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TORSIONAL VIBRATION PROBLEM WITH MOTOR/ID FAN SYSTEM DUE TO PWM VARIABLE FREQUENCY DRIVE

机译:PWM变频驱动的电动机/ ID风扇系统的扭转振动问题

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Induced draft (ID) fan systems often use louvers or variable inlet guide vanes to control the flow of exhaust through the fans. An ID fan system can be made more efficient by using a variable frequency drive (VFD) to control the fan speed, which controls the air flow without adding restrictions to the flow path. To reduce energy costs, many companies are using more VFDs.This paper discusses how a VFD was the source of high torsional vibration in a motor/ID fan system operating a sufficient margin away from the torsional natural frequencies. This type of systeminstability is not a classical torsional resonance and would be difficult to predict in the design stage. As a result of the high torsional vibration, several couplings were damaged and a motor shaft experienced a fatigue failure before the problem could be clearly identified and solved.Two different fan systems at the refinery were tested and shown to exhibit similar torsional behavior, although only one of these systems actually failed. Test data showed that the dynamic torque in the couplings was excessive when the original VFD was operated at electrical frequencies above the first torsional natural frequency of the system (21 to 28.5 Hz depending on the fan and coupling arrangement). Within the normal operating speed range, there was continual reversing torque, which is considered unacceptable for centrifugal equipmentTo demonstrate that the VFD was the source of the excitation, the VFD was reconfigured as a soft starter so that it could be bypassed and the fan could then be operated at constant speed using inlet damper control. When operating across-the-line without the VFD, the dynamic torque was significantly reduced (approximately 10 percent of the motor rated torque).After the test results were reviewed, a new VFD was developed and installed by the manufacturer to prevent the problem from reoccurring within the normal operating speed range. Final measurements are presented that show significant reduction in dynamic torque after the drive modifications were implemented.
机译:引风机(ID)的风扇系统通常使用百叶窗或可变的进口导向叶片来控制通过风扇的排气流。通过使用变频驱动器(VFD)控制风扇速度,可以控制ID风扇系统的效率,从而控制气流,而不会增加对流路的限制。为了降低能源成本,许多公司正在使用更多的VFD。 本文讨论了VFD如何导致电动机/ ID风扇系统中高扭转振动的源头,该系统在远离扭转固有频率的地方有足够的余量。这类系统 不稳定性不是经典的扭转共振,在设计阶段很难预测。由于高的扭转振动,在清楚地识别并解决问题之前,几个联轴器被损坏,并且电动机轴经历了疲劳失效。 在炼油厂测试了两种不同的风机系统,并显示出相似的扭转性能,尽管其中只有一种系统实际上发生了故障。测试数据表明,当原始VFD以高于系统第一扭转固有频率(21至28.5 Hz,取决于风扇和联轴器布置)的频率运行时,联轴器中的动态扭矩过大。在正常运行速度范围内,存在连续的反向扭矩,这对于离心设备来说是不可接受的 为了证明VFD是激励源,VFD被重新配置为软启动器,因此可以绕开它,然后可以使用进气门风门控制以恒定速度运行风扇。在没有VFD的情况下进行全线运行时,动态转矩会大大降低(大约为电动机额定转矩的10%)。 在检查了测试结果之后,制造商开发并安装了新的VFD,以防止在正常运行速度范围内再次出现该问题。最终测量结果表明,执行驱动器修改后,动态转矩显着降低。

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