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Energy storage in a motor: Combined high temperature superconductor and flywheel energy storage

机译:电动机中的储能 - 高温超导体和飞轮储能

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Energy storage is needed to fill the gap when variable power energy production systems are offline. This project is to study an energy storage device using high temperature superconducting (HTS) windings. The design will store energy as mechanical and as electrical energy. Mechanical energy will be stored as inertia in the mass of the spinning rotor. This inertial energy storage is very similar to a flywheel. Magnetic energy will be stored in the motor's rotor windings and possibly in the field windings. Energy stored in these windings will create a magnetic field to store energy proportional to the current and number of turns in the coils and will also spin the flywheel / rotor. This design study is to determine the amount of energy that can be stored in the device and estimate the losses resulting from the spinning mass of the rotor and the peripheral devices needed for operation.
机译:当可变功率生产系统离线时,需要填充差距来填充间隙。 该项目是使用高温超导(HTS)绕组来研究能量存储装置。 该设计将作为机械和电能存储能量。 机械能将在纺丝转子的质量中储存在惯性中。 这种惯性能量存储与飞轮非常相似。 磁能将存储在电机的转子绕组中,并且可能在现场绕组中。 存储在这些绕组中的能量将产生磁场,以将能量存储成与线圈中的电流和匝数成比例,并且还将旋转飞轮/转子。 该设计研究是确定可以存储在设备中的能量,并估计由转子的旋转质量和操作所需的外围设备产生的损耗。

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