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Evaluation of performance and management strategies for a nursery irrigation recycling system designed for pollution control.

机译:评估用于污染控制的苗圃灌溉循环系统的性能和管理策略。

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摘要

Scope and method of study. The scope of this study was to evaluate, during both storm and non-storm events, the performance and management strategies of a nursery irrigation recycling system designed for pollution control. One objective of the study was to assess the overall performance of eight (8) on-site retention basins as a means to minimize offsite discharges of nutrient-enriched water during storm events. Another objective was to prepare an interactive model of a recycling irrigation system to evaluate water strategies for pollution control for storm and non-storm conditions. Methods used to meet the scope and objectives included the collection and chemical analyses of surface water samples from the retention basins on a monthly basis for one year. Additionally, storm water discharge samples from the facility were collected during the same time period and chemically analyzed. The test results were used to determine spatial and temporal patterns in the water quality and to identify the factors and processes that influenced those conditions.;Findings and conclusions. Based on the test results, several first flushes containing high nutrient concentrations occurred at the site as a result of storm events. As such, an appropriate design to capture and recycle a storm's first flush should be included in a plant nursery's best management practice and pollution control program. Along with proper sizing, effective basin designs include direct by-pass via a curbing system and plug flow through long basins that parallel surface water flow. The two (2) analytical and interactive models prepared for this study are capable of modeling many site-specific parameters and evaluating various water management strategies. The storm model has other additional pollution management capabilities due to its ability to estimate storm water runoff volumes and determine the height of freeboard needed in select basins. The system, including the eight retention basins and an irrigation recycling system, proved to be an effective pollution control technology and best management practice for a plant nursery.
机译:研究范围和方法。本研究的范围是在暴风雨和非暴风雨事件中评估专为控制污染而设计的苗圃灌溉回收系统的性能和管理策略。该研究的一个目标是评估八(8)个现场滞留池的总体性能,以此作为在暴风雨期间最大程度地减少营养丰富的水在场外排放的一种手段。另一个目标是准备一个循环灌溉系统的交互式模型,以评估用于控制暴风雨和非暴风雨状况的水策略。达到范围和目标的方法包括每月从滞留池中收集和化学分析地表水样品,为期一年。此外,在同一时间段收集了工厂的雨水排放样品并进行了化学分析。测试结果用于确定水质的时空格局,并确定影响这些条件的因素和过程。根据测试结果,由于暴风雨事件,在该地点发生了数次含有高营养物浓度的首次冲洗。因此,植物苗圃的最佳管理实践和污染控制计划中应包含一个适当的设计,以捕获和回收暴风雨的第一次冲刷。除适当的尺寸设计外,有效的水盆设计还包括通过路边系统直接旁路和通过平行于地表水流的长水盆的塞流。为该研究准备的两(2)个分析和交互式模型能够建模许多特定于站点的参数并评估各种水管理策略。风暴模型还具有其他额外的污染管理功能,因为它具有估算雨水径流量和确定选定流域所需干舷高度的能力。该系统包括八个保留池和一个灌溉回收系统,被证明是一种有效的污染控制技术,也是育苗场的最佳管理实践。

著录项

  • 作者

    Alexander, Thomas Jack.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Agriculture Agronomy.;Environmental Sciences.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 205 p.
  • 总页数 205
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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