共查询到18条相似文献,搜索用时 93 毫秒
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基于流体力学中的Stokes黏滞阻力理论,以振动台试验为基础,开发了一套测量液化过程中粉土流变特性的拖球试验装置。在铺有粉土海床的模型箱内埋设光滑小球,通过测量小球水平运动过程中所受阻力值的大小,计算粉土液化的表观动力黏度,分析粉土液化过程中的表观动力黏度与超孔压比之间的关系,以及液化后表观黏度与应变率的变化规律。试验结果表明,振动台试验下,孔隙压力表现为迅速上升,粉土迅速达到液化状态;振动过程对海床固结影响较大;粉土海床在未达到完全液化状态时(ru<1),表观黏度随超孔压比增大而减小,在液化状态下(ru=1),剪应力随应变率增大而减小,粉土呈现出剪切稀化的特点,为典型的非牛顿流体特征。 相似文献
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海底的粉质土在强烈波浪作用下会发生液化现象。粉质土从液化发生到最后形成流体有其变化的过程。本文针对黄河三角洲的粉质土,进行了波浪水槽试验和现场监测试验,记录了孔压在粉质土液化过程中的变化,给出了波浪作用下粉质土液化过程的速率特征。试验结果给出:海底粉质土在波浪作用下某一深度层的液化发展迅速,水槽试验重塑土用孔压增长速率反映的液化发展速率平均为0.15kPa/min,现场监测原状土液化发展速率平均为0.29kPa/min;水槽试验重塑土和现场监测原状土均出现液化深度自上而下的发展过程,本文水槽试验条件和现场条件给出的液化深度发展平均速率分别为0.01和0.10m/min。 相似文献
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波浪作用下黄河口粉土液化与振荡层形成试验研究 总被引:1,自引:0,他引:1
通过室内水槽试验,观察波浪作用下土体产生的现象,分析了土体内孔隙水压力的变化及波浪作用后土体粒度组成变化特征,研究了波浪荷载作用下黄河口粉土液化和"振荡层"的形成过程。试验及讨论结果表明:在波浪作用下,上层粉土体大部分时间处于液化状态;由液化土形成的振荡土层与下部土层之间形成"W"形的滑动面,振荡土层的厚度随着波浪作用时间的增加而变小;在波浪的振动和孔隙流体的共同作用下,土颗粒重新排列,细粒物质向上迁移,土体底部土颗粒粒径较为粗大,振荡层范围内土颗粒粒径组成相似,粒径分布范围较小;其内部孔压比随深度和波浪作用次数的增加而较少,土体内部积累的超孔压逐渐消散,海床土体逐渐趋于稳定。 相似文献
4.
《中国海洋大学学报(自然科学版)》2017,(10)
本文以黄河三角洲粉质土为研究对象,开展了波致海床剪切破坏过程中孔压响应与土体强度变化的室内水槽试验研究,试验过程中,先后在模拟海床床上施加5、10、15cm波高的模拟波浪荷载,同步测量海床内不同深度处的孔压变化,并对海床进行贯入阻力测试和不排水抗剪强度测试。研究发现:海床中孔压响应过程的规律为孔压快速累积-孔压缓慢消散,在该过程中海床内最容易形成大幅度的孔压累积、孔压响应最强烈的位置,也是海床内土体强度的逐渐丧失以及土体剪切破坏是处开始发育的深度;波浪作用下粉质海床剪切破坏后会在海床内部一定深度处出现明显的弧形破坏界面,破坏土体沿界面随波浪作振荡运动,且破坏范围经历先扩展后回缩的过程,剪切破坏界面以下会有强度硬层的发育,强度硬层的形成与演化直接受剪切破坏过程控制,最终整个海床出现明显的强度非均质化;在孔压响应过程中孔压比即超孔压与上覆有效应力比值存在临界值K(本文水槽试验所得K=0.5),当超过K值时,土体贯入阻力和不排水抗剪强度降低,发生剪切破坏,这是波浪作用提供的剪切力以及超孔压累积导致海床内部抗剪强度降低共同作用的结果。 相似文献
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波浪引起的海底土体内部孔压累积是导致液化发生的主要原因,研究波浪作用下土体内部孔压响应过程对于明确液化机理、预测液化发生具有重要作用。在黄河口使用自行研发的孔压监测设备对海底粉土孔隙水压力进行了有效监测。监测结果显示,海底粉土的孔压变化主要受波浪影响且存在一定的影响范围,超出该范围则波浪对海底粉土的孔压无影响。同时,基于监测过程内的孔压变化对海底粉土进行了液化评判,并对波浪作用效果和液化影响因素进行了探讨。波浪对海底粉土内部孔压影响效果主要有3种:(1)有孔压振荡但不发生累积;(2)有孔压振荡且发生累积;(3)无孔压振荡且不发生累积。 相似文献
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《海洋通报(英文版)》2016,(1)
海床土对波浪响应以及波致海床液化失稳的问题,已经有很多研究成果,而波浪作用海床液化土波动压力的研究还未见报道。采用波浪水槽实验,在未液化和液化两种情况下,分别施加不同波高的波浪,对底床各层位采集土体土压力,进行分析。实验结果表明,液化前后总土压力变化不明显,液化后的土动压力比液化前增大几倍到十几倍,且沿着深度的衰减速度更快。根据试验获得结果,进一步分析,提出了在水槽试验条件下的土动压力与波浪要素之间的经验公式。同时指出,在工程设计中应注意因底床液化引起的土动压力的增加的现象。 相似文献
8.
海床在波浪作用下是否稳定对海底工程的安全至关重要,海床的稳定性与土体中的孔压响应密切相关。水槽模拟试验表明:在波浪的作用下,黄河三角洲粉土海床中将产生振荡孔隙水压力和累积孔隙水压力。振荡孔隙水压力大小与土层深度、波高和粘粒含量有关,其振幅(能量)在土层中随深度的增加呈指数衰减,且粘粒含量越高衰减越快;加载波高越大,能量衰减越快。而累积孔压响应模式表现为在波浪作用最初的一段时间内,孔隙水压力快速上升,然后逐渐减小而趋于稳定,其大小和速率也与波高、粘粒含量、土层埋深有关,粘粒含量越高,孔压累积速度越低。 相似文献
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《中国海洋大学学报(自然科学版)》2015,(5)
以黄河三角洲粉质土底床为研究对象,通过水槽模拟试验,研究了不同波高波浪荷载作用下底床的破坏过程与特点。研究发现,波浪导致粉质土底床在孔压累积和剪应力耦合作用下由表及里破坏;在波浪作用下粉质土底床破坏过程分为土体扩展过程和土体恢复过程,在扩展过程中,破坏土体与波浪同步振荡,边界不断扩展直至极限深度。在恢复过程中,破坏土体振荡由深到浅逐渐停止,稳定后出现细粒土夹层;破坏土体的长度﹑深度和体积间呈幂函数关系,破坏土体的范围主要由深度决定;波浪作用停止后,动力固结不足的原破坏土体在新一轮波浪作用下可能会再次破坏;基于极限平衡理论对波致粉质土底床的破坏深度范围进行了初步的预测,并与试验结果进行了对比分析。 相似文献
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《中国海洋大学学报(自然科学版)》2016,(10)
入海河口三角洲浅海环境中的低坡度粉土海底,受到长期波浪荷载或短期风暴浪作用,能够出现浅表层软弱区局部液化,液化后的泥沙继续受波浪作用,发展成更大规模的海底地质灾害,对海洋开发活动及设施构成严重危害。本文采用黄河三角洲粉土铺设试验底床,进行粉土底床液化后泥沙出流形式的波浪水槽试验,发现波浪作用下粉土底床液化后,液化泥沙将从源区出流。根据波浪水槽试验泥沙液化出流的过程与形式,将底床分为液化流动源区、坡面区、边壁区以及原始底床区四部分,前三个区域的循环转化推动液化泥沙以分层堆积推进的形式出流。本试验研究给出了浅海环境中一种可能的粉土底床液化出流形式。 相似文献
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作为一种常见的近海海底灾害地质现象,波致海床液化严重威胁着黄河三角洲地区海底工程设施的安全。粉质海床液化后,海底粉土的结构、物理和力学性质均发生了改变,研究该变化规律尤其是评估液化后海底粉土再次发生液化的可能性具有重要的理论意义和应用价值。本文利用室内动三轴仪对取自黄河三角洲已液化和未液化海底粉土开展了液化试验对比研究,讨论了已液化和未液化海底粉土在孔压增长模式和轴向动应变发展趋势方面的异同,对比分析了二者的液化势。研究结果表明:应变标准比孔压标准更适用于评估黄河三角洲地区海底粉土的液化势;孔压和动应变发展模式均表明与未液化粉土相比,已液化海底粉土再次发生液化的抗力有所提高;已液化和未液化海底粉土归一化孔压比ud/σ3与循环加载次数比N/Nf间相关关系可采用双曲线或指数函数模型进行定量化描述;未液化海底粉土的波致液化临界循环应力比约为0.20,已液化海底粉土的临界循环应力比约为0.35。研究成果有助于加深对海底粉土波致液化特性的认识,亦可为循环应力历史影响下的土体力学性质研究提供参考。 相似文献
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The characteristics of dynamic stress in the seabed under wave loading are constant principal stress and continuous rotation of the principal stress direction.Cyclic triaxial-torsional coupling shear tests were performed on saturated silt by the hollow cylinder apparatus under different relative densities,deviator stress ratios and vibration frequencies to study the development of pore water pressure of the saturated silt under wave loading.It was found that the development of pore water pressure follows the trend of "fast~steady~drastic".The turning point from fast to steady stage is not affected by relative density and deviator stress ratio.However,the turning point from steady to drastic stage relies on relative density and deviator stress ratio.The vibration cycle for the liquefaction of saturated silt decreases with increasing deviator stress ratio and increases with relative density.The vibration cycle for the liquefaction of the saturated silt increases with vibration frequency and reaches a peak value,after which it decreases with increasing vibration frequency for the relative density of 70%.But the vibration cycle for the liquefaction of saturated silt increases with vibration frequency for the relative density of 30%.The development of pore water pressure of the saturated silt is influenced by relative density and vibration frequency. 相似文献
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A series of regular wave experiments have been done in a large-scale wave flume to investigate the wave-induced pore pressure around the submarine shallowly embedded pipelines.The model pipelines are buried in three kinds of soils,including gravel,sand and silt with different burial depth.The input waves change with height and period.The results show that the amplitudes of wave-induced pore pressure increase as the wave period increase,and decay from the surface to the bottom of seabed.Higher pore pressures are recorded at the pipeline top and the lower pore pressures at the bottom,especially in the sand seabed.The normalized pressure around pipeline decreases as the relative water depth,burial depth or scattering parameters increase.For the silt seabed,the wavelet transform has been successfully used to analyze the signals of wave-induced pore pressure,and the oscillatory and residual pore pressure can be extracted by wavelet analysis.Higher oscillatory pressures are recorded at the bottom and the lower pressures at the top of the pipeline.However,higher residual pressures are recorded at the top and the lower pressures at the bottom of the pipeline. 相似文献
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波浪作用下粉质土海床的液化是影响海上平台、海底管线等海洋构筑物安全的灾害之一。在进行构筑物设计中应考虑海床液化的深度问题,而液化土体对下部海床的界面波压力是计算海床孔隙水压力增长以及液化深度的重要参量。本文基于波致粉土海床自上而下的渐进液化模式,利用双层流体波动理论,推导了考虑海床土体黏性的海床界面波压力表达式,并与不考虑黏性时的界面波压力进行了比较分析。结果表明,计算液化后土体界面波压力时,是否考虑液化土体的黏性对结果影响较大,进而可能影响粉质土海床液化深度的确定。 相似文献
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An experimental study of seabed responses around a marine pipeline under wave and current conditions 总被引:1,自引:0,他引:1
Experiments on three types of soil (d50=0.287, 0.057 and 0.034 mm) with pipeline(D=4 cm) either half buried or resting on the seabed under regular wave or combined with current actions were conducted in a large wave flume to investigate characteristics of soil responses. The pore pressures were measured through the soil depth and across the pipeline. When pipeline is present the measured pore pressures in sandy soil nearby the pipeline deviate considerably from that predicted by the poro-elasticity theory. The buried pipeline seems to provide a degree of resistance to soil liquefaction in the two finer soil seabeds. In the silt bed, a negative power relationship was found between maximum values of excess pore pressure pmax and test intervals under the same wave conditions due to soil densification and dissipation of the pore pressure. In the case of wave combined with current, pore pressures in sandy soil show slightly decrease with time, whereas in silt soil, the current causes an increase in the excess pore pressure build-up, especially at the deeper depth. Comparing liquefaction depth with scour depth underneath the pipeline indicates that the occurrence of liquefaction is accompanied with larger scour depth under the same pipeline-bed configuration. 相似文献
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Shiaw-Yih Tzang 《Coastal Engineering》1998,35(4):283-301
A flume experimental study on unfluidized responses of a silty bed (d50=0.05 mm) to monochromatic water waves had shown that pore pressure variations were generally poro-elastic in the bulk body and displayed two other characteristic features not found in previous laboratory sand tests. They were an immediately fluidized thin surface layer induced by wave stresses inside the seabed's boundary layer and a porous skeleton with internally suspended sediments due to channeled flow motions. The analyses verified that on soils beneath the measurement points, both features resulted in relatively small-step pore pressure build-ups, while the former played a primary role. Besides, laboratory observations confirmed that there were some near-bed sediment suspensions during wave actions resulting in a flat bed form over a silty bed compared to small-scaled ripples over a sandy bed with no clearly identified suspended sediments. These characteristic silt responses suggest that sediment transport is critically associated with the internal soil responses and some field-observed sediment suspensions near above sandy beaches can further be approached in the laboratory by utilizing fine-grained soils. 相似文献
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Zhuangcai Tian Lei Jia Naili Hu Susheng Wang Mingwei Zhang Guoqing Zhou 《海洋学报(英文版)》2023,42(2):142-149
Internal solitary wave(ISW) is often accompanied by huge energy transport, which will change the pore water pressure in the seabed. Based on the two-dimensional Biot consolidation theory, the excess pore water pressure in seabed was simulated, and the spatiotemporal distribution characteristics of excess pore water pressure was studied. As the parameters of both ISW and seabed can affect the excess pore water pressure, the distribution of pore water pressure showed both dissipation and phase lag... 相似文献
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风暴浪导致的黄河口水下土体破坏试验研究 总被引:5,自引:0,他引:5
本文试验利用取自黄河水下三角洲的样品 ,重塑后铺设水槽底床进行水槽试验 ,并利用原状土进行动三轴试验 ,2种试验均测定土体内的孔隙水压力。根据各种情况下孔隙水压力的变化记录 ,表明土体破坏同时其孔隙水压力产生骤变。将本文试验结果与在黄河水下三角洲不稳定区的原位沉积动力学试验孔隙水压力测试结果对照 ,说明黄河三角洲水下斜坡某些土体的破坏 ,未出现波浪循环荷载作用下孔隙水压力积累升高所导致的土体液化破坏 ,而是风暴浪对海底的强切应力作用致使土体产生剪切破坏 相似文献