基于 CEL 算法的土壤切割机制数值模拟分析

Daofa Liu, Yang Liu, Kangjian Shao, Zhengpeng Pu, Rui Niu
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引用次数: 0

摘要

目前,人们对土壤切割机理的认识还不够深入,这不利于进一步优化疏浚和水下采矿工程的效率和质量。利用 CEL(Coupled Eulerian Lagrangian)算法从三维角度对刀具切削土壤进行数值模拟。为进一步了解实际切削过程中土壤的失效模式和刀具的切削力,在动态切削土壤条件下,设置了数十种控制工况,分析总结了切削过程中涉及的一些工艺参数对土壤切削作业的影响规律。结论是刀具宽度、刀具高度、切削速度、切削厚度对土壤的失效模式和切削力均有显著影响。建议在研究土壤切割相关内容时,重点关注这些参数的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Simulation Analysis of Soil Cutting Mechanism Based on CEL Algorithm
Currently, the understanding of soil cutting mechanisms is still not deep enough, which is not conducive to further optimizing the efficiency and quality of dredging and underwater mining projects. Numerical simulation of tool cutting soil from a three-dimensional perspective using the CEL (Coupled Eulerian Lagrangian) algorithm. In order to further understand the failure mode of soil during actual cutting process and the cutting force of cutting tools, dozens of control working conditions were set up under dynamic cutting soil conditions, and the influence rules of some process parameters involved in the cutting process on the soil cutting operation were analyzed and summarized. The conclusion is that tool width, tool height, cutting speed, and cutting thickness all have a significant impact on the failure mode and cutting force of soil. It is recommended to focus on the influence of these parameters when studying soil cutting related content.
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