nav emailalert searchbtn searchbox tablepage yinyongbenwen piczone journalimg journalInfo journalinfonormal searchdiv searchzone qikanlogo popupnotification paper paperNew
2023, 05, v.53;No.347 1-9
冬季大风对渤海海峡水体通量的影响研究
基金项目(Foundation): 国家自然科学基金项目(42076010,42130403);; 山东省自然科学基金项目(ZR2021MD007)资助~~
邮箱(Email):
DOI: 10.16441/j.cnki.hdxb.20220020
投稿时间: 2022-01-07
投稿日期(年): 2022
修回时间: 2022-03-31
终审时间: 2022-04-25
终审日期(年): 2022
审稿周期(年): 1
移动端阅读
摘要:

基于FVCOM模型,通过七套不同风场再分析数据,对2017年冬季渤黄海的海洋水文动力环境进行了模拟。模拟结果与实测资料对比,发现ECMWF Reanalysis v5_1HR(以下简称ERA5_1HR)风场数据可以对渤黄海冬季水文环境实现最优化模拟。并发现2017年2月17—24日大风事件发生时,渤海和北黄海海流会随大风暴发和松弛流出和流入渤海海峡。出流现象主要出现在渤海海峡的南通道和中间通道,入流现象初期主要出现在北通道,随着时间的推移整个渤海海峡都有入流现象。在此期间水位呈周期性变化,在大风事件发生时渤海水会向南部堆积呈现南高北低的现象,大风松弛时,渤海水位呈现北高南低的现象。大风期间急剧的流入流出过程显著增强渤海的水交换,三次高频大风过程造成的出水通量分别是18.35×106 m3、32.46×106 m3和34.15×106 m3;入水通量分别是21.11×106 m3、38.69×106 m3和22.38×106 m3。两个对照实验结果显示,在大风期间风应力才是主导渤海环流和水交换的最重要因素。

Abstract:

Based on FVCOM model, we compared seven sets of different wind field reanalysis data and used them to simulate the marine environment of the Bohai and Yellow Sea in the winter of 2017. Comparing the model's results with the observed data, it was found that ECMWF Reanalysis V5_1HR(hereinafter referred to as ERA5_1HR) can optimize the hydrological environment of the Bohai and Yellow Sea in winter. During the winter storm from February 17 to February 24, 2017, it was also found that the currents in the Bohai and North Yellow Sea would outflow and inflow through the Bohai Strait with the winter storm burst and relaxation. The outflow mainly occurred in the southern and middle part of the Bohai Strait. And the inflow mainly occurred in the northern part at first, then occurred in the whole Bohai Strait. During the wind storm, the water level changes periodically. When a wind storm burst the water in the Bohai Sea would be accumulated to the southern part. At this time the sea level was high in the southern part and low in the northern part of the Bohai Sea. When the wind storm was relaxed, the sea level in the Bohai Sea was opposite. The rapid inflow and outflow process during the wind storm period significantly enhanced the water exchange in the Bohai Sea. The outflow fluxes caused by the three high-frequency wind storms processes were 18.35×106 m3, 32.46×106 m3 and 34.15×106 m3 respectively; The inflow fluxes are 21.11×106 m3, 38.69×106 m3 and 22.38×106 m3 respectively. According to the results of two controlled experiments, the wind speed is the most important factor dominating the circulation and water exchange in the Bohai Sea during the wind storms.

参考文献

[1] Zhang Z X,Qiao F L,Guo J S,et al.Seasonal changes and driving forces of inflow and outflow through the Bohai Strait[J].Continental Shelf Research,2018,154:1-8.

[2] 方国洪,王凯,郭丰义,等.近30年渤海水文和气象状况长期变化及其相互关系[J].海洋与湖沼,2002,33(5):515-525.Fang G H,Wang K,Guo F Y,et al.Long-term changes and interrelations of annual variations of the hydrographical and meteorological parameters of the Bohai Sea during recent 30 years[J].Oceanologia Et Limnologia Sinica,2002,33(5):515-525.

[3] Chen X L,Lu J Z,Cui T W,et al.Coupling remote sensing retrieval with numerical simulation for SPM study—Taking Bohai Sea in China as a case[J].International Journal of Applied Earth Observation and Geoinformation,2010,12:203-211.

[4] Bi N S,Yang Z S,Wang H J,et al.Seasonal variation of suspended-sediment transport through the southern Bohai Strait[J].Estuarine,Coastal and Shelf Science,2011,93:239-247.

[5] Zhai W D,Zhao H D,Zheng N,et al.Coastal acidification in summer bottom oxygen-depleted waters in northwestern-northern Bohai Sea from June to August in 2011[J].Chinese Science Bulletin,2012,57(9):1062-1068.

[6] Huang D J,Su J L,Jan O B.Modelling the seasonal thermal stratifycation and baroclinic circulation in the Bohai Sea[J].Continental Shelf Research,1999,19(199-9):1485-1505.

[7] Wang J H,Shen Y M,Guo Y K.Seasonal circulation and influence factors of the Bohai Sea:A numerical study based on Lagrangian particle tracking method[J].Ocean Dynamics,2010(60):1581-1596.

[8] 黄大吉,苏纪兰,张立人.渤海冬夏季环流的数值研究[J].空气动学学报,1998,16(1):116-121.Huang D J,Su J L,Zhang L R.Numerical study of the winter and summer circulation in the Bohai Sea[J].Acta Aerodynamica Sinica,1998,16(1):116-121.

[9] Gao Z G,Zhang Q H,Wang H,et al.The impacts of wind and air pressure on fluctuations of the mean Bohai Sea level[J].Journal of Coastal Research,2016,74:13-21.

[10] Guo W J,Wu G X,Liang B C,et al.The influence of surface wave on water exchange in the Bohai Sea[J].Continental Shelf Research,2016,118:128-142.

[11] Wei H,Su J,Wan R J,et al.Tidal front and the convergence of anchovy (Engraulis japonicus) eggs in the Yellow Sea[J].Fisheries Oceanography,2003,12(4):434-442.

[12] Zhou F,Huang D J,Xue H J,et al.Circulations associated with cold pools in the Bohai Sea on the Chinese continental shelf[J].Continental Shelf Research,2017,137:25-38.

[13] Wang Y,Li R H,Wen Z H,et al.The summer spring-neap variation of the water thermohaline-turbidity structure and its dynamical mechanism in the southern Bohai Strait[J].Continental Shelf Research,2014,90:52-59.

[14] Mao X Y,Jiang W S,Zhao P,et al.A 3-D numerical study of salinity variations in the Bohai Sea during the recent years[J].Continental Shelf Research,2008,28:2689-2699.

[15] Fang Y,Fang G H.Numerical simulation and dynamic study of the wintertime circulation of the Bohai Sea[J].Journal of Ocean-logy and Limonology,2000,18(1):1-9.

[16] Dagmar H,Wei H,Thomas P.Variability of the Bohai Sea circulation based on model calculations[J].Journal of Marine Systems,2003,44:153-174.

[17] 毕聪聪,鲍献文,万凯.渤海盐度年代际变异对环流结构的影响[J].中国海洋大学学报(自然科学版),2015,45(1):1-8.Bi C C,Bao X W,Wan K.The Effect of Decadal Salinity Variations on Circulation in the Bohai Sea[J].Periodical Ocean University of China,2015,45(1):1-8.

[18] Ding Y,Bao X W.Observation-al and model studies of synoptic current fluctuations in the Bohai Strait on the Chinese continental shelf[J].Ocean Dynamics,2019,69:323-351.

[19] 万修全,马倩,马伟伟.冬季高频大风过程对渤海冬季环流和水交换影响的数值模拟[J].中国海洋大学学报(自然科学版),2015,45(4):1-8.Wan X Q,Ma Q,Ma W W.The effect of high frequency strong winds on winter circulation and water exchange in the Bohai Sea by ROMS[J].Periodical of Ocean University of China,2015,45(4):1-8.

[20] 李静,宋军,牟林,等.冬季大风影响下的渤黄海水交换特征[J].海洋通报,2015,34(6):647-656.Li J,Song J,Mu L,et al.Characteristics of sea water exchange between Bohai Sea and Yellow Sea under the effect of high wind in winter[J].Marine Science Bulletin,2015,34(6):647-656.

[21] Ding Y,Bao X,Yao Z,et al.Effect of coastal-trapped waves on the synoptic variations of the Yellow Sea warm current during winter[J].Continental Shelf Research,2018,167:14-31.

[22] Guo J,Zhang H,Cui T W,et al.Remote sensing observations of the winter Yellow Sea warm current invasion into the Bohai Sea,China[J].Advances in Meteorology,2016,3:1-10.

[23] Ju X,Ma C,Yao Z G.Case analysis of water exchange between the Bohai and Yellow Seas in response to high winds in winter[J].Journal of Oceanology and Limnology,2020,38(1):30-41.

[24] 王强.渤海环流的季节变化及浮游生态动力学模拟[D].青岛:中国海洋大学,2004.Wang Q.A Numerical Modeling Study of the Circulation and Plankton Ecosystem Dynamics of the Bohai Sea[D].Qingdao:Ocean University of China,2004.

[25] Large W G.Open Ocean momentum flux measurements in moderate to strong winds[J].Journal of Physical Oceanography,1981,11:324-336.

[26] Fang G.Tide and tidal current charts for the marginal seas adjacent to China[J].Chinese Journal of Oceanology and Limnology,1986,16(1):1-16.

基本信息:

DOI:10.16441/j.cnki.hdxb.20220020

中图分类号:P732.6

引用信息:

[1]于航,鲍献文,丁扬,等.冬季大风对渤海海峡水体通量的影响研究[J],2023,53(05):1-9.DOI:10.16441/j.cnki.hdxb.20220020.

基金信息:

国家自然科学基金项目(42076010,42130403);; 山东省自然科学基金项目(ZR2021MD007)资助~~

投稿时间:

2022-01-07

投稿日期(年):

2022

修回时间:

2022-03-31

终审时间:

2022-04-25

终审日期(年):

2022

审稿周期(年):

1

检 索 高级检索

引用

GB/T 7714-2015 格式引文
MLA格式引文
APA格式引文