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Non-invasive measurement of floating-sinking motion of a large object in a gas-solid fluidized bed

机译:气固流化床中大物体浮沉运动的非侵入式测量

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摘要

A Lagrangian sensor system has been established to non-invasively measure both the vertical position and dynamic force acting on itself. It consists of a 3-axis acceleration sensor, a 3-axis magnetometer, a microcontroller, a wireless module, batteries, and external electromagnetic coils. In this study, we applied the system to a free-moving coarse object in a gas-solid fluidized bed. The floating and sinking motions of the object in the fluidized bed are essentially caused by differences between its density and the apparent density of the fluidized media. However, the object sometimes shows strange behavior under the influence of variance in the fluidization state. We measured the temporal change of the upward force acting on the object as well as the vertical position, which is invisible from the outside. The experimental results indicate that the force acting on the object differs significantly between the floating and sinking states and is greatly complicated by interference with rising bubbles in the fluidized bed. The probability density of the vertical position of the object shows that its motion is explained not only by hydrostatic effects, but also by inhomogeneity of the fluidization state in the bed.
机译:已经建立了拉格朗日传感器系统以无创地测量垂直位置和作用在其自身上的动力。它由一个3轴加速度传感器,一个3轴磁力计,一个微控制器,一个无线模块,电池和外部电磁线圈组成。在这项研究中,我们将系统应用于气固流化床中自由移动的粗物体。对象在流化床中的漂浮和下沉运动基本上是由其密度和流化介质的表观密度之间的差异引起的。然而,在流化状态的变化的影响下,物体有时表现出奇怪的行为。我们测量了作用在物体上的向上力的时间变化以及从外部看不到的垂直位置。实验结果表明,作用在物体上的力在浮动状态和下沉状态之间存在显着差异,并且由于干扰流化床中上升的气泡而大大复杂化。物体垂直位置的概率密度表明,其运动不仅通过静水效应来解释,而且还可以通过床内流化状态的不均匀性来解释。

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