菲律宾海海温日增温与北方夏季季节内振荡:夏初和夏末的对比

IF 1.7 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES Sola Pub Date : 2023-01-01 DOI:10.2151/sola.2023-038
Ayako Seiki, Akira Nagano, Ning Zhao, Iwao Ueki, Satoru Yokoi
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引用次数: 0

摘要

利用位于137°E, 13°N的系泊浮标的4年(2017-2020年)数据,研究了菲律宾海海表温度(SST)日波动与北方夏季季节内振荡(BSISO)的关系及其夏初和夏末的差异。在BSISO对流抑制阶段,频繁观测到强烈的海温日循环,同时地面风减弱,日照增强。此外,2018年5月中旬和2019年5月中旬,海温突变增温伴随着强烈的日循环,同时出现了当年的第一次BSISO。有趣的是,第二次BSISO对流抑制期虽然表现出较强的日循环,但海温增温幅度较小,这可归因于暖等温层的加深。其余2年(2017年和2020年)海温逐渐升高,日海温幅值较小,这可能与持续的中等强度地面风混合上层海洋有关。第一次BSISO是在夏末观测到的。这些结果表明,与强日循环相关的海温突变增温与BSISO的季节性爆发有关。
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Diurnal SST warming and the boreal summer intraseasonal oscillation in the Philippine Sea: contrasts between early and late summer
The relationship between diurnal fluctuations of sea surface temperature (SST) in the Philippine Sea and the boreal summer intraseasonal oscillation (BSISO) and its difference between early and late summer are investigated using four-year (2017-2020) data of a moored buoy deployed at 137°E, 13°N. A strong diurnal cycle of SST is observed frequently during convectively suppressed phases of the BSISO, simultaneous with a weakening of surface winds and enhanced insolation. In addition, abrupt SST warming along with the strong diurnal cycle occurred in the middle of May in 2018 and 2019, in conjunction with the first BSISO of the year. Interestingly, the convectively suppressed phases of second BSISO showed small SST warming albeit the strong diurnal cycle, which can be attributed to a deepening of the warm isothermal layer. In the remaining two years, 2017 and 2020, SST increased gradually with small diurnal SST amplitude, which is presumably attributed to continuous surface winds with moderate strengths mixing the upper ocean. Moreover, the first BSISO was observed in late summer. These results suggest that the abrupt SST warming associated with the strong diurnal cycle is linked to the seasonal onset of the BSISO.
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来源期刊
Sola
Sola 地学-气象与大气科学
CiteScore
3.50
自引率
21.10%
发文量
41
审稿时长
>12 weeks
期刊介绍: SOLA (Scientific Online Letters on the Atmosphere) is a peer-reviewed, Open Access, online-only journal. It publishes scientific discoveries and advances in understanding in meteorology, climatology, the atmospheric sciences and related interdisciplinary areas. SOLA focuses on presenting new and scientifically rigorous observations, experiments, data analyses, numerical modeling, data assimilation, and technical developments as quickly as possible. It achieves this via rapid peer review and publication of research letters, published as Regular Articles. Published and supported by the Meteorological Society of Japan, the journal follows strong research and publication ethics principles. Most manuscripts receive a first decision within one month and a decision upon resubmission within a further month. Accepted articles are then quickly published on the journal’s website, where they are easily accessible to our broad audience.
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