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Design framework for sizing free water surface wetlands subject to intermittent wastewater loading in aquaculture facilities.

机译:在水产养殖设施中承受间歇性废水负荷的自由水面湿地的规模设计框架。

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摘要

The rapid growth of aquaculture has provided economic growth and food security especially in the developing world, but the pervasive lack of aquaculture pond wastewater treatment before discharge increases coastal water pollution. Although free water surface (FWS) treatment wetlands have potential to treat aquaculture wastewater, the unique harvesting methods used in aquaculture can cause removal variability leading to non-compliance if designed improperly. During harvest, pond wastewater flow and pollutant loading are transient and intermittent. Existing treatment wetland sizing guidelines assume steady-state pollutant transport, steady-flow conditions which are not compatible with aquaculture operation. Three improved design models of increasing complexity are developed for treatment wetlands that simulate incomplete mixing, intermittent loading, and transient wastewater storage. Incomplete mixing is achieved with a tanks-in-series model using three tanks and is capable of simulating variable volumes with different removal constants. The wetland outlet pollutant concentration due to pond releases at different times is captured using the superposition principle. Treatment wetland storage is assumed constant in Model I with transient pollutant transport while the other models assume transient flow and pollutant transport subject to outflow controlled storage (Model II) and inflow/outflow controlled storage (Model III). The models were then linked to three multi-objective, mixed-integer nonlinear optimization models to estimate wetland area. The optimization models are solved using genetic algorithm methodology and the linked simulation-optimization models are referred to as decision support tools (DST) in this study. First-order-second-moment (FOSM) uncertainty analysis was integrated with the combined simulation-optimization model to develop a reliability-based design protocol for treatment wetland design. This approach explicitly considers parametric uncertainty as part of the design process and can be used to address issues related to the treatment variability of wetlands. The FOSM results show that the assumption of steady flow in DST I results in the most conservative design. In contrast, by including variable flows, DST II and DST III have lower design area uncertainty but require more input parameter data which may not be easily available. A decision support flow chart has been developed to provide planners with a methodology to aid in choosing and applying the appropriate DST for their specific conditions.
机译:水产养殖的快速增长为经济增长和粮食安全提供了保障,特别是在发展中国家,但是普遍缺乏对水产养殖池塘废水进行排放前的处理,这加剧了沿海水污染。尽管自由水面(FWS)处理湿地具有处理水产养殖废水的潜力,但是如果设计不当,水产养殖中使用的独特捕捞方法可能会导致去除变异性,从而导致不合格。在收获期间,池塘废水流量和污染物负荷是短暂且间歇的。现有的湿地处理尺寸指南均假设污染物的稳态运输,稳态流动条件与水产养殖操作不兼容。针对处理湿地,开发了三种复杂度不断提高的改进设计模型,这些模型模拟了不完全混合,间歇装载和瞬时废水存储的情况。使用三个水箱的串联水箱模型实现了不完全混合,并且能够模拟具有不同去除常数的可变体积。使用叠加原理来捕获由于池塘在不同时间释放造成的湿地出口污染物浓度。模型I中假定处理湿地的存储量是恒定的,且具有瞬态污染物迁移,而其他模型均假定瞬态流量和污染物的迁移受制于流出控制的存储(模型II)和流入/流出控制的存储(模型III)。然后将模型链接到三个多目标,混合整数非线性优化模型,以估计湿地面积。使用遗传算法方法对优化模型进行求解,在本研究中,链接的仿真优化模型被称为决策支持工具(DST)。将一阶二阶矩(FOSM)不确定性分析与组合的模拟优化模型集成在一起,以开发基于可靠性的处理湿地设计的设计方案。这种方法明确地将参数不确定性视为设计过程的一部分,可用于解决与湿地处理变异性相关的问题。 FOSM结果表明,在DST I中稳定流动的假设导致了最保守的设计。相反,通过包含可变流量,DST II和DST III具有较低的设计区域不确定性,但需要更多的输入参数数据,而这些数据可能不容易获得。已经制定了决策支持流程图,以为规划人员提供一种方法,以帮助他们针对特定条件选择和应用适当的DST。

著录项

  • 作者

    Dyson, Brian Edward.;

  • 作者单位

    Texas A&M University - Kingsville.;

  • 授予单位 Texas A&M University - Kingsville.;
  • 学科 Engineering Environmental.; Agriculture Fisheries and Aquaculture.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;水产、渔业;
  • 关键词

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