Micro-numerical simulation of sand boil and analysis of its influencing factors
-
摘要: 采用飽和砂土流固耦合的細觀力學模型,通過顆粒流數值模擬了在臨界水力梯度條件下飽和砂土的細觀響應.討論了在建議模型框架內臨界水力梯度、顆粒剛度等因素對模擬結果的影響,并從細觀機理上做了進一步分析.模擬結果表明,在臨界流或超臨界流條件下,試樣最終的穩態響應分成兩部分:一部分顆粒停留在試樣頂部,其顆粒數量正比于施加的水力梯度值;另一部分顆粒則在試樣底部形成某種形式的對流運動.細觀數值模型分析所得的臨界水力梯度比連續介質力學分析得到的值要小,這個差別反映了模型的動力特性.在臨界流或超臨界流條件下,砂沸時水的流動除局部區域外基本上仍屬于層流范圍,但已偏離了達西定律.Abstract: Particle flow code (PFC) simulation was performed to investigate meso-response of sand soil under critical flow condition using a coupled liquid-particle model. The effects of hydraulic gradient amplitude and particle stiffness were discussed and the occurrence of sand boil was analyzed from the viewpoint of micro-mechanism. The numerical results indicated that under critical or overcritical gradients, a layer of clustered particles formed near the top wall, and the remainder of the particles formed a suspension and underwent convective-like motion. The thickness of the top layer was proportional to the gradient amplitude. The gradient amplitude based on microanalysis was a little lower than that based on the traditional theory, which reflected the dynamic behaviour of the adopted model. The pore flow was mainly laminar but deviated from Darcy's law under critical or over-critical gradients.
-
Key words:
- sand boil /
- particle flow code(PFC) /
- micro-model /
- sand liquefaction
-

計量
- 文章訪問數: 230
- HTML全文瀏覽量: 42
- PDF下載量: 12
- 被引次數: 0