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Theoretical researches of rammer's operating element dynamics in a soil foundation of oil and oil products storage tank

机译:夯锤运行元件动态的理论研究石油和油产品储存罐土壤基础

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The development of technologies for a directional soil compaction is a new prospective task which solving will enable to obtain the required carrying capacity of soil foundations with a rational use of construction materials and to provide a trouble-free operation of engineering structures. Theoretical researches were carried out to study characteristics of physical and mechanical processes of an impact action for rammers operating elements on foundation soils for oil and oil products storage tanks. In the course of the conducted analytical studies of the dynamics for a conic model impact action on a dispersed noncohesive soil we obtained the dependence of the model's motion velocity change on impact parameters. The increase of the model impact velocity from 0.47 to 1.40 m/s resulted in the reduction of interaction process duration in a model-soil system from 90 to 56 ms.
机译:方向性土壤压实技术的发展是一种新的前瞻性任务,该任务是通过合理使用建筑材料获得土壤基础的所需承载能力,并提供工程结构的无故障运行。进行了理论研究,以研究油和油产品储罐基础土壤撞击作用影响作用的物理和机械过程的特征。在进行对分散的非粘性土壤上对锥体模型影响作用的动态的分析研究,我们获得了模型的运动速度变化对冲击参数的依赖性。模型冲击速度的增加从0.47到1.40 m / s导致模型 - 土壤系统中的相互作用处理持续时间减少,从90到56毫秒。

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