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Impact evaluation of a pisciculture in the Tucuruí reservoir (Pará, Brazil) using a two-dimensional water quality model

机译:使用二维水质模型评估Tucuruí水库(巴西帕拉)的养鱼业的影响

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The Tucuruí reservoir, Pará State, Brazil, has one of the largest flooded areas in Brazil and its viability for aquaculture is being evaluated by local government in pilot projects. In this context, the purpose of this study is to assess the impact of a pisciculture in the water quality of the reservoir, by combining field data with model simulations. Hydrodynamics and water quality was modeled using CE-QUAL-W2. The model was validated using about 5. years of field data of temperature, nitrate, ammonia, phosphorus, total suspended solids (TSSs), dissolved oxygen and chlorophyll a. The model was able to reproduce horizontal and vertical gradients and their temporal variability. After validation, the model was used to simulate the response of water quality to various management scenarios of the pisciculture. Results show that solely based on phosphorus index, an increase of 30% occurs from 2007 to 2011, and at least 10% from 2008 to 2011. Based on this, the system tends to change its trophic state from oligotrophic to mesotrophic. However, if we consider chlorophyll a (Chl. a) as an indicator, no change in the trophic state is observed, since even with a 100% increase of the phosphorus load, the concentration of Chl. a remains oligotrophic (<4. μg/L) during the simulated period. Thus, the model results suggest that Chl. a should be used as the key indicator to assess the trophic state of the system, since the nutrients may be in excess in the environment without promoting primary production.
机译:巴西帕拉州Tucuruí水库是巴西最大的洪灾地区之一,当地政府正在通过试点项目评估其在水产养殖方面的生存能力。在这种情况下,本研究的目的是通过结合现场数据和模型模拟来评估养鱼对水库水质的影响。使用CE-QUAL-W2对流体动力学和水质进行建模。使用大约5年的温度,硝酸盐,氨,磷,总悬浮固体(TSSs),溶解氧和叶绿素a的现场数据对模型进行了验证。该模型能够再现水平和垂直梯度及其时间变异性。验证后,该模型用于模拟水质对养鱼管理各种方案的响应。结果表明,仅根据磷指数,从2007年到2011年,营养水平会增加30%,从2008年到2011年,至少增加10%。在此基础上,系统倾向于将营养状态从贫营养状态转变为中营养状态。但是,如果我们以叶绿素a(Chl。a)为指标,则即使在磷负载量增加100%时,Chl的浓度也不会观察到营养状态的变化。在模拟期间,a仍然是贫营养的(<4。g / L)。因此,模型结果表明Chl。应将a用作评估系统营养状态的关键指标,因为环境中营养物质可能过多而又不促进初级生产。

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