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首页> 外文期刊>Journal of African earth sciences >Temperature and electrical conductivity of water in Lake Nyos transmitted by an automatic observation buoy
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Temperature and electrical conductivity of water in Lake Nyos transmitted by an automatic observation buoy

机译:自动观察浮标传递湖北湖中水的温度和电导率

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摘要

An automatic observation buoy (AOB) was installed at Lake Nyos in March 2014. The temperature and electrical conductivity (EC) of lake water were continuously observed from March 10, 2014 to April 15, 2016. The thermocline and chemocline located deeper than -90 m subsided 15 m in the observation period due to the bottom water removal by the CO2 degassing pipes. The velocity of subsidence was estimated quantitatively by correlating the time variation of EC obtained by AOB and the depth profile of EC. The velocity of subsidence was not constant, namely, it was fast in dry season and slow in rainy season. The time variation in the velocity of subsidence can be attributed to the seasonal variation of water flux in the degassing pipes. Considering the water balance in the deep part of lake, the flux of ground water supplied to lake was estimated to be 6.5*10(6) (m(3)/year), which is comparable to the recharge rate of ground water within the catchment area surrounding Lake Nyos. Abrupt drops in temperature and conductivity were observed at -120 m in January 2016, when the temperature at -4 m reached 21.8 degrees C as the lowest value. The abrupt drops are due to the sinking of surface cold water.
机译:2014年3月在纽约斯湖安装了一个自动观察浮标(AOB)。从2014年3月10日至2016年4月15日,湖水的温度和导电性(EC)连续观察。热水管和化学芯线位于-90的深度由于CO 2脱气管的底部除水道,M在观察期间消退15米。通过将由AOB获得的EC的时间变化和EC的深度分布相关来定量沉降速度。沉降的速度并不恒定,即,在干燥的季节快速,雨季缓慢。沉降速度的时间变化可归因于脱气管中的水通量的季节变化。考虑到湖泊深部位的水平,提供给湖泊的地面水的助焊剂估计为6.5 * 10(6)(m(3)/年),可与地下水的充电率相媲美南部湖周围的集水区。在2016年1月在-120米处在-120米处观察到温度和电导率的突变滴,当为-4米的温度达到21.8℃,作为最低值。突然的滴剂是由于表面冷水的沉没。

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