...
首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Mixing potential of a surface-mounted solar-powered water mixer (SWM) for controlling cyanobacterial blooms
【24h】

Mixing potential of a surface-mounted solar-powered water mixer (SWM) for controlling cyanobacterial blooms

机译:用于控制蓝藻水华的表面安装太阳能水混合器(SWM)的混合潜力

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Cyanobacterial blooms continue to be a serious nuisance to water quality managers, and remedial measures that are ecologically sound, economically feasible, and efficient in responding to the scale and intensity of the problem are required for their control. Here, we evaluated the potential of a new technique to adequately mix the water column and control cyanobacterial blooms, employing a surface-mounted solar-powered water mixer (SWM). Flow dynamics, thermal structure of the water column and phyto-plankton photo-physiology were compared before and during operation of the SWM in Falling Creek Reservoir to determine whether the device helps weaken thermal stratification, deepen surface mixed layer, and entrain surface cyanobacteria into deeper water to light-limit their growth. Water circulation generated by the SWM resulted in weak velocity fields to a lateral distance of 5 m from the device, to a depth of 1.5 m from the surface. Moreover, the mixing minimized the surface water temperatures by approximately 2 °C and deepened the surface mixed layer by 1 m up to a lateral distance of 3 m from the SWM, but little change occurred beyond this distance even after continuous operation of the device for more than a week. Photo-physiological observations also suggested light-limitation in cyanobacterial growth up to a lateral distance of 5 m from SWM during intense sunlight conditions. The results showed that the SWM has limited zone of influence and is unable to adequately mix lakes and reservoirs to effectively control cyanobacterial blooms.
机译:蓝藻水华仍然是水质管理人员的严重困扰,因此需要采取生态学上合理的,经济上可行的且能有效应对问题规模和强度的补救措施。在这里,我们评估了使用表面安装的太阳能水混合器(SWM)来充分混合水柱并控制蓝藻水华的新技术的潜力。在Falling Creek水库SWM运行之前和运行期间,对流动动力学,水柱的热结构和浮游植物的光生理学进行了比较,以确定该设备是否有助于减弱热分层,加深表面混合层以及将表面蓝藻夹带到更深处浇水以限制其生长。 SWM产生的水循环导致较弱的速度场,距设备的横向距离为5 m,距表面的深度为1.5 m。此外,混合将地表水温度降低了约2°C,并使表面混合层加深了1 m,直至距SWM的侧向距离为3 m,但是即使连续操作该设备后,超出该距离也几乎没有发生变化。一个多星期。光生理学观察还表明,在强烈的阳光条件下,蓝细菌的生长受到光的限制,直至距SWM 5 m的横向距离。结果表明,SWM的影响区域有限,不能充分混合湖泊和水库来有效控制蓝藻水华。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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