首页> 外文OA文献 >Modelling of water circulation and the dynamics of phytoplankton for the analysis of eutrophication
【2h】

Modelling of water circulation and the dynamics of phytoplankton for the analysis of eutrophication

机译:水体富营养化分析的水循环模型和浮游植物动力学

摘要

The eutrophication and algal blooms are problems in many Finnish lakes and sea areas. One possible way to approach the problem is mathematical modelling. If the most important processes have been successfully modelled, it is easy to calculate the effects of nutrient load changes. This thesis presents experiences on developing and applying eutrophication models.The pre-calculated flow fields are the most important input to the water quality model, so the applications of the flow model are examined in two papers. The results indicate that the flow model can produce typical flows caused by wind. The simulations of the timing of upwelling were also successful. The excessive vertical diffusion can cause problems in eutrophication model applications.The results of simulations indicate that the greenhouse effect will advance and enlarge the spring bloom of phytoplankton. However, the average phytoplankton biomass in the Gulf of Finland will be near current level, defined in these scenarios by the available amount of nutrients almost unchanged due to the insignificant changes in the external nutrient inputs.The more significant nutrient load reductions from the major loading points have a clearly decreasing effect on the total algal biomasses even in one year long simulations. When the nitrogen fixing cyanobacteria was taken into account in the simulation, the results indicated that the phosphorus removal from St. Petersburg would decrease both average cyanobacteria and other algae biomasses. The biomass of other algae might increase in the zone where additional nitrogen is transported from the east. The Finnish national agenda, which is nitrogen dominated, does not seem to be an effective way to fight against accumulations of cyanobacteria. However, the total phytoplankton biomass will decrease near the Finnish coast.
机译:富营养化和藻华是许多芬兰湖泊和海域的问题。解决该问题的一种可能方法是数学建模。如果已经成功地对最重要的过程进行了建模,则很容易计算出养分负荷变化的影响。本文介绍了富营养化模型的开发和应用经验。预先计算的流场是水质模型最重要的输入,因此在两篇论文中对流模型的应用进行了研究。结果表明,该流模型可以产生风引起的典型流。上升时间的模拟也很成功。过度的垂直扩散会在富营养化模型的应用中引起问题。模拟结果表明,温室效应将促进并扩大浮游植物的春季开花。然而,由于外部养分投入的微小变化,芬兰湾的浮游植物平均生物量将接近当前水平,在这些情况下,养分的可用量几乎保持不变。即使在一年的模拟中,这些点对总藻类生物量的影响也明显减少。当在模拟中考虑固氮蓝细菌时,结果表明从圣彼得堡去除磷将降低平均蓝细菌和其他藻类生物量。其他藻类的生物量可能在从东部输送更多氮的区域增加。以氮为主导的芬兰国家议程似乎并不是对抗蓝藻积累的有效方法。但是,芬兰海岸附近的浮游植物总生物量将减少。

著录项

  • 作者

    Inkala Arto;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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