained on the whole satellite scan-view region. In this paper, the wind speed retrieved from the HY-2 Scatterometer and significant wave height con-observed from the HY-2 radar altimeter are used to analyze the wind-wave relationship over the western north Pacific and China seas on July 2015. The significant wave height, which is measured from altimeter, is defined as the average height of the highest one-third waves in a wave spectrum, which is the mixture of swells and wind-waves. In order to deeply understand the wind-wave relationship, we use the criteria that is the total amount of energy contained in the wave field is less than or equal to the wave energy for a fully developed sea in terms of wind speed U10. Some the wind speed and significant wave height data eliminated the effect of swell are selected to study the wind-wave relationship, a second-degree polynomial wind-wave relationship is presented. It reveals a nonlinear relationship with the standard error is 0.59m, and it has an approximate linear relationship above 10 m s-1. Those make it possible to get the wind-generated wave information from the satellite-based wind fields. This relationship is coincident with the other two wind-wave models from in situ observations and significant wave height of wind-generated wave is also predicted from the HY2-SCAT wind speed based on this wind-wave model. However, it is still required to be validated by more observations for the wind-wave model, and it is possible to better or operationally apply for wave forecasting based on satellite-retrieved wind speed.

About this research paper

What this paper is about

The significant wave height can be measured only on the track of satellite observation, while wind field can be obtained on the whole satellite scan-view region. In this paper, the wind speed retrieved from the HY-2 Scatterometer and significant wave height con-observed from the HY-2 radar altimeter are used to analyze the wind-wave relationship over the western north Pacific and China seas on July 2015. The significant wave height, which is measured from altimeter, is defined as the average height of the highest one-third waves in a wave spectrum, which is the mixture of swells and wind-waves. In order to deeply understand the wind-wave relationship, we use the criteria that is the total amount of energy contained in the wave field is less than or equal to the wave energy for a fully developed sea in terms of wind speed U10. Some the wind speed and significant wave height data eliminated the effect of swell are selected to study the wind-wave relationship, a second-degree polynomial wind-wave relationship is presented. It reveals a nonlinear relationship with the standard error is 0.59m, and it has an approximate linear relationship above 10 m s-1. Those make it possible to get the wind-generated wave information from the satellite-based wind fields. This relationship is coincident with the other two wind-wave models from in situ observations and significant wave height of wind-generated wave is also predicted from the HY2-SCAT wind speed based on this wind-wave model. However, it is still required to be validated by more observations for the wind-wave model, and it is possible to better or operationally apply for wave forecasting based on satellite-retrieved wind speed.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The significant wave height can be measured only on the track of satellite observation, while wind field can be obtained on the whole satellite scan-view region. In this paper, the wind speed retrieved from the HY-2 Scatterometer and significant wave height con-observed from the HY-2 radar altimeter are used to analyze the wind-wave relationship over the western north Pacific and China seas on July 2015. The significant wave height, which is measured from altimeter, is defined as the average height of the highest one-third waves in a wave spectrum, which is the mixture of swells and wind-waves. In order to deeply understand the wind-wave relationship, we use the criteria that is the total amount of energy contained in the wave field is less than or equal to the wave energy for a fully developed sea in terms of wind speed U10. Some the wind speed and significant wave height data eliminated the effect of swell are selected to study the wind-wave relationship, a second-degree polynomial wind-wave relationship is presented. It reveals a nonlinear relationship with the standard error is 0.59m, and it has an approximate linear relationship above 10 m s-1. Those make it possible to get the wind-generated wave information from the satellite-based wind fields. This relationship is coincident with the other two wind-wave models from in situ observations and significant wave height of wind-generated wave is also predicted from the HY2-SCAT wind speed based on this wind-wave model. However, it is still required to be validated by more observations for the wind-wave model, and it is possible to better or operationally apply for wave forecasting based on satellite-retrieved wind speed.

Key concepts: Significant wave height, Wind wave model, Scatterometer, Swell, Radar altimeter, Wave height, Wind wave, Altimeter

Related papers

Back to paper searchBrowse research topicsOriginal source
Relationship of the wind-wave from HY-2 scatterometer and radar altimeter data — Research Paper | ScholarLens