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THE DEPENDENCE OF WIND STRESS ON SEA STATE
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作者 尹宝树 王涛 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 1996年第3期234-242,共9页
Based on up to date literature, this paper details the evolution of wave dependence of wind stress.Some typical models of the dependence of wind stress on waves are described in detail. Although there isno universally... Based on up to date literature, this paper details the evolution of wave dependence of wind stress.Some typical models of the dependence of wind stress on waves are described in detail. Although there isno universally accepted theory and model, recent studies indicate that the wind strees strongly dependson the development state of sea waves, i. e., young seas are rougher than mature seas, in other words, thewind stress decreases with increasing wave age. 展开更多
关键词 wind stress dependence on sea state mechanisms
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取决于材料状态的变形局部化现象 被引量:18
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作者 蔡正银 李相菘 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2004年第4期533-538,共6页
一种状态相关本构模型被置于耦合的有限元程序中,分析了平面应变条件下饱和砂土在排水剪切过程中的变形局部化问题。由于模型中固有的状态相关特性,初始有效平均正应力与土样密度对变形局部化的影响得到了详细研究。数值分析结果表明,... 一种状态相关本构模型被置于耦合的有限元程序中,分析了平面应变条件下饱和砂土在排水剪切过程中的变形局部化问题。由于模型中固有的状态相关特性,初始有效平均正应力与土样密度对变形局部化的影响得到了详细研究。数值分析结果表明,砂土中的变形局部化取决于土样的状态,有效平均正应力越小,土样密度越大,变形局部化程度就越高,剪切带与大主应力面的夹角也就越大。 展开更多
关键词 土力学 饱和砂土 排水剪切 土样密度 剪切带 变形
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功能梯度材料的热/机械耦合分析研究进展 被引量:26
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作者 王保林 杜善义 韩杰才 《力学进展》 EI CSCD 北大核心 1999年第4期528-548,共21页
对功能梯度材料结构的热/机械耦合问题的研究现状进行了评述,包括分析方法的进展、热载作用下的裂纹问题、优化设计问题、细观力学问题等,然后提出了需要进一步研究的方向.
关键词 功能梯度材料 热/机械耦合 热弹性 热应力 研究
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弹粘塑性孔隙介质在冲击荷载作用下的一种本构关系——第二部分:弹粘塑性孔隙介质的畸变行为 被引量:5
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作者 戚承志 王明洋 钱七虎 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2003年第11期1763-1766,共4页
继发表在本刊2003年第9期上第一部分的研究,就弹塑性孔隙介质在冲击偏应力张量作用下的行为进行了研究。考虑应变率对材料强度的影响,给出了热活化机理与宏观阻尼机理相互竞争的联合强度-应变率依赖模型。考虑应力状态、应变强化、畸变... 继发表在本刊2003年第9期上第一部分的研究,就弹塑性孔隙介质在冲击偏应力张量作用下的行为进行了研究。考虑应变率对材料强度的影响,给出了热活化机理与宏观阻尼机理相互竞争的联合强度-应变率依赖模型。考虑应力状态、应变强化、畸变损伤和与孔隙率相联系的损伤对材料强度的影响,并在此基础上基于热活化原则给出了松弛型的应力偏量与应变偏量之间的关系,且本模型符合热力学第二定律。 展开更多
关键词 岩石力学 弹粘塑性 孔隙介质 冲击荷载 本构关系 松弛型关系
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考虑应力方向依赖性的砂土等效统一硬化模型研究 被引量:1
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作者 董彤 孔亮 +2 位作者 王兴 房雨雨 刘超 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2022年第9期1935-1944,共10页
土的应力方向依赖性是指土的力学特性随应力方向改变而改变的性质,其内在原因是颗粒堆积形成的土体在微观尺度上具有各向异性。为了定量描述各向异性颗粒材料沿不同方向孔隙特征的差异,提出孔隙面积比的概念,即颗粒材料某一截面上孔隙... 土的应力方向依赖性是指土的力学特性随应力方向改变而改变的性质,其内在原因是颗粒堆积形成的土体在微观尺度上具有各向异性。为了定量描述各向异性颗粒材料沿不同方向孔隙特征的差异,提出孔隙面积比的概念,即颗粒材料某一截面上孔隙面积与颗粒面积之比,并建立孔隙面积比与组构张量之间的定量关联。在此基础上,将各向异性状态参数定义为当前方向的孔隙面积比与孔隙面积比的平均值(或孔隙比)的差值,以定量描述材料不同方向的状态与平均状态之间的关系。进而采用等效应力法对砂土UH模型进行“改造”,建立砂土的EUH模型。EUH模型仅增加了2个试验参数,便可以很好地反映应力路径、孔压、应力-应变关系的应力方向依赖性,实现了对主空间和物理空间中各应变分量应力方向依赖性的精确预测,进一步验证了等效应力法的科学性,为等效应力法的工程应用奠定了坚实基础。 展开更多
关键词 土力学 应力方向依赖性 等效应力法 UH模型 孔隙面积比 状态参数
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Two modes of dipole events in tropical Indian Ocean 被引量:1
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作者 ZHAO YongPing CHEN YongLi +2 位作者 WANG Fan BAI XueZhi WU AiMing 《Science China Earth Sciences》 SCIE EI CAS 2009年第3期369-381,共13页
By analyzing the distributions of subsurface temperature and the surface wind stress anomalies in the tropical Pacific and Indian Oceans during the Indian Ocean Dipole (IOD) events, two major modes of the IOD and thei... By analyzing the distributions of subsurface temperature and the surface wind stress anomalies in the tropical Pacific and Indian Oceans during the Indian Ocean Dipole (IOD) events, two major modes of the IOD and their formation mechanisms are revealed. (1) The subsurface temperature anomaly (STA) in the tropical Indian Ocean during the IOD events can be described as a "<" -shaped and west-east-oriented dipole pattern; in the east side of the "<" pattern, a notable tongue-like STA extends westward along the equator in the tropical eastern Indian Ocean; while in the west side of the "<" pattern, the STA has op- posite sign with two centers (the southern one is stronger than the northern one in intensity) being of rough symmetry about the equator in the tropical mid-western Indian Ocean. (2) The IOD events are composed of two modes, which have similar spatial pattern but different temporal variabilities due to the large scale air-sea interactions within two independent systems. The first mode of the IOD event originates from the air-sea interaction on a scale of the tropical Pacific-Indian Ocean and coexists with ENSO. The second mode originates from the air-sea interaction on a scale of the tropical Indian Ocean and is closely associated with changes in the position and intensity of the Mascarene high pressure. The strong IOD event occurs when the two modes are in phase, and the IOD event weakens or disap- pears when the two modes are out of phase. Besides, the IOD events are normally strong when either of the two modes is strong. (3) The IOD event is caused by the abnormal wind stress forcing over the tropical Indian Ocean, which results in vertical transports, leading to the upwelling and pileup of sea- water. This is the main dynamic processes resulting in the STA. When the anomalous easterly exists over the equatorial Indian Ocean, the cold waters upwell in the tropical eastern Indian Ocean while the warm waters pileup in the tropical western Indian Ocean, hence the thermocline in the tropical Indian Ocean is shallowed in the east and deepened in the west. The off-equator component due to the Corio- lis force in the equatorial area causes the upwelling of cold waters and the shallowing of the equatorial India Ocean thermocline. On the other hand, the anomalous anticyclonic circulations and their curl fields located on both sides of the equator, cause the pileup of warm waters in the central area of their curl fields and the deepening of the equatorial Indian Ocean thermocline off the equator. The above three factors lead to the occurrence of positive phase IOD events. When anomalous westerly domi- nates over the tropical Indian Ocean, the dynamic processes are reversed, and the negative-phase IOD event occurs. 展开更多
关键词 INDIAN Ocean DIPOLE MODES SUBSURFACE temperature ANOMALY sea surface wind stress ANOMALY formation mechanism
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