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在北海市三塘110KV变电站接地网系统改造工程实践中,通过不等长接地体技术及多种将阻材料搭配使用,克服了原接地网接地电阻值增大因素,并对变电站接地网改造和施工工艺进行设计。 相似文献
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Increasing greening of planet Earth to slow down the rise of atmospheric CO2 concentrations is certainly desirable;however, its consequences on water resources are less affirmative and thus are a matter of wide concern. China, as the largest and most successful country of the world in terms of artificial revegetation, is naturally the focus of the concerns and warnings. Based on previous studies, we analyzed the mechanism for the effects of climate and watershed characteristics on water resources,explained various hydrological results and phenomena, and considered the ways in which water consumption by artificial revegetation projects can be reduced. Moreover, some guidelines are suggested for artificial revegetation at watershed scale with consideration of water resource sustainability. The findings of this study highlight the need for more top-down approaches when studying the mechanism of "forest and water". 相似文献
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Impacts of native vegetation on the hydraulic properties of the concentrated flows in bank gullies 总被引:1,自引:0,他引:1
SU Zheng-an HE Zhou-yao ZHOU Tao WANG Jun-jie WANG Xiao-yi WANG Li-juan FANG Hai-dong SHI Liang-tao LIU Yi-han WU Zuo 《山地科学学报》2021,(4):907-922
To quantify the impacts of native vegetation on the spatial and temporal variations in hydraulic properties of bank gully concentrated flows, a series of in situ flume experiments in the bank gully were performed at the Yuanmou Gully Erosion and Collapse Experimental Station in the dry-hot valley region of the Jinsha River, Southwest China. This experiment involved upstream catchment areas withone-and two-year native grass(Heteropogon contortus) and bare land drained to bare gully headcuts, i.e., Gullies 1, 2 and 3. In Gully 4, Heteropogon contortus and Agave sisalana were planted in the upstream catchment area and gully bed, respectively. Among these experiments, the sediment concentration in runoff in Gully 3 was the highest and that in Gully 2 was the lowest, clearly indicating that the sediment concentration in runoff obviously decreased and the deposition of sediment obviously increased as the vegetation cover increased. The concentrated flows were turbulent in response to the flow discharge. The concentrated flows in the gully zones with native grass and bare land were sub-and supercritical, respectively. The flow rate and shear stress in Gully 3 upstream catchment area were highest among the four upstream catchment areas, while the flow rate and shear stress in the gully bed of Gully 4 were lowest among the four gully beds, indicating that native grass notably decreased the bank gully flow rate and shear stress. The Darcy–Weisbach friction factor(resistance f) and flow energy consumption in the gully bed of Gully 4 were notably higher than those in the other three gully beds, clearly indicating that native grass increased the bank gully surface resistance and flow energy consumption. The Reynolds number(Re), flow rate, shear stress, resistance f, and flow energy consumption in the gully beds and upstream areas increased over time, while the sediment concentration in runoff and Froude number(Fr) decreased. Overall, increasing vegetation cover in upstream catchment areas and downstream gully beds of the bank gully is essential for gully erosion mitigation. 相似文献
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天津市地面沉降区地下水开采指标综合评定方法研究 总被引:1,自引:0,他引:1
实行地面沉降控制和地下水资源的统一管理,是天津市地面沉降防治工作的特色。本文针对地下水超采是影响天津市地面沉降主要因素的现状,通过对多年地面沉降监测以及地下水资源开发利用数据的分析,首先在全市范围内初步确定各乡镇2007年地下水开采指标或维持2005年实际开采水平,或选用一元回归分析方法建立地面沉降预测模型。在建模过程中,应用地质系统科学理论,综合考虑2001~2005年各年度地面沉降和地下水水位动态,将天津市划分为若干个子系统,每一子系统作为一个回归分析单元。为了将各计算单元的预测结果具体到各乡镇地下水资源开采指标制定中,结合各乡镇地面沉降现状和地下水替换水源条件,并根据计算单元内各乡镇地下水开采强度、地下水超采程度、沉降敏感度以及地下水位超限程度等因素进行压采规模的综合分级。这一方法已得到我市相关水资源管理部门的认同,并取得了较好的实践效果。 相似文献
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通过分析3种传统数据模型的特点,得出它们在管理地理复杂对象方面的局限性,从而引出了面向对象数据模型。本文利用面向对象数据模型中的各种操作,以基本地理对象为基础构建复杂地理对象,并且在VC 6.0平台上实现了面向对象几何数据模型。 相似文献