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Multi sensor suite comprising active and passive ultrasonic transducers for monitoring solids flow and silo integrity

机译:多传感器套件,包括有源和无源超声传感器,用于监测固体流量和料仓完整性

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The bulk solid flow in silos and monitoring silo integrity are still challenging problems in the field of powder science and technology. The types of flow in silos have to be identified as early as possible to remedy problems associated with rat-hole, arching and plug flow to facilitate the preferred mode of mass flow. Acoustic techniques have been used to solve some of these issues with some success in the recent past. By incorporating passive ultrasonic sensors mostly in the form of acoustic emission sensors, in addition to active ones used in interrogating surface and flow of solids in silos, silo inlets and outlets, it has been shown that the solids flow in silos can be identified without interrupting the process thus leading to improved process monitoring and control in the storing, transport and handling of bulk solids. A sensor suite comprising multiple passive and active ultrasonic sensors have been used successfully in achieving the following in a pilot plant consisting of silos with multiple hoppers and associated transport facilities: identification of solids flow type, identification of particulate material from signature signals from passive sensors, solids flow rate, slip velocity and assessing silo integrity. Assessing silo integrity is important in large scale silos in avoiding catastrophic accidents in plants dealing with bulk solids. The sensor data fusion is done in both frequency and time domains using AI-methodologies involving multivariate data analysis.
机译:筒仓中的大量固体流动和筒仓完整性监控仍是粉末科学和技术领域中的难题。必须尽早确定筒仓中的流动类型,以解决与鼠洞,拱形和塞流有关的问题,以促进质量流动的首选方式。近来,声学技术已被用来解决其中一些问题,并取得了一些成功。通过结合主要以声发射传感器形式使用的无源超声传感器,除了用于询问筒仓,筒仓入口和出口中的固体的表面和流动的有源传感器之外,已经证明可以识别筒仓中的固体流量而不会中断因此,该方法可以改善散装固体的存储,运输和处理过程的监控。包含多个被动和主动超声传感器的传感器套件已成功用于在由带有多个料斗和相关运输设施的筒仓组成的中试工厂中实现以下目标:固体流类型的识别,来自被动传感器的特征信号的颗粒材料的识别,固体流量,滑移速度和评估筒仓完整性。在大型筒仓中,评估筒仓完整性对于避免处理散装固体的工厂发生灾难性事故很重要。传感器数据融合使用涉及多元数据分析的AI方法在频域和时域中完成。

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