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Influence of Landscape Retention Capacity Upon Flood Processes in Jičínka River Basin

机译:景观保留能力对Jičínka河流域洪水过程的影响

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摘要

In a survey of landscape retention capability results of measurements obtained during the disastrous flood in June 2009 were used. The original method based on the balance among the daily precipitation fallen on the basin with discharges in the final profile was used on the analogy with transformation of the flood discharge through a reservoir. Following basin retention are defined: dynamic Rd, static Rs including the underground retention Rug and evaporation E, and total Rt. Main principal criteria were the effective static retention of the basin Rsef and a coefficient of the effective static basin retention ρsef (3). The coefficient of reducing flood culmination λcul (4) was calculated, too. Also investigated factors having the most influence on a retention capacity of a basin are introduced. Summary of results are shown in the Tab. I. Values of the most important criterion quantities are marked in shadow colour. The results show, for example, that the found out coefficient ρsef is 0.52. It means that the soil (and slightly a vapour, too) in the basin caught 52% of volume of wave in the time of culmination discharge in a basin. Also some further interested findings are introduced in the results and conclusions.
机译:在2009年6月在灾难性洪水期间获得的景观保留能力调查的调查。基于在最终配置文件中排出的盆地的每日降水平衡的原始方法用于通过储层通过洪水排放的转换进行类比。在盆地保留之后定义:动态RD,静态RS,包括地下固定地毯和蒸发E,以及全rt。主要主要标准是盆地RSEF的有效静态保留和有效静态盆腔保留ρsef(3)的系数。还计算了减少洪水突出λcul(4)的系数。还介绍了对盆地保持能力影响最大的调查因素。结果摘要显示在标签中。 I.最重要的标准数量的值以阴影颜色标记。结果表明,发现的系数ρsef为0.52。这意味着盆地中的土壤(和略微蒸汽)在盆地中的高温化排出时捕获了52%的波浪量。结果和结论也介绍了一些进一步的进一步的调查结果。

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