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The effect of texture and irrigation on the soil moisture vertical-temporal variability in an urban artificial landscape: a case study of Olympic Forest Park in Beijing

机译:质地和灌溉对城市人工景观土壤水分垂直时空变化的影响-以北京奥林匹克森林公园为例

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Soil moisture variability in natural landscapes has been widely studied; however, less attention has been paid to its variability in the urban landscapes with respect to the possible influence of texture stratification and irrigation management. Therefore, a case study was carried out in the Beijing Olympic Forest Park to continuously monitor the soil in three typical profiles from 26 April to 11 November 2010. The texture stratification significantly affected the vertical distribution of moisture in the non-irrigated profile where moisture was mostly below field capacity. In the profile where irrigation was sufficient to maintain moisture above field capacity, gravity flow led to increased moisture with depth and thus eliminated the influence of texture. In the non-irrigated sites, the upper layer (above 80 cm) exhibited long-term moisture persistence with the time scale approximating the average rainfall interval. However, a coarse-textured layer weakened the influence of rainfall, and a fine-textured layer weakened the influence of evapotranspiration, both of which resulted in random noise-like moisture series in the deeper layers. At the irrigated site, frequent irrigation neutralized the influence of evapotranspiration in the upper layer (above 60 cm) and overshadowed the influence of rainfall in the deeper layer. As a result, the moisture level in the upper layer also behaved as a random noise-like series; whereas due to deep transpiration, the moisture of the deep layer had a persistence time-scale longer than a month, consistent with characteristic time-scales found for deep transpiration.
机译:已经广泛研究了自然景观中土壤水分的变异性;但是,在纹理分层和灌溉管理的可能影响方面,很少关注城市景观中的可变性。因此,从2010年4月26日至11月11日,在北京奥林匹克森林公园进行了一项案例研究,以连续监测三个典型剖面中的土壤。质地分层显着影响了非灌溉剖面中水分的垂直分布。大多低于实地能力。在灌溉足以将水分保持在田间持水量以上的剖面中,重力流导致水分随深度增加,从而消除了质地的影响。在非灌溉地区,上层(80厘米以上)表现出长期的水分持久性,时间尺度接近平均降雨间隔。但是,粗糙的层减弱了降雨的影响,而精细的层减弱了蒸散的影响,这两者都导致了较深层的随机噪声样水分序列。在灌溉地点,频繁灌溉抵消了上层(60厘米以上)蒸散的影响,并遮盖了较深层降雨的影响。结果,上层的水分含量也表现为类似噪声的随机序列。而由于深层蒸腾作用,深层水分的持续时间尺度大于一个月,这与深层蒸腾的特征时间尺度一致。

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