On mechanisms controlling the interannual variability of the summertime bottom low-oxygen zones in the southern Bohai Sea
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The data supporting the article "On mechanisms controlling the interannual variability of the summertime bottom low-oxygen zones in the southern Bohai Sea" Fig_2_data: Spatially averaged wind speed over the southern BS during the summer of 2014 and 2019, and observed ranges of summertime bottom DO concentration. Fig_3_data: Observed and simulated summertime bottom temperature, bottom DO concentration, surface salinity, and surface chl-a. Fig_4_data: Simulated surface DIN (mmol/m3) at the mid-point of the cruise dates compared to observations (dots) during different field surveys. Fig_5_data: Simulated surface chla (mg/m3) at the mid-point of the cruise dates compared to observations (dots) during different field surveys. Fig_6_data: Simulated bottom DO (mmol/m3) at the mid-point of the cruise dates compared to observations (dots) during different field surveys. Fig_7_data: Stratification (N² ) maxima, temperature induced stratification maxima and salinity induced stratification maxima from June 1 to August 10 in 2014 and 2019 in the Bohai Sea. Bottom DO variations in Zone1-3. Fig_9_data: Hovmöller diagrams of the averaged chl-a concentrations in the upper layer along Section X,Section Y and the DO concentrations averaged in the lower layer along Section X , Sec-tion Y. The distances of Section X and Y are also added. Fig_10_data:Simulated current fields at different depths in July 2014 and July 2019. Fig_11_data:Surface-bottom difference of modeled temperature and salinity for July in 2014 and 2019. Modeled temperature-salinity scatter diagrams for July in 2014 and 2019. Fig_12_data:The integrated low layer water transports across Section A in July for Control-2014 and Control-2019 with unit m3/s. Fig_13_data:Differences in vertical stratification between sensitivity experiments and control runs on July 31, 14-19R minus Control 14, 14-19W minus Control 14, 19-14R minus Control 19, and 19 -14W minus Control 19. Fig_14_data: Monthly mean DO budgets in June, July, August and June-August for the upper and lower layers of Zone1+Zone2 and Zone3 for Control-14 and Control-19. Monthly mean DO budgets in June, July, August and June-August for the upper and lower layers of Zone1+Zone2 and Zone3 for 14-19R, 14-19W, 19-14R and 19-14W. The information of values has been shown in file names. Fig_S1_data: Simulated SST (°C) at the mid-point of the cruise dates compared to observations during different field surveys. Fig_S2_data:Simulated bottom temperature (°C) at the mid-point of the cruise dates compared to observations during different field surveys. Fig_S3_data:Simulated surface salinity at the mid-point of the cruise dates compared to observations during different field surveys. Fig_S4_data:Simulated bottom salinity at the mid-point of the cruise dates compared to observations during different field surveys. Fig_S5_data:Simulated bottom DIN (mmol/m3) at the mid-point of the cruise dates compared to observations during different field surveys.
支撑论文《渤海南部夏季底层低氧区年际变化调控机制》(On mechanisms controlling the interannual variability of the summertime bottom low-oxygen zones in the southern Bohai Sea)的数据集 Fig_2_data: 2014年与2019年夏季渤海南部海域空间平均风速,以及夏季底层溶解氧(Dissolved Oxygen, DO)浓度观测范围 Fig_3_data: 夏季底层温度、底层溶解氧(DO)浓度、表层盐度与表层叶绿素a(Chlorophyll-a, chl-a)的观测与模拟结果 Fig_4_data: 不同航次调查期间,航次中期模拟的表层溶解态无机氮(Dissolved Inorganic Nitrogen, DIN,单位:mmol/m³)与观测值(散点)的对比结果 Fig_5_data: 不同航次调查期间,航次中期模拟的表层叶绿素a(chl-a,单位:mg/m³)与观测值(散点)的对比结果 Fig_6_data: 不同航次调查期间,航次中期模拟的底层溶解氧(DO,单位:mmol/m³)与观测值(散点)的对比结果 Fig_7_data: 2014年与2019年6月1日至8月10日渤海海域的层结(N²)最大值、温度诱导层结最大值与盐度诱导层结最大值,以及区域1-3的底层溶解氧变化 Fig_9_data: 沿断面X、断面Y的上层平均叶绿素a浓度,以及沿断面X、断面Y的下层平均溶解氧浓度的霍夫莫勒(Hovmöller)图,同时标注了断面X与Y的距离信息 Fig_10_data: 2014年7月与2019年7月不同深度的模拟流场 Fig_11_data: 2014年7月与2019年7月模拟的温度与盐度的表层-底层差值,以及2014年7月与2019年7月模拟的温度-盐度散点图 Fig_12_data: 对照组2014年与对照组2019年7月跨断面A的下层水体总输运量,单位:m³/s Fig_13_data: 2014年7月31日敏感性实验与对照组的垂直层结差异,包含14-19R减对照组14、14-19W减对照组14、19-14R减对照组19,以及19-14W减对照组19 Fig_14_data: 对照组2014年与对照组2019年区域1+区域2和区域3的上层、下层水体6月、7月、8月及6-8月的月平均溶解氧收支;以及14-19R、14-19W、19-14R与19-14W组区域1+区域2和区域3的上层、下层水体6月、7月、8月及6-8月的月平均溶解氧收支。相关数值信息已在文件名中说明 Fig_S1_data: 不同航次调查期间,航次中期模拟的海表温度(Sea Surface Temperature, SST,单位:°C)与观测值的对比结果 Fig_S2_data: 不同航次调查期间,航次中期模拟的底层温度(单位:°C)与观测值的对比结果 Fig_S3_data: 不同航次调查期间,航次中期模拟的表层盐度与观测值的对比结果 Fig_S4_data: 不同航次调查期间,航次中期模拟的底层盐度与观测值的对比结果 Fig_S5_data: 不同航次调查期间,航次中期模拟的底层溶解态无机氮(DIN,单位:mmol/m³)与观测值的对比结果




