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The granular buoyant force in a two-dimensional intruder-particles bed system

机译:二维入侵者 - 粒子床系统中的颗粒状浮力

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A two-dimensional granular system consists of a single intruder and particle board. All particles are frictionless and placed in a fluid with a specific density and viscosity. This work aims to investigate how particle bed can support the intruder in the way similar to how buoyant force can support a floating object. The final condition of the intruder is limited to the partially floating condition since the sinking condition will give any supporting information in formulating granular buoyant force. Considered types of forces are the gravitational force, fluid buoyant force, fluid viscous force, particle-particle and particle-wall normal force with elastic and damping constants, and particle-particle binding force for the intruder. Simulation is performed using the molecular dynamics method implementing the Euler algorithm. Only one kind of parameter variation is used in this work, which is a variation of intruder particle density. As the results, it is observed that an intruder with larger particle density sinks deeper than the smaller ones, but how it floats is still inaccurate. Finally, it can be concluded that the granular buoyant force will show similar characteristics as a fluid buoyant force, but not the same due to nature of granular particles that built the system.
机译:二维颗粒系统由单个入侵者和刨花板组成。所有颗粒都是摩擦的,并置于具有特定密度和粘度的流体中。这项工作旨在研究粒子床如何以类似于浮力可以支撑浮动物体的方式支持入侵者。入侵者的最终条件限于部分浮动条件,因为下沉条件将给出配制粒状浮力的任何支持信息。考虑力的类型是引力,流体浮力,流体粘性力,颗粒 - 颗粒和颗粒 - 壁法正常力,具有弹性和阻尼常数,以及入侵者的颗粒颗粒结合力。使用实现欧拉算法的分子动力学方法进行仿真。在该工作中仅使用一种参数变化,这是入侵者颗粒密度的变化。结果,观察到具有较大粒子密度的入侵者比较小的粒子密度更深,但它浮动仍然是不准确的。最后,可以得出结论,颗粒状浮力将显示与流体浮力的相似特征,但由于构建了系统的粒状颗粒的性质而不相同。

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