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The 30–60-day Intraseasonal Variability of Sea Surface Temperature in the South China Sea during May–September 被引量:3
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作者 Jiangyu MAO Ming WANG 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2018年第5期550-566,共17页
This study investigates the structure and propagation of intraseasonal sea surface temperature(SST) variability in the South China Sea(SCS) on the 30-60-day timescale during boreal summer(May-September). TRMM-ba... This study investigates the structure and propagation of intraseasonal sea surface temperature(SST) variability in the South China Sea(SCS) on the 30-60-day timescale during boreal summer(May-September). TRMM-based SST, GODAS oceanic reanalysis and ERA-Interim atmospheric reanalysis datasets from 1998 to 2013 are used to examine quantitatively the atmospheric thermodynamic and oceanic dynamic mechanisms responsible for its formation. Power spectra show that the 30-60-day SST variability is predominant, accounting for 60% of the variance of the 10-90-day variability over most of the SCS. Composite analyses demonstrate that the 30-60-day SST variability is characterized by the alternate occurrence of basin-wide positive and negative SST anomalies in the SCS, with positive(negative) SST anomalies accompanied by anomalous northeasterlies(southwesterlies). The transition and expansion of SST anomalies are driven by the monsoonal trough-ridge seesaw pattern that migrates northward from the equator to the northern SCS. Quantitative diagnosis of the composite mixed-layer heat budgets shows that, within a strong 30-60-day cycle, the atmospheric thermal forcing is indeed a dominant factor, with the mixed-layer net heat flux(MNHF) contributing around 60% of the total SST tendency, while vertical entrainment contributes more than 30%. However, the entrainment-induced SST tendency is sometimes as large as the MNHF-induced component, implying that ocean processes are sometimes as important as surface fluxes in generating the30-60-day SST variability in the SCS. 展开更多
关键词 sea surface temperature 30-60-day intraseasonal variability South China Sea vertical entrainment
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Sub seasonal variations of weak stratospheric polar vortex in December and its impact on Eurasian air temperature 被引量:1
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作者 PENG Cheng FAN Ke DAI Haixia 《Atmospheric and Oceanic Science Letters》 CSCD 2019年第5期369-375,共7页
Weak stratospheric polar vortex(WPV)events during winter months were investigated.WPV events were identified as being weakest in December,accompanied by the most dramatic increase in geopotential height over the polar... Weak stratospheric polar vortex(WPV)events during winter months were investigated.WPV events were identified as being weakest in December,accompanied by the most dramatic increase in geopotential height over the polar region.After the onset of a December WPV event,the dynamic processes influencing Eurasian temperature can be split into two separate periods.Period I(lag of 0-25 days)is referred to as the stratosphere-troposphere interactions period,as it is mainly characterized by stratospheric signals propagating downwards.In Period I,a stratospheric negative Northern Annular Mode(NAM)pattern associated with the WPV propagates downwards,inducing a negative NAM in the troposphere.The anomalous low centers over the Mediterranean and North Pacific bring cold advection to northern Eurasia,resulting in a north-cold-south-warm dipole pattern over Eurasia.The zero line between negative and positive temperature anomalies moves southwards during days 5-20.Stratospheric cold anomalies at midlatitudes propagate downwards to high latitudes in the troposphere and contribute to the dipole structure.During PeriodⅡ(lag of 25-40 days),as downward signals from the stratosphere have vanished,the dynamic processes mainly take place within the troposphere.Specifically,a wave train is initiated from the North Atlantic region to northern Europe.The propagation of wave activity flux intensifies a cyclonic anomaly over northern Europe,which brings cold advection to Scandinavia and warm advection to central Asia.Therefore,a northwest-cold-southeast-warm dipole structure occupies Eurasia and migrates southeastwards during this period. 展开更多
关键词 Stratospheric polar vortex weak stratospheric polar vortex events in December subseasonal variability stratosphere-troposphere interaction winter Eurasian air temperature(0-40 days)
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埋地用塑料管材蠕变比率影响因素的检测探究
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作者 林文进 钟秀英 黄建智 《福建建设科技》 2023年第5期67-69,共3页
本文用控制变量法,通过改变环境温度、试样的满负荷以及试样的环刚度对埋地用塑料管材蠕变比率的影响进行检测研究并探讨,结果表明:环境温度升高,管材的蠕变比率增大;满负荷直接影响管材的初始形变y,初始形变y越小,蠕变比率越大;塑料管... 本文用控制变量法,通过改变环境温度、试样的满负荷以及试样的环刚度对埋地用塑料管材蠕变比率的影响进行检测研究并探讨,结果表明:环境温度升高,管材的蠕变比率增大;满负荷直接影响管材的初始形变y,初始形变y越小,蠕变比率越大;塑料管材的环刚度与蠕变比率大小无关。 展开更多
关键词 蠕变比率 控制变量法 环境温度 满负荷 环刚度
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沥青针入度的衍生指标探讨 被引量:5
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作者 樊亮 林荔萍 +1 位作者 马士杰 林江涛 《石油沥青》 2010年第1期53-57,共5页
通过变换沥青针入度的试验条件,获得了不同时间、不同贯入荷重下的针入度分布图,并对其进行了沥青性质的条件敏感性分析。结果表明,沥青针入度相对于贯入时间、荷重的变化曲线均具有一定的蠕变变化特点,满足双对数拟合变化关系;由"... 通过变换沥青针入度的试验条件,获得了不同时间、不同贯入荷重下的针入度分布图,并对其进行了沥青性质的条件敏感性分析。结果表明,沥青针入度相对于贯入时间、荷重的变化曲线均具有一定的蠕变变化特点,满足双对数拟合变化关系;由"针入度与贯入时间"曲线衍生出的截距(C_t)与两种沥青混合料性能指标具有较好的相关性;由"针入度与温度"曲线得到的"稠度不变温度"与沥青的低温性能具有良好的相关性,具有沥青和混合料性能上的评价意义。 展开更多
关键词 针入度 温度敏感性 荷重敏感性 时间敏感性 稠度不变温度
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轨道车辆液体橡胶复合转臂节点刚度性能试验研究 被引量:3
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作者 罗俊 林胜 +3 位作者 张玉祥 张隶新 侯茂锐 陈璋 《现代城市轨道交通》 2021年第10期53-56,共4页
针对普通转臂节点刚度恒定的弱点,文章介绍一种适用于轨道车辆的新型变刚度液体橡胶复合转臂节点,重点对该型转臂节点的结构型式和工作原理进行论述,测试分析漏液和温度对液体橡胶复合转臂节点的静态刚度、动态刚度的影响。结果表明:漏... 针对普通转臂节点刚度恒定的弱点,文章介绍一种适用于轨道车辆的新型变刚度液体橡胶复合转臂节点,重点对该型转臂节点的结构型式和工作原理进行论述,测试分析漏液和温度对液体橡胶复合转臂节点的静态刚度、动态刚度的影响。结果表明:漏液对液体橡胶复合转臂节点静态径向刚度特性影响较小,对动态径向刚度特性影响明显;温度对满液状态液体橡胶复合转臂节点动态径向刚度特性影响明显,对漏液状态液体橡胶复合转臂节点动态径向刚度特性影响不明显。相关研究为液体橡胶复合转臂节点的性能优化提供支撑,液体橡胶复合转臂节点的应用可进一步提升轨道车辆系统动力学性能,对于改善轮轨匹配关系具有重要意义。 展开更多
关键词 轨道车辆 液体橡胶复合转臂节点 变刚度 漏液 温度
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