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991.
昆明王大桥房屋地基开裂变形是在脆弱的地质环境条件下,未经工程勘察,盲目大兴土木,破坏生态环境而造成工程危害的典型实例。本文根据该地特殊的环境、破坏性的工程活动及房屋建筑开裂变形后进行勘察所获得的丰富翔实的工程地质资料,对该处房屋建筑变形机理进行了综合性分析研究,并对其发展趋势作出预测。 相似文献
992.
一个用于面板坝流变分析的堆石流变模型 总被引:21,自引:6,他引:15
在前人工作的基础上, 从宏观上建立了一个用于面板坝流变分析的堆石流变模型: 堆石的瞬时弹塑性变形由椭圆-抛物双屈服面模型确定,并计入时间效应, 由双曲线函数经验公式计算堆石与时间有关的粘塑性变形。通过现场实测结果的反分析验证了模型的可靠性。 相似文献
993.
994.
复合土钉支护技术在基坑支护工程中的应用——以广州地区为例 总被引:6,自引:0,他引:6
复合土钉支护技术是在土钉支护结构中复合其他土体加固技术的综合支护技术 ,是近年来在城市建筑深基坑支护工程中发展起来的一种具有中国特色的土钉支护技术。通过工程实例讨论了广州地区复合土钉支护工程中使用的基本支护结构、施工技术和工艺流程 ,并在此基础上提出了建议和意见 相似文献
995.
996.
根据室内外大量调查测试资料,对重庆市丰都县弹子台水库特殊的工程地质问题,进行了阐述和深入系统分析,所得结论为该水库的论证和设计提供了依据。 相似文献
997.
The vorticity generation around a coastal promontory is examined using a transport vorticity equation. The complete vorticity balance analysis is made for the transient and residual vorticity generations around an idealized, symmetric promontory. The topographic vorticity tendency is found to be the dominant forcing term in the production of transient tidal vorticities. This result is different from the previous works which emphasized the effects of lateral and bottom frictions. The residual vorticity balance is between advection and topographic vorticity tendency. The model results are consistent with the observations off Gay Head, Massachusetts. Also, the stability of a promontory as well as the offshore sand bank formation are studied by examining the sand transport pattern around the promontory. Strong deposition occurs off the tip of the promontory while erosion occurs along the upstream slope of the promontory suggesting that an originally symmetric promontory tends to incline cyclonically from the axis normal to the tidal stream. Such tendency is indeed found among coastal promontories. 相似文献
998.
J. Escs C. L. Alados F. I. Pugnaire J. Puigdefbregas J. Emlen 《Journal of Arid Environments》2000,45(4):325
This paper investigates allocation of energy to mechanisms that generate and preserve architectural forms (i.e. developmental stability, complexity of branching patterns) and productivity (growth and reproduction) in response to environmental disturbances (i.e. grazing and resource availability). The statistical error in translational symmetry was used to detect random intra-individual variability during development. This can be thought of as a measure of developmental instability caused by stress. Additionally, we use changes in fractal complexity and shoot distribution of branch structures as an alternate indicator of stress. These methods were applied to Anthyllis cytisoides L., a semi-arid environment shrub, to ascertain the effect of grazing and slope exposure on developmental traits in a 2×2 factorial design. The results show that A. cytisoides maintains developmental stability at the expense of productivity. Anthyllis cytisoides was developmentally more stable when grazed and when on south-facing, as opposed to north-facing slopes. On the contrary, shoot length, leaf area, fractal dimension and reproductive-to-vegetative allocation ratio were larger in north- than in south-facing slopes. As a consequence, under extreme xeric conditions, shrub mortality increased in north-facing slopes, especially when not grazed. The removal of transpiring area and the reduction of plant competition favoured developmental stability and survival in grazed plants. Differences between grazed and ungrazed plants were most evident in more mesic (north-facing) areas. 相似文献
999.
1000.
The susceptibility of cut slopes to landsliding can be reduced in certain circumstances by the establishment of a vegetation cover. However, the hydrological implications of allowing a cover to develop may offset the mechanical benefits of soil reinforcement by roots. The balance between hydrological and mechanical effects is critical on slopes which are susceptible to the development of an infiltration-induced transitory perched water table, a common cause of landslides in deep, tropical residual soils. This balance is likely to change both between slopes of different types as well as temporally on any given slope. The net effect of a vegetation cover must be predicted either before natural vegetation covers are allowed to encroach on bare slopes, or if engineers are considering the use of trees as a protective measure. This paper presents a method of calculating the impact of a vegetation cover on slope stability. Simulations carried out on a wide range of slope types suggest that where failure is most likely to be triggered by infiltration rather than ground water rise, large-scale vegetation covers may contribute to instability. Whether vegetation had a positive or negative impact on slope stability was controlled by the permeability of the soil matrix, whilst the magnitude of impact was controlled by the soil strength and the slope height. 相似文献