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Assessing the Effects of Different Cropping Patterns on Drainage Capability of the Southern Riverine Basin

机译:评估不同种植模式对南方河流盆地排水能力的影响

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Compared with natural watersheds, only a few studies have been conducted to take the specific characteristics of farmed watersheds into account in hydrological modeling. The purpose of this paper is to develop a conceptual rainfall-runoff model with which both the impact of human activities, especially the existence of drainage practices and ditch network, on flood e-vents and the effects of different cropping patterns on drainage capability of the southern riverine basin could be assessed. The model uses the monolayer soil-structure Tank model with surface water layer and the QualHYMO model to calculate the runoff of paddy fields and dry lands respectively. The Saint-Venant equations are used for flow routing through the main drainage system, and the special technique is employed to simulate the discharges of sluices and pumps. Applications of the model are demonstrated for Luoshan drainage basin, which is located in Hubei province. To analyze the role of cropping patterns, six hypothetical scenarios are discussed. Results show that the drainage system of Luoshan drainage basin can dispose of the excess water from 3-day rainfall totals with return periods of 6. 9 years in five days and with the area of paddy fields being increased, the drainage capability would be strengthened.
机译:与天然流域相比,已经进行了一些研究,以考虑水文模拟中养殖流域的特定特征。本文的目的是开发一种概念降雨径流模型,其中人类活动的影响,尤其是排水措施和沟渠网络的影响,洪水e-obents以及不同种植模式对排水能力的影响可以评估南方河流盆地。该模型采用与地表水层的单层土结构罐模型和Qualhymo模型来计算稻田和干陆的径流。 Saint-Venant方程用于通过主排水系统的流量路由,采用特殊技术来模拟闸瓦和泵的放电。罗山排水盆地的应用展示了该模型,位于湖北省。分析裁剪模式的作用,讨论了六种假设情景。结果表明,罗山排水盆地的排水系统可以从3天的降雨总量处理过量的水,返回时间为6. 9年,在五天内,随着稻田的区域增加,排水能力将得到加强。

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