array(2) { ["lab"]=> string(3) "874" ["publication"]=> string(5) "14863" } Three-dimensional numerical simulation of granular flow with a GPU-accelerated SPH model - 环境流体力学实验室 | LabXing

环境流体力学实验室

简介 复杂介质与复杂流动中的理论、方法和应用

分享到

Three-dimensional numerical simulation of granular flow with a GPU-accelerated SPH model

2022
其它
下载全文
<p>A smoothed particle hydrodynamics (SPH) has obtained wildly application to granular flow and soil failure problems in last two decades. The computational efficiency is limited by the number of particles, which makes it difficult for SPH to be applied to large-scale examples. In this study, we develop a three-dimensional SPH model based on Drucker–Prager closure with a non-associated plastic flow rule, which is accelerated by employing the GPU technology. A typical three-dimensional granular slope case is simulated with 44 million particles for 88.5 hours. GPU acceleration technology significantly improves the computing efficiency almost 200 times than single-core CPU for large scale geotechnical problems with more than 10 million SPH particles. Multiple shear bands are observed in this simulation, which reveal the failure mechanism of granular flow.</p>