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首页> 外文期刊>Waste management & research >Assessing the use of poplar tree systems as a landfill evapotranspiration barrier with the SHAW model
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Assessing the use of poplar tree systems as a landfill evapotranspiration barrier with the SHAW model

机译:通过SHAW模型评估将杨树系统用作垃圾掩埋蒸散屏障

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The use of poplar tree systems (PTS) as evapotranspiration barriers on decommissioned landfills is gaining attention as an option for leachate management. This study involved field-testing the Simultaneous Heat and Water (SHAW) model for its ability to reliably estimate poplar transpiration, volumetric soil water content, and soil temperature at a landfill located in southern Ontario, Canada. The model was then used to estimate deep drainage and to ascertain the influence of a young PTS on the soil water balance of the landfill cover. The SHAW model tended to underestimate poplar transpiration [mean difference (MD) ranged from 0.33 to 3.55 mm on a daily total basis] and overestimate volumetric soil water content by up to 0.10m~(3) m~(-3). The model estimated soil temperature very well, particularly in the upper 1 m of the landfill cover (MD ranged from -0.1 to 1.6 x deg C in this layer). The SHAW model simulations showed that deep drainage decreased appreciably with the presence of a young PTS largely through increased interception of rainfall, and that PTS have a good potential to act as effective evapotranspiration barriers in northern temperate climate zones.
机译:作为渗滤液管理的一种选择,将杨树系统(PTS)用作退役垃圾填埋场的蒸发蒸腾障碍已受到关注。这项研究涉及对同时供热(SHAW)模型能够可靠地估计位于加拿大安大略省南部垃圾填埋场的杨树蒸腾作用,土壤体积水含量和土壤温度的能力的现场测试。然后使用该模型估算深层排水量,并确定年轻的PTS对填埋场土壤水分平衡的影响。 SHAW模型倾向于低估杨树的蒸腾作用[平均日差(MD)范围为每天0.33至3.55 mm],高估土壤体积含水量至0.10m〜(3)m〜(-3)。该模型非常好地估计了土壤温度,特别是在垃圾掩埋场的上部1 m(该层的MD范围为-0.1到1.6 x摄氏度)。 SHAW模型模拟表明,年轻的PTS的存在会通过增加对降雨的拦截而使深层排水显着减少,而且PTS在北部温带气候区具有作为有效蒸散障碍的良好潜力。

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