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A Flexible 5-In-1 Microsensor for Internal Microscopic Diagnosis of Vanadium Redox Flow Battery Charging Process

机译:一种灵活的5合1微传感器,用于内部微观诊断钒氧化还原流量电池充电过程

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摘要

Multiple important physical parameters in the vanadium redox flow battery are difficult to measure accurately, and the multiple important physical parameters (e.g., temperature, flow, voltage, current, pressure, and electrolyte concentration) are correlated with each other; all of them have a critical influence on the performance and life of vanadium redox flow battery. In terms of the feed of fuel to vanadium redox flow battery, the pump conveys electrolytes from the outside to inside for reaction. As the performance of vanadium redox flow battery can be tested only by an external machine—after which, the speed of pump is adjusted to control the flow velocity of electrolyte—the optimum performance cannot be obtained. There is a demand for internal real-time microscopic diagnosis of vanadium redox flow batteries, and this study uses micro-electro-mechanical systems (MEMS) technology to develop a flexible five-in-one (temperature, flow, voltage, current, and pressure) microsensor, which is embedded in vanadium redox flow battery, for real-time sensing. Its advantages include: (1) Small size and the simultaneous measurement of five important physical quantities; (2) elastic measurement position and accurate embedding; and (3) high accuracy, sensitivity, and quick response time. The flexible five-in-one microsensor embedded in the vanadium redox flow battery can instantly monitor the changes in different physical quantities in the vanadium redox flow battery during charging; as such, optimum operating parameters can be found out so that performance and life can be enhancec.
机译:钒氧化还原电池中的多个重要物理参数难以准确测量,并且多个重要的物理参数(例如,温度,流量,电压,电流,压力和电解质浓度相互相关;所有这些都对钒氧化还原流量电池的性能和寿命产生了关键影响。就燃料饲料到钒氧化还原流量而言,泵将电解质从外部传递到内部以进行反应。由于钒氧化还原流量电池的性能仅通过外部机器进行测试,因此调节泵的速度以控制电解质的流速 - 不能获得最佳性能。需要对内部实时微观诊断钒氧化还原电池,本研究采用微电机械系统(MEMS)技术开发灵活的五(温度,流量,电压,电流和压力)嵌入钒氧化还原流电池的微传感器,用于实时感测。其优点包括:(1)体积小,同时测量五个重要的物理量; (2)弹性测量位置和精确的嵌入; (3)高精度,灵敏度和快速响应时间。嵌入在钒氧化还原流量电池中的柔性五合一微传感器可以在充电期间立即监测钒氧化还原流量电池中不同物理量的变化;因此,可以找到最佳操作参数,以便性能和生命可以是增强的。

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