期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Scattering of seismic waves by three-dimensional large-scale hill topography simulated by a fast parallel IBEM 被引量:2
1
作者 Liu Zhongxian Shang Ce +2 位作者 Huang Lei Liang Jianwen Li Jie 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2020年第4期855-873,共19页
To solve seismic wave scattering by a large-scale three-dimensional(3-D) hill topography, a fast parallel indirect boundary element method(IBEM) is developed by proposing a new construction method for the wave field, ... To solve seismic wave scattering by a large-scale three-dimensional(3-D) hill topography, a fast parallel indirect boundary element method(IBEM) is developed by proposing a new construction method for the wave field, modifying the generalized minimum residual(GMRES) algorithm and constructing an Open MP plus MPI parallel model. The validations of accuracy and efficiency show that this method can solve 3-D seismic response of a large-scale hill topography for broadband waves, and overcome the weakness of large storage and low efficiency of the traditional IBEM. Based on this new algorithm architecture, taking the broadband scattering of plane SV waves by a large-scale Gaussian-shaped hill of thousands-meters height as an example, the influence of several important parameters is investigated, including the incident frequency, the incident angle and the height-width and length-width ratio of the hill. The numerical results illustrate that the amplification effect on the ground motion by a near-hemispherical hill is more significant than the narrow hill. For low-frequency waves, the scattering effect of the higher hill is more pronounced, and there is only a single peak near the top of the hill. However, for high-frequency waves, rapid spatial variation of displacement amplitude appears on the hill surface. 展开更多
关键词 scattering of seismic waves 3-d hill topography indirect boundary element method(IBEM) parallel calculation
下载PDF
风电场地形绕流的CFD结果确认研究 被引量:14
2
作者 魏慧荣 康顺 《工程热物理学报》 EI CAS CSCD 北大核心 2007年第4期577-579,共3页
掌握复杂地形区域的风能分布对风电场微观选址至关重要。为把CFD技术应用于风场中实际地形的风流动模拟,本文选择三种具有实验数据的典型地形进行数值计算,并对数值结果进行确认研究。文中简述了不同网格和不同湍流模型对旋涡位置和速... 掌握复杂地形区域的风能分布对风电场微观选址至关重要。为把CFD技术应用于风场中实际地形的风流动模拟,本文选择三种具有实验数据的典型地形进行数值计算,并对数值结果进行确认研究。文中简述了不同网格和不同湍流模型对旋涡位置和速度分布的影响,并探讨了为增加风能利用率,如何确定风力机的最佳安装位置。 展开更多
关键词 微观选址 后台阶 方体绕流 三维圆形陡坡 结果确认
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部