...
首页> 外文期刊>International Journal of Phytoremediation >Using pilot test data to refine an alternative cover design in Northern California.
【24h】

Using pilot test data to refine an alternative cover design in Northern California.

机译:使用试验测试数据来完善北加州的替代覆盖设计。

获取原文
获取原文并翻译 | 示例
           

摘要

Two instrumented test sections were constructed in summer 1999 at the Kiefer Landfill near Sacramento, California to test the hydraulic performance of two proposed alternative final covers. Both test sections simulated monolithic evapotranspiration (ET) designs that differed primarily in thickness. Both were seeded with a mix of two perennial and one annual grass species. Oleander seedlings were also planted in the thicker test section. Detailed hydrologic performance monitoring of the covers was conducted from 1999 through 2005. The thicker test section met the performance criterion (average percolation of <3 mm/y). The thinner test section transmitted considerably more percolation (average of 55 mm/y). Both test sections were decommissioned in summer 2005 to investigate changes in soil hydraulic properties, geomorphology, and vegetation and to collect data to support a revised design. Field data from hydrologic monitoring and the decommissioning study were subsequently included in a hydrologic modeling study to estimate the performance of an optimized cover system for full-scale application. The decommissioning study showed that properties of the soils changed over the monitoring period (saturated hydraulic conductivity and water holding capacity increased, density decreased) and that the perennial grasses and shrubs intended for the cover were out-competed by annual species with shallower roots and lesser capacity for water uptake. Of these changes, reduced ET from the shallow-rooted annual vegetation is believed to be the primary cause for the high percolation rate from the thinner test section. Hydrologic modeling suggests that the target hydraulic performance can be achieved using an ET cover with similar thickness to the thin test section if perennial vegetation species observed in surrounding grasslands can be established. This finding underscores the importance of establishing and maintaining the appropriate vegetation on ET covers in this climate.Digital Object Identifier http://dx.doi.org/10.1080/15226514.2011.607871
机译:1999年夏季,在加利福尼亚州萨克拉曼多附近的基弗垃圾填埋场建造了两个仪器测试部分,以测试两个建议的替代最终覆盖层的水力性能。两个测试部分都模拟了主要厚度不同的整体式蒸发蒸腾(ET)设计。两种种子都混有两种多年生和一年生草种。夹竹桃幼苗也种植在较厚的试验区。从1999年到2005年,对覆盖层进行了详细的水文性能监测。较厚的试验段符合性能标准(平均渗流<3 mm / y)。较薄的测试段可传输更多的渗滤(平均55毫米/年)。这两个测试段均于2005年夏季退役,以调查土壤水力特性,地貌和植被的变化,并收集数据以支持修订后的设计。随后将来自水文监测和退役研究的现场数据包括在水文建模研究中,以评估用于全面应用的优化覆盖系统的性能。退役研究表明,在监测期内,土壤的性质发生了变化(饱和水导率和持水量增加,密度降低),而用于掩盖的多年生草和灌木的根系较浅而根系较少的一年生物种的竞争能力较弱。吸水能力。在这些变化中,从较浅的一年生植被中减少的ET被认为是较薄的测试部分的高渗滤率的主要原因。水文模型表明,如果可以建立在周围草地上观察到的多年生植被物种,则可以使用厚度与薄测试部分相似的ET覆盖层来实现目标水力性能。这一发现强调了在这种气候下在ET覆盖层上建立和维持适当植被的重要性。数字对象标识符http://dx.doi.org/10.1080/15226514.2011.607871

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