Xiaofeng Zhang’s research while affiliated with Tsinghua University and other places

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Publications (2)


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
  • Article

April 2014

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27 Reads

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6 Citations

Frontiers of Environmental Science & Engineering

Xiaofeng Zhang

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Guanghe Li

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.


Runoff and sediment modeling in a peri-urban artificial landscape: Case study of Olympic Forest Park in Beijing

April 2013

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49 Reads

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20 Citations

Journal of Hydrology

Xiaofeng Zhang

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Shu Hu

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[...]

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Guanghe Li

Highlights ► Scale appropriate modeling is necessary in the peri-urban artificial landscape. ► Spatially-varied runoff and sediment potentials necessitate site-specific BMPs. ► Overland features, especially constructed channels, affect hydrological response.

Citations (2)


... Meanwhile, the spatial variation of SOC stocks in the rural forest was affected by topographic parameters (R 2 > 0.49) ( Table 2). Studies reported that topographic conditions such as elevation and slope angle affect the soil moisture variability and carbon dynamics (Bellingrath-Kimura et al., 2015;Zhang et al., 2015). There were no significant correlations between topographic parameters (i.e., slope angle and elevation) and SOC stocks within urban forests (Table 2). ...

Reference:

The magnitude and causes of edge effects on soil organic carbon stocks within and across urban to rural forest patches
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
  • Citing Article
  • April 2014

Frontiers of Environmental Science & Engineering

... Research and practice in the last decades has shown that urbanization has an adverse impact on the urban hydrological processes, such as the expansion of impervious areas accelerating runoff flow velocity and enlarging peak flow and runoff volume, resulting in increased risk of urban flood and water-logging [20]. In order to mitigate urban water-logging and flood disasters and reduce the flood losses, a large number of researchers have explored the quantitative impacts of urbanization on urban hydrological processes under extreme precipitation using the combination of field observations and hydrodynamic and hydrological models [21][22][23][24][25][26][27]. In addition, urban flooding risk assessment methods were developed based on various risk assessment theories [28]; e.g., the risk matrix method [29]. ...

Runoff and sediment modeling in a peri-urban artificial landscape: Case study of Olympic Forest Park in Beijing
  • Citing Article
  • April 2013

Journal of Hydrology