期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
长江某水电站库区HP村浸没问题研究
1
作者 牟方敏 王家祥 +1 位作者 庞云铭 刘伟强 《三峡大学学报(自然科学版)》 CAS 2012年第5期19-23,42,共6页
长江某水电站库区HP村处于长江Ⅰ级阶地平台,地势低平,分布大量耕地和民房,水库蓄水后浸没问题突出.通过研究该岸段水文地质结构及天然地下水流场、土层毛管水上升带高度、耕植层厚度、房屋基础类型、埋深、地基土体天然、饱和状态下力... 长江某水电站库区HP村处于长江Ⅰ级阶地平台,地势低平,分布大量耕地和民房,水库蓄水后浸没问题突出.通过研究该岸段水文地质结构及天然地下水流场、土层毛管水上升带高度、耕植层厚度、房屋基础类型、埋深、地基土体天然、饱和状态下力学特性并分析地下水位上升对地基安全影响深度等,综合确定浸没临界地下水埋深标准值;采用有限元法分析预测水库蓄水后稳定、非稳定流地下水回水特征.以此为基础进行浸没判别,确定浸没影响区范围和影响程度,为水库影响区范围界定提供可靠依据.此浸没研究方法和技术成果可供类似工程参考. 展开更多
关键词 毛管水上升高度 安全超高 浸没临界地下水埋 有限元流场分析 浸没预测
下载PDF
内流激发垂直悬臂管振动失稳特性实验研究
2
作者 罗航 周顶昌 +1 位作者 马永奇 冯爱春 《装备环境工程》 CAS 2023年第8期30-36,共7页
目的研究管道内部流速和浸没深度对细长柔性悬臂管道振动特性的影响规律。方法通过位移传感器采集管道振动位移时程,计算管道振幅、时频特性、相位变迁和振动频率,分析内流在输流过程中所激发的管道振动失稳特性。结果随着内流流速的增... 目的研究管道内部流速和浸没深度对细长柔性悬臂管道振动特性的影响规律。方法通过位移传感器采集管道振动位移时程,计算管道振幅、时频特性、相位变迁和振动频率,分析内流在输流过程中所激发的管道振动失稳特性。结果随着内流流速的增加,垂直悬臂管会经历静态、前失稳和后失稳3个不同状态。管道振幅随内流流速的增加而明显增大,但振动频率只是缓慢上升。随着管道浸没深度的增加,管道振动失稳整体减弱。结论内流流速和浸没深度均是影响管道振动失稳特性的关键因素。 展开更多
关键词 内流 悬臂管 振动失稳 实验研究 浸没深
下载PDF
Numerical Investigation of Transmission of Low Frequency Sound Through a Smooth Air-water Interface 被引量:3
3
作者 Parviz Ghadimi Ahreza Bolghasi +1 位作者 Mohammad A. Feizi Chekab Rahim Zamanian 《Journal of Marine Science and Application》 CSCD 2015年第3期334-342,共9页
It is the traditional belief that sound transmission from water to the air is very weak due to a large contrast between air and water impedances. Recently, the enhanced sound transmission and anomalous transparency of... It is the traditional belief that sound transmission from water to the air is very weak due to a large contrast between air and water impedances. Recently, the enhanced sound transmission and anomalous transparency of air-water interface have been introduced. Anomalous transparency of air-water interface states that the sound generated by a submerged shallow depth monopole point source localized at depths less than 1/10 sound wavelength, can be transmitted into the air with omni-directional pattern. The generated sound has 35 times higher power compared to the classical ray theory prediction. In this paper, sound transmission through air-water interface for a localized underwater shallow depth source is examined. To accomplish this, two-phase coupled Helmholtz wave equations in two-phase media of air-water are solved by the commercial finite element based COMSOL Multiphysics software. Ratios of pressure amplitudes of different sound sources in two different underwater and air coordinates are computed and analyzed against non-dimensional ratio of the source depth (D) to the sound wavelength (λ). The obtained results are compared with the experimental data and good agreement is displayed. 展开更多
关键词 enhanced sound transmission anomalous transparency air-water interface shallow depth source sound transmission Helmholtz wave equations
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部