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首页> 外文期刊>Journal of Hydrology >Water table dynamics in undisturbed, drained and restored blanket peat
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Water table dynamics in undisturbed, drained and restored blanket peat

机译:未扰动,排水和恢复的毯子泥炭的地下水位动态

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摘要

Peatland water table depth is an important control on runoff production, plant growth and carbon cycling. Many peatlands have been drained but are now subject to activities that might lead to their restoration including the damming of artificial drains. This paper investigates water table dynamics on intact, drained and restored peatland slopes in a blanket peat in northern England using transects of automated water table recorders. Long-term (18. month), seasonal and short-term (storm event) records are explored. The restored site had drains blocked 6. years prior to monitoring commencing. The spatially-weighted mean water table depths over an 18. month period were -5.8. cm, -8.9. cm and -11.5. cm at the intact, restored and drained sites respectively. Most components of water table behaviour at the restored site, including depth exceedance probability curves, seasonality of water table variability, and water table responses to individual rainfall events were intermediate between that of the drained and intact sites. Responses also depended on location with respect to the drains. The results show that restoration of drained blanket peat is difficult and the water table dynamics may not function in the same way as those in undisturbed blanket peat even many years after management intervention. Further measurement of hydrological processes and water table responses to peatland restoration are required to inform land managers of the hydrological success of those projects.
机译:泥炭地地下水位深度是径流生产,植物生长和碳循环的重要控制。许多泥炭地已被排干,但现在正在进行的活动可能导致其恢复,包括筑坝人工排水渠。本文利用自动地下水位记录仪的横断面,研究了英格兰北部毯子泥炭中完整,排水和恢复的泥炭地坡面的地下水位动态。探索了长期(18个月),季节性和短期(风暴事件)记录。恢复的站点在开始监测之前的6年内已堵塞了排水管。 18个月内的空间加权平均地下水位深度为-5.8。厘米-8.9厘米和-11.5。 cm分别位于完整,恢复和排水的位置。在恢复地点的地下水位行为的大多数组成部分,包括深度超过概率曲线,地下水位变化的季节性和地下水位对单个降雨事件的响应,都位于排水位和完好位点之间。响应还取决于排水管的位置。结果表明,排水干management的泥炭很难恢复,而且即使在管理干预后的许多年里,地下水位动力学也可能无法以与未扰动干blanket的方式相同的方式发挥作用。需要进一步测量水文过程和地下水位对泥炭地恢复的响应,以将这些项目的水文成功告知土地管理人员。

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