首页> 外文期刊>Hydrology and Earth System Sciences >New profiling and mooring records help to assess variability of Lake Issyk-Kul and reveal unknown features of its thermohaline structure
【24h】

New profiling and mooring records help to assess variability of Lake Issyk-Kul and reveal unknown features of its thermohaline structure

机译:新的剖面和系泊记录有助于评估伊塞克湖的变异性,并揭示其热盐湖结构的未知特征

获取原文
       

摘要

This article reports the results of three field campaigns conducted in Lake Issyk-Kul in 2015, 2016, and 2017. During the campaigns, CTD profiling and water sampling were performed at 34 locations all over the lake. A total of 75 CTD profiles were obtained. Some biogeochemical and thermohaline parameters at the lake surface were also mapped at high horizontal resolution along the ship's track. In addition, thermistor chains were deployed at three mooring stations in the eastern littoral region of the lake, yielding 147-day-long records of temperature data. The measurements revealed that – while the thermal state of the active layer, as well as some biogeochemical characteristics, were subject to significant interannual variability mediated by atmospheric forcing – the haline structure of the entire lake was remarkably stable at the interannual scale. Our data do not confirm the reports of progressive warming of the deep Issyk-Kul waters as suggested in some previous publications. However, they do indicate a positive trend of salinity in the lake's interior over the last 3 decades. A noteworthy newly found feature is a weak but persistent salinity maximum below the thermocline at a depth of 70–120?m, from where salinity slightly decreased downwards. The data from the moored thermistor chains support the previously published hypothesis about the significant role of the submerged ancient riverbeds on the eastern shelf in advecting littoral waters into the deep portion of the lake during differential cooling period. We hypothesize that the less saline littoral water penetrating into the deep layers due to this mechanism is responsible for the abovementioned features of salinity profile, and we substantiate this hypothesis by estimates based on simple model assumptions.
机译:本文报告了2015年,2016年和2017年在Issyk-Kul湖进行的三个野外活动的结果。在活动期间,在整个湖中的34个地点进行了CTD分析和水采样。总共获得了75个CTD配置文件。沿船的航迹,还以高水平分辨率绘制了湖面的一些生物地球化学和热盐参数。此外,在该湖东部沿海地区的三个系泊站部署了热敏电阻链,产生了长达147天的温度数据记录。测量结果表明,尽管活性层的热状态以及某些生物地球化学特征受到大气强迫介导的重大年际变化,但整个湖泊的盐度结构在年际尺度上非常稳定。我们的数据并未证实某些先前出版物中建议的伊塞克湖深水逐渐升温的报道。但是,它们的确表明了过去3年中湖内盐度的积极趋势。新发现的一个值得注意的特征是,在热线以下70-120?m的深度有一个弱但持续的最大盐度,从那里盐度略有下降。来自停泊的热敏电阻链的数据支持了先前发表的假设,即关于东部陆架上被淹没的古代河床在差异性冷却期间将沿海水平流到湖深部分中的重要作用。我们假设由于这种机制而使盐分含量较低的滨水渗入深层是上述盐度剖面特征的原因,并且我们通过基于简单模型假设的估计来证实这一假设。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号