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每日影响:西北太平洋海域海表叶绿素-a 浓度动态的双台风同时通过。

Daily impact of the simultaneous passage of binary typhoons on sea surface chlorophyll-a concentration dynamics in the Northwestern Pacific.

机构信息

College of Earth and Planetary Sciences, University of Chinese Academy of Sciences, Beijing 100049, China; The Key Laboratory of Earth Observation of Hainan Province, Hainan Aerospace Information Research Institute, Sanya 572029, China.

The Key Laboratory of Earth Observation of Hainan Province, Hainan Aerospace Information Research Institute, Sanya 572029, China; Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100094, China; Remote Sensing Information and Digital Earth Center, College of Computer Science and Technology, Qingdao University, Qingdao 266071, China.

出版信息

Sci Total Environ. 2024 Apr 15;921:171166. doi: 10.1016/j.scitotenv.2024.171166. Epub 2024 Feb 23.

Abstract

Typhoons are recognized as one of the most destructive meteorological phenomena, exerting significant influences on marine ecosystems. Sea surface chlorophyll-a concentration (CHL)an essential indicator of phytoplankton biomass, can be utilized to characterize the disturbances of typhoons on the marine ecosystem. However, it is challenging to investigate this impact at a daily scale due to the missing CHL remote sensing data caused by cloud cover. Given that concurrent passing typhoons may interact with CHL, this study analyzes the effect of the simultaneous passage of binary typhoons Tembin and Bolaven on CHL by using daily CHL reconstruction data, and investigates the role of ocean environmental factors in driving the dynamics of CHL, including sea surface temperature (SST), mixed layer depth (MLD), and sea surface height anomaly (SSHA). The results show that typhoons Tembin and Bolaven increase CHL with the maximum increment of ∼3.2 mg∙m during 4-6 days after typhoons passage. The maximum change areas of CHL are distributed near the intersection of typhoon track of (32°N, 125.2°E), corresponding to the regions of greater variation in SST and MLD. During 15 days before and after typhoons (i.e., from 15 August to 15 September 2012), SST is negatively correlated with CHL (the correlation coefficient of -0.85) and MLD is positively correlated with CHL (the correlation coefficient of -0.80). SST immediately declines after typhoons with a maximum cooling of 7.8 deg. C, showing the decreased SST from ∼28 deg. C to ∼23 deg. C can promote phytoplankton growth. MLD deepens from 10 m to >25 m caused by typhoon-induced strong winds, allowing more nutrients to be transported from the subsurface layer to the euphotic layer for phytoplankton blooms. Furthermore, oceanic eddies captured by SSHA change from cyclonic to anticyclonic eddies accompanied by the beginning of CHL increases, and the largest CHL increases correspond to the distribution of pre-existing cyclonic eddies. It suggests that Tembin and Boravin promote phytoplankton growth to increase CHL by enhancing vertical mixing and upwelling to transport nutrients to the sea surface. These findings inspire us to rethink the daily effects of typhoons on CHL, with critical importance for predicting and managing the ecological consequences of typhoons in the ocean.

摘要

台风被认为是最具破坏性的气象现象之一,对海洋生态系统有重大影响。海洋表层叶绿素 a 浓度(CHL)是浮游植物生物量的重要指标,可用于描述台风对海洋生态系统的干扰。然而,由于云层覆盖导致 CHL 遥感数据缺失,在日常尺度上研究这种影响具有挑战性。鉴于并发经过的台风可能会相互作用于 CHL,本研究通过使用每日 CHL 重建数据,分析了双台风潭美和布拉万同时经过对 CHL 的影响,并研究了海洋环境因素在驱动 CHL 动态方面的作用,包括海面温度(SST)、混合层深度(MLD)和海面高度异常(SSHA)。结果表明,台风潭美和布拉万经过后 4-6 天内 CHL 增加,最大增量约为 3.2mg·m。CHL 的最大变化区域分布在台风轨迹(32°N,125.2°E)的交点附近,对应于 SST 和 MLD 变化较大的区域。在台风前后 15 天(即 2012 年 8 月 15 日至 9 月 15 日),SST 与 CHL 呈负相关(相关系数为-0.85),MLD 与 CHL 呈正相关(相关系数为-0.80)。台风过后,SST 立即下降,最大降温 7.8°C,表明 SST 从约 28°C 降至 23°C 可促进浮游植物生长。台风引起的强风使 MLD 加深至 10m 以上,>25m,使更多的营养物质从次表层输送到光层,促进浮游植物大量繁殖。此外,SSHA 捕获的海洋涡旋由气旋性涡旋变为反气旋性涡旋,伴随着 CHL 增加的开始,最大的 CHL 增加对应于预先存在的气旋性涡旋的分布。这表明潭美和布拉万通过增强垂直混合和上升流将营养物质输送到海面,促进浮游植物生长,从而增加 CHL。这些发现促使我们重新思考台风对 CHL 的日常影响,这对于预测和管理海洋中台风的生态后果具有重要意义。

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