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小流域水文流量计算方法探讨
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作者 姜歆 张玉 《中文科技期刊数据库(全文版)工程技术》 2016年第9期264-264,共1页
伴随社会的不断发展,使得对水文小流域流量计算的重视度越来越高,且其在实际生活之中的作用也越发重要。水文小流域流量计算方法对河流水文状况的测算以及道桥建设的有关特征研究有重要意义。本文基于某地区水利枢纽工程,探讨小流域水... 伴随社会的不断发展,使得对水文小流域流量计算的重视度越来越高,且其在实际生活之中的作用也越发重要。水文小流域流量计算方法对河流水文状况的测算以及道桥建设的有关特征研究有重要意义。本文基于某地区水利枢纽工程,探讨小流域水温流量计算及控制要点,并提出水文资料的收集和审查分析,探讨水文计算成果的合理性,以提高小流域水文流量计算的准确性和有效性,仅供相关人员参考。 展开更多
关键词 小流域水文 水文流量 计算方法
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水文小流域流量计算方法及应用实践探微 被引量:1
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作者 刘茜 《甘肃科技》 2016年第11期65-67,共3页
伴随社会的不断发展,使得对水文小流域流量计算的重视度越来越高,且其在实际生活之中的作用也越发重要。水文小流域流量计算方法对河流水文状况的测算以及道桥建设的有关特征研究有重要意义。水文小流域流量因各自所处的地理环境和水域... 伴随社会的不断发展,使得对水文小流域流量计算的重视度越来越高,且其在实际生活之中的作用也越发重要。水文小流域流量计算方法对河流水文状况的测算以及道桥建设的有关特征研究有重要意义。水文小流域流量因各自所处的地理环境和水域状况存在差别,所以它的实际水文流量计算法也都将不同。其中,在进行水文流量计算时,主要通过数理统计法、径流形成法等来对水文小流域流量开展计算与评测。首先着重分析了这两种方法在运用时的基本特征,然后结合以某小流域流量计算的应用实践,分析了计算方法的选择和应用过程。 展开更多
关键词 水文小流域 计算方法 应用实践
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初探小河站显著性水平α值的选用 被引量:1
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作者 曲永和 周玛莉 《九江师专学报》 2003年第6期16-19,共4页
本文从偏离数值检验α的取值问题切入 ,用数理统计方法对小流域水文站显著性水平α值的选用做一讨论 ,以便在实际工作中 ,使小流域水文站显著性水平α值的选用较为合理。
关键词 偏离数值 数理统计方法 小流域水文 显著性水平α值 水位流量关系曲线 定线精度 曲线检验 假设检验
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Study on Hydrography and Small-Scale Process over Zhoushan Sea Area
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作者 WU He DU Min +1 位作者 WANG Xiaoyong MENG Jie 《Journal of Ocean University of China》 SCIE CAS 2015年第5期829-834,共6页
This paper mainly analyzes the tidal characteristics and small-scale mixing process near Zhoushan Islands. First, the spectral analysis and wavelet analysis are adopted for the measured tide level data and tidal curre... This paper mainly analyzes the tidal characteristics and small-scale mixing process near Zhoushan Islands. First, the spectral analysis and wavelet analysis are adopted for the measured tide level data and tidal current data from the Zhoushan sea area, which indicate that the main tidal cycle near Hulu Island and Taohua Island is semi-diurnal cycle, the diurnal cycle is subordinate. Both their intensities are changed periodically, meanwhile, the diurnal tide becomes stronger when semi-diurnal tide becomes weak. The intensity of baroclinie tidal current weakens at first and then strengthens from top to bottom. Then, in this paper, the Gregg-Henyey (G-H) parameterization method is adopted to calculate the turbulent kinetic energy dissipation rate based on the measured temperature and tidal current data. The results of which shown that the turbulent kinetic energy dissipation rate around Hulu Island is higher than that around Taohua Island. In most cases, the turbulent kinetic energy dissipation rate during spring tide is larger than that during the neap tide; the turbulent kinetic energy dissipation rate in the surface layer and the bottom layer are higher than that in the intermediate water; the changes of turbulent kinetic energy dissipation rate and tidal current are basically synchronous The modeled turbulent kinetic energy dissipation rate gets smaller with the increase of the stratification, however, gets larger with the increase of shearing. 展开更多
关键词 tidal characteristics parameterization method turbulent kinetic energy dissipation rate
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Application of the SCS-CN Model to Runoff Estimation in a Small Watershed with High Spatial Heterogeneity 被引量:26
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作者 XIAO Bo WANG Qing-Hai +2 位作者 FAN Jun HAN Feng-Peng DAI Quan-Hou 《Pedosphere》 SCIE CAS CSCD 2011年第6期738-749,共12页
For reasons of simplicity, the most commonly used hydrological models are based on the Soil Conservation Service Curve Number (SCS-CN) model, which is probably a good choice for the estimation of runoff on the Loess... For reasons of simplicity, the most commonly used hydrological models are based on the Soil Conservation Service Curve Number (SCS-CN) model, which is probably a good choice for the estimation of runoff on the Loess Plateau of China; however, the high spatial heterogeneity, mainly caused by a fragmented landform and variations in soil type, may limit its applicability to this region. Therefore, applicability of the SCS-CN model to a small watershed, Liudaogou on the plateau, was evaluated and the most appropriate initial abstraction ratio (I~/S) value in the model was quantified by the inverse method. The results showed that the standard SCS-CN model was applicable to the estimation of runoff in the Liudaogou watershed and the model performance was acceptable according to the values of relative error and Nash-Sutcliffe efficiency. The most appropriate Ia/S value for the watershed was 0.22 because with this modified Ia/S value, the model performance was slightly improved. The model performance was not sensitive to the modification of the Ia/S value when one heavy rainfall event (50.1 mm) was not considered, which implied that the model, using a standard Ia/S value, can be recommended for the Liudaogou watershed because single rainfall events exceeding 50 mm seldom occurred in that region. The runoff amount predicted for the Liudaogou watershed by the SCS-CN model, using the modified Ia/S value, increased gradually with increasing rainfall when rainfall values were lower than 50 mm, whereas the predicted amount increased rapidly when the rainfall exceeded 50 mm. These findings may be helpful in solving the problem of serious soil and water loss on the Loess Plateau of China. 展开更多
关键词 curve number initial abstraction ratio model performance RAINFALL soil and water loss
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