RETRIEVAL OF SURFACE CURRENT FROM HIMAWARI-8 SEA SURFACE TEMPERATURE DATA AND PARTICLE IMAGE VELOCIMETRY METHOD

Kadek Setiya, Wati, Takahiro Osawa, Wayan Gede, Astawa Karang
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Abstract

As human activity occurs at the surface, which is influenced by surface currents, understanding surface currents is crucial. Ocean currents are not solely caused by wind, but also of other factors, such as sea surface temperature. To obtain surface current data, BMKG used HF radar installed in several places, including Flores Sea. This location is significant because it has large ports and heavy crossing traffic. This study aims to analyse surface current data retrieve from Himawari-8 SST data by applied PIV algorithm. Using the PIV algorithm, a cross-correlation plane is generated by comparing two identically sized interrogation windows obtained from successive images. On 5 December 2022 in the Flores Sea, Himawari-8 SST data was employed to estimate sea surface currents every 10 minutes. Surface current motion varies widely from image to image. Western areas are dominated by westward currents, while central and eastern areas are dominated by eastward currents during daylight hours, and westward currents during the night. Synoptic wind affects surface current movement during those hours. Validation with observational data from the Labuan Bajo HF radar shows that the V component current estimation is better than the U component current estimation. This is particularly prevalent in the south and in areas close to the KAWA radar HF location. Keywords: Flores Sea; SST; Himawari-8; PIV; surface current
从 himawari-8 海洋表面温度数据和粒子图像测速法获取海面洋流数据
由于人类活动发生在受表层洋流影响的表层,因此了解表层洋流至关重要。洋流不仅仅是由风引起的,还有其他因素,比如海面温度。为了获得地表电流数据,BMKG使用了安装在几个地方的高频雷达,包括弗洛雷斯海。这个位置很重要,因为它有大型港口和繁忙的过境交通。应用PIV算法对从“hima -8”海温数据中检索到的地表电流数据进行分析。利用PIV算法,通过比较从连续图像中获得的两个相同大小的询问窗口来生成互相关平面。2022年12月5日在弗洛雷斯海,利用Himawari-8海温资料每10分钟估算一次海面洋流。不同图像的表面电流运动变化很大。西部以西流为主,中部和东部白天以东流为主,夜间以西流为主。在这段时间内,天气风会影响地面气流的运动。Labuan Bajo高频雷达观测数据验证表明,V分量电流估计优于U分量电流估计。这在南部和靠近KAWA雷达高频位置的地区尤其普遍。关键词:弗洛雷斯海;风场;Himawari-8;此外;表面流
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