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含铝炸药近场水下爆炸冲击波的实验及数值模拟 被引量:11
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作者 孙远翔 田俊宏 +1 位作者 张之凡 师明飙 《振动与冲击》 EI CSCD 北大核心 2020年第14期171-178,193,共9页
含铝炸药能改善能量的输出结构,增强爆轰产物的做功能力,将其应用于水下爆炸,能显著提高水中兵器的爆炸威力和毁伤能力。基于电测法采用PVDF压力传感器开展含铝炸药RL-F和TNT近场水下爆炸冲击波实验,并采用耦合欧拉-拉格朗日(CEL)法对... 含铝炸药能改善能量的输出结构,增强爆轰产物的做功能力,将其应用于水下爆炸,能显著提高水中兵器的爆炸威力和毁伤能力。基于电测法采用PVDF压力传感器开展含铝炸药RL-F和TNT近场水下爆炸冲击波实验,并采用耦合欧拉-拉格朗日(CEL)法对其进行模拟;通过将仿真结果与实验值及经验值对比,结果表明采用合理的边界条件、计算参数和有限元模型,CEL方法能准确地模拟含铝炸药和TNT近场水下爆炸冲击波的传播过程;含铝炸药近场水下爆炸冲击波压力衰减速率相对于TNT较缓慢。在验证数值模型合理性的基础上,将数值结果拟合得到TNT近场水下爆炸冲击波峰值压力在6倍装药半径内以及含铝炸药峰值压力在一定比例距离范围内的近似回归公式。 展开更多
关键词 含铝炸药 近场水下爆炸 实验研究 冲击波 数值模拟 耦合欧拉-拉格朗日方法(CEL)
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淹没高压射流垂直切削硬质黏土数值与试验研究 被引量:3
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作者 周忠玮 尹纪富 +1 位作者 施绍刚 洪国军 《水运工程》 北大核心 2019年第4期1-6,共6页
针对淹没高压水射流对硬质黏土进行切削的问题,基于耦合的欧拉-拉格朗日方法,引入射流经过淹没水域发生速度衰减规律,建立有限元模型对切削效果进行分析研究,最后通过室内试验加以验证。该方法集合了欧拉算法和拉格朗日算法的优点,适用... 针对淹没高压水射流对硬质黏土进行切削的问题,基于耦合的欧拉-拉格朗日方法,引入射流经过淹没水域发生速度衰减规律,建立有限元模型对切削效果进行分析研究,最后通过室内试验加以验证。该方法集合了欧拉算法和拉格朗日算法的优点,适用于射流和土体之间流固耦合的分析计算,其中,水体采用欧拉算法,土体采用拉格朗日算法,水土的接触面可被精确捕捉。数值结果显示,高压射流作用下,硬质黏土切削深度随切削速度的增大而减小,随射流压力的增大而增大。并与试验结果进行定量对比,两者较为吻合。该模型较好地模拟了淹没条件下高压射流对硬质黏土的切削过程,为解决这一问题提供了新的思路。 展开更多
关键词 耦合的欧拉-拉格朗日法 试验研究 淹没射流 硬质黏土 切削深度
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Patterns and mechanism of wintertime penetrating fronts in the East China Sea
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作者 Peng YE Daji HUANG +1 位作者 Jiliang XUAN Shuangyan HE 《Science China Earth Sciences》 SCIE EI CAS CSCD 2024年第11期3500-3514,共15页
Penetrating fronts play an important role in the cross-shelf transport of terrestrial materials in the East China Sea(ECS). Using long-term satellite remote sensing data and numerical simulation data, the most likely ... Penetrating fronts play an important role in the cross-shelf transport of terrestrial materials in the East China Sea(ECS). Using long-term satellite remote sensing data and numerical simulation data, the most likely period of occurrence and region of the penetrating fronts in the western ECS are analyzed in this study, and the evolutionary process and mechanism are also investigated. The statistical results of satellite-derived chlorophyll data from 1998 to 2022(25 years) reveal that penetrating fronts occur most frequently near 27°N in winter, with the frequencies of occurrence in January, February and March being 47%,65% and 64%, respectively. Backward Lagrangian tracer experiments demonstrate that the penetrating water near 27°N originate from three different regions. The core penetrating low-salinity water originates from the Zhejiang-Fujian coast, while the northern marginal water originates from the northern part of Taiwan Island, and the southern marginal water originates from the central Taiwan Strait. Mechanism analysis reveals that the core penetrating low-salinity water evolves in three successive stages.First, under the influence of the Zhejiang-Fujian Coastal Current driven by strong northeasterly winds, the low-salinity water along the Zhejiang-Fujian coast moves southwestward parallel to the coastline and accumulates in the western Taiwan Strait.Second, during the relaxation stage of the northeasterly wind, the northeastward Taiwan Strait Current strengthens, and the lowsalinity water accumulated in the western Taiwan Strait moves to the northeast. Third, when the northeastward-moving lowsalinity water runs into the Western Kuroshio Branch off the northeastern Taiwan Island, the low-salinity water is rapidly stretched eastward, and a significant penetrating front eventually appears. Since the synoptic northeasterly wind and the Western Kuroshio Branch are dominant dynamic factors in this region during wintertime, we believe that the synoptic wintertime penetrating fronts near 27°N are common and important phenomena that play important roles in the cross-shelf transport of terrestrial materials in the ECS. 展开更多
关键词 Penetrating fronts Satellite-derived chlorophyll lagrangian tracer experiments Synoptic-scale fluctuation Western Kuroshio Branch
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