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首页> 外文期刊>Nature reviews Cancer >Electrostatic Sensor for Determining the Characteristics of Particles Moving From Deposition to Suspension in Pneumatic Conveying
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Electrostatic Sensor for Determining the Characteristics of Particles Moving From Deposition to Suspension in Pneumatic Conveying

机译:用于确定从沉积移动到气动输送中悬浮液的颗粒特性的静电传感器

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The minimum conveying velocity or the lowest point of pressure drop curve can reflect the characteristics of particles moving from deposition to suspension in pneumatic conveying. However, when the mass flow rate is low, the change of particles flow cannot be effectively reflected by the above methods. In this paper, based on a 4-arc electrode electrostatic sensor, with localised sensitivity, the detailed scale signals that represent the particle random motion are extracted by the combination of Empirical Mode Decomposition (EMD) and Hurst exponent. The differences in the particle random motion energy ratio (PRMER) of 4-channel electrode signals are used to characterize the transition of flow state. In the verification experiment by using a belt-style electrostatic velocity measured rig, the higher the velocity of rubber belt or the closer to the electrode, the higher the PRMERs of electrostatic signal. In the experiment of gas-solid two-phase flow rig, the PRMERs of 4-channel electrode signals are all increasing with the increase of superficial gas velocity, and the PRMERs of different electrodes are rather different at low superficial gas velocity (V-g). When V-g drops at the minimum pressure drop point (P-MPD), the PRMERs of top/bottom and left/right electrodes begin to separate (e.g. the particle mass flow rates are 100 kg/h and 120 kg/h). Furthermore, when the solid mass flow rate is 80 kg/h, the proposed method can clearly characterize the transition of flow states in the pipeline, but the pressure drop phase diagram cannot.
机译:最小输送速度或压降曲线的最低点可以反映从沉积转移到气动输送中悬浮液的颗粒的特性。然而,当质量流量低时,通过上述方法不能有效地反映颗粒流的变化。本文基于4弧电极静电传感器,具有局部灵敏度,通过经验模式分解(EMD)和赫斯特指数的组合提取表示粒子随机运动的详细刻度信号。 4通道电极信号的粒子随机运动能量比(PRMER)的差异用于表征流动状态的转变。在验证实验中,使用带式静电速度测量钻机,橡胶带的速度越高或更靠近电极,静电信号的主动力越高。在气体固体两相流动钻机的实验中,随着浅表气体速度的增加,4通道电极信号的刺客都在增加,并且在低浅表气体速度(V-G)下不同电极的刺客相当不同。当V-G在最小压降点(P-MPD)下降时,顶/底和左/右电极的PRMER开始分离(例如,粒子质量流量为100kg / h和120kg / h)。此外,当固体质量流量为80kg / h时,所提出的方法可以清楚地表征流量状态在管道中的转变,但压降相图不能。

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