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Monitoring the performance of vegetative treatment systems across subhumid and semiarid rainfall zones

机译:监测跨越水平和半干旱区域植物处理系统的性能

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Hydraulic loading of a vegetative treatment system (VTS) is an important factor of its performance. Water is the carrier of the nutrients from the feedlot onto the other components of the system. If a VTS can contain all applied water within a vegetative treatment area (VTA) then it will be able to control the nutrients as well. To determine the performance of VTS designs, four feedlots were studied across the state of South Dakota. Precipitation, VTA inflow, and VTA outflow were measured directly. Evapotranspiration (ET) was estimated using locally-measured weather parameters. Measurements showed that in six of the twelve site-years, VTS were able to prevent water from leaving the VTA. Two of the years that did have VTA releases were due to rainfalls in excess of a 25-year, 24-hour storm. This leaves four of the site years with releases under the 25-year, 24-hour storm limit and showed some of the possible design flaws that could be improved. Seasonal water releases from the VTA were all 5% or less of the seasonal inflow and precipitation that was applied to the VTA. To increase the performance of VTS, solids settling basins should have adequate size to contain runoff from a 25-year, 24-hour storm, a water restriction system to reduce the volumeflow rate or delay the flow from the basin, and a water distribution system that spreads water evenly and slowly across the VTA.
机译:营养处理系统(VTS)的液压装载是其性能的重要因素。水是从饲料中的营养素的载体到系统的其他组分上。如果VTS可以在营养处理区域(VTA)内含有所有施加的水,那么它也能够控制营养素。为了确定VTS设计的表现,在南达科他州的状态下研究了四个饲料。直接测量沉淀,VTA流入和VTA流出。使用局部测量的天气参数估计蒸发(ET)。测量表明,在十二个遗址的六年中,VTS能够防止水离开VTA。 vta发布的两年中的两年是由于超过25年的降雨,24小时暴风雨。这将在25年,24小时风暴限制下留下第四个网站,并显示出一些可能改善的可能设计缺陷。 VTA的季节性水释放均为季节性流入和降水量的所有5%或更少。为了提高VTS的性能,固体沉降盆地应具有足够的尺寸,以含有25年,24小时风暴,水限制系统的径流,以减少Volumflow率或延迟流域的流量,以及水分配系统将水均匀地蔓延,缓慢地跨越VTA。

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