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41.
提出了由物质试验方法初步选择的一种可操作的单只桶基安全负压沉贯操作程序,它可作为试验室内多桶基导管架物模试验以及海上(近)原型尺度桶基试验实施负压沉贯操作方法的试验依据,通过对这些试验及其操作程序的修正和完善,可为实际桶基实施海上沉贯作业出一种可靠,安全的操作程序或方法。  相似文献   
42.
吸力基础与海洋工程大直径钢桩相比,具有成本低、安装周期短、对环境影响小、不受海况影响及可回收再利用等优点,近年来在海上风电工程中得到推广应用。吸力基础沉贯至海床预定位置,是其发挥承载力和确保服役稳定性的前提。海床地基土体常以分层土形式分布,且各层土体强度、压缩性和渗透性等存在显著差别,导致吸力基础吸力沉贯机理非常复杂。明确吸力基础在分层土中沉贯特性,有助于指导吸力基础在海上风电工程中的推广应用。对目前吸力基础在分层土中沉贯特性研究进行综述和总结,归纳了其沉贯机理研究进展,并对影响吸力基础在分层土中沉贯因素进行了分析;提出了分层土中吸力基础沉贯的研究方向和改进的沉贯方法。  相似文献   
43.
Though it is well known that vegetation affects the water balance of soils through canopy interception and evapotranspiration, its hydrological contribution to soil hydrology and stability is yet to be fully quantified. To improve understanding of this hydrological process, soil water dynamics have been monitored at three adjacent hillslopes with different vegetation covers (deciduous tree cover, coniferous tree cover, and grass cover), for nine months from December 2014 to September 2015. The monitored soil moisture values were translated into soil matric suction (SMS) values to facilitate the analysis of hillslope stability. Our observations showed significant seasonal variations in SMS for each vegetation cover condition. However, a significant difference between different vegetation covers was only evident during the winter season where the mean SMS under coniferous tree cover (83.6 kPa) was significantly greater than that under grass cover (41 kPa). The hydrological reinforcing contribution due to matric suction was highest for the hillslope with coniferous tree cover, while the hillslope with deciduous tree cover was second and the hillslope with grass cover was third. The greatest contributions for all cover types were during the summer season. During the winter season, the wettest period of the monitoring study, the additional hydrological reinforcing contributions provided by the deciduous tree cover (1.5 to 6.5 kPa) or the grass cover (0.9 to 5.4 kPa) were insufficient to avoid potential slope failure conditions. However, the additional hydrological reinforcing contribution from the coniferous tree cover (5.8 to 10.4 kPa) was sufficient to provide potentially stable hillslope conditions during the winter season. Our study clearly suggests that during the winter season the hydrological effects from both deciduous tree and grass covers are insufficient to promote slope stability, while the hydrological reinforcing effects from the coniferous tree cover are sufficient even during the winter season. Copyright © 2018 John Wiley & Sons, Ltd.  相似文献   
44.
离散元法模拟吸力锚施工中生成的土塞研究   总被引:2,自引:0,他引:2  
吸力锚是近年来在海洋工程中出现并得以迅速发展的一种新型基础形式。然而吸力锚施工中产生的土塞现象对顺利施工和安全使用构成了严重的威胁。文章采用了离散单元法来研究吸力锚施工中的土塞现象,并得到了一些结论。圆形刚性颗粒模型是文章中所采用的基本模型,同时动态松弛法成为基本的求解方法。  相似文献   
45.
胥虹 《探矿工程》2020,47(1):48-52
地浸钻孔是一种以采矿为目的的钻孔,提高钻孔出水量就是提高钻孔的采矿量。通过对多年地浸钻孔施工经验和理论进行分析,发现影响钻孔出水量的主要因素为钻井泥浆的成分和性能以及人工过滤层的渗透性差异,提出在地浸钻孔施工方案中采用植物胶净化泥浆钻进和扩孔、投砾罐射吸式填砾、物理化学组合洗井3种技术措施,对比前后施工钻孔的出水量大小,证明了该技术措施对提高地浸钻孔出水量具有良好的效果。  相似文献   
46.
An investigation was conducted to obtain analytical solutions for the pullout behavior of a suction caisson undergoing inclined loads in sand. The inclined load is transformed into an equivalent load system in which the vertical, horizontal, and moment loads are applied on the center of the lid of the suction caisson. The vertical and lateral stiffness coefficients along the skirt of the suction caisson in sands are presented using the new three-dimensional elastic solutions taking into account the nonhomogeneous and nonlinear properties of the sand. The vertical, lateral, and rocking stiffness coefficients on the base of the suction caisson are presented considering the solutions of a hollow rigid cylindrical punch acting on the surface of a soil. The yield, pullout, and failure for sands with the nonhomogeneous and nonlinear characteristics are taken into consideration. The effects of the load inclination, the loading depth, and the aspect ratio on the pullout load capacity of the suction caisson are presented. Behaviour of the suction caisson in sand prior to failure is clarified from the relationship between tensile load, displacement, and rotation and that between depth, vertical pressure, and lateral pressure.  相似文献   
47.
A series of model tests were performed on steel- and Perspex-made suction caissons in saturated dense marine sand to explore installation and extraction behaviors. The extractions of the caisson were conducted by applying monotonic loading or by pumping water into the caisson. Responses of suction caissons to pullout rates, aspect ratios, and extraction manners were examined. Test results show that a cone-shaped subsidence region occurs around the suction caisson during the suction-assisted installation. The pullout bearing capacity of the suction caisson in sand is dominated by the loading rate and the loading manner. For the suction caisson subjected to monotonic loading, the maximum bearing capacity is reached at the pullout rate of about 20.0?mm/s. The mobilized vertical displacement corresponding to the pullout capacity increases with increasing the pullout rate. The passive suction beneath the suction caisson lid reaches the maximum value when the pullout bearing capacity is mobilized. In addition, during the suction caisson extracted by pumping water into the caisson, the maximum pore water pressure in the caisson is obtained under the displacement of approximately 0.04 times the caisson diameter. The absolute values of the maximum pore water pressures for the suction caissons approximately equal those of the maximum vertical resistances at the monotonic pullout rate of 5 mm/s. When the vertical displacements of the suction caissons with the aspect ratio of 1.0 and 2.0 reach 0.92 and 1.77 times the caisson diameter, respectively, the seepage failure occurs around the caissons. Using a scaling method, the test results can be used to predict the time length required for the prototype suction caisson to be extracted from the seabed.  相似文献   
48.
以野生草地早熟禾(Poa pratensis)和硬质早熟禾(Poa sphondylodes)为材料,通过人工室内模拟低温逆境胁迫,研究外源一氧化氮(NO)供体亚硝基铁氰化钠(硝普钠,SNP)对低温胁迫下野生早熟禾幼苗生长、渗透调节和抗氧化系统的影响,探讨外源NO提高早熟禾抗寒性的生理机制。结果表明,低温胁迫下:0~700 μmol·L-1浓度范围内,随SNP浓度的增大,两个供试材料的地上生物量和生长速度先增大后减小,相对膜透性、丙二醛(MDA)含量、游离脯氨酸(F-Pro)含量先减小后增大,可溶性糖(SS)和可溶性蛋白(SP)含量先增加后减小,超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)活性先增强后减弱;高浓度NO产生伤害,低浓度NO则有保护作用;SNP浓度100 μmol·L-1时,膜脂过氧化水平最低,渗透调节物质积累最多,保护酶活性最强,对低温胁迫的缓解效果最佳。硬质早熟禾对低温胁迫下外源NO的缓解较草地早熟禾敏感。  相似文献   
49.
刘毓氚  陈志福 《岩土力学》2014,35(6):1585-1592
以高液限土为填料的加筋挡墙广泛在南方地区应用,加筋挡墙土体吸力经常随气候变化而发生变化,直接影响筋土界面强度特性,考虑吸力变化的非饱和高液限黏土-土工织物界面强度特性亟待深入研究。利用ZFY-1A型非饱和土应变控制式直剪仪对非饱和高液限黏土-土工织物界面进行控制吸力的剪切试验,探讨吸力循环变化(干湿循环)对筋-土界面剪切特性的影响。研究表明,高液限黏土-土工织物界面的抗剪强度随着净法向应力的增加而增大;随着循环次数的增加,界面强度呈现先升高而后衰减的变化规律。经历3次干湿循环的界面强度低于未经历干湿循环的强度。随着循环次数的增加,界面强度总体上呈降低趋势。吸力增加的速率 随吸力循环次数的增加先增大后减小,有效界面摩擦角 、界面有效黏聚力 、界面综合摩擦系数 、综合摩擦系数比K与此类似。 含水率变化量的最大值随着净法向应力、循环次数的增加而增大。最大剪胀量 随循环次数的增加先增大后减小,随净法向应力的增大而减小。最后通过对数拟合,得出经历若干次基质吸力循环后的界面强度计算公式。  相似文献   
50.
The results of a number of laboratory model tests for the short‐term ultimate uplift capacity of a circular plate anchor embedded in saturated soft kaolinite and montmorillonite are presented. The tests were conducted with and without venting the bottom of the plate anchor in order to determine the variation of the suction force with embedment ratio. The variation of the suction force is presented in terms of the undrained shear strength of the clay and also the net ultimate uplift capacity.  相似文献   
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