带集成直轴飞轮的低转速变矩器(LRTC)

Q3 Engineering
Dana Salar, Erik Hultman, A. Savin
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引用次数: 1

摘要

低转速变矩器(LRTC)是一种在海床上使用的旋转发电机概念,其驱动力来自海面上的海浪运动。这一概念是由两个相同的发电机组成的,它们通过带有内置滚珠轴承离合器的弹簧鼓相对连接。卷筒通过电线连接到海面上的浮标,电线绕着弹簧卷筒滚动。在海浪中,浮标向上或向下移动,并向上或向下拉动绳索。这种运动会导致发电机旋转。本文介绍了LRTC发电机概念的升级和测量系统的升级,包括硬件和软件。设计了一个薄盘式飞轮系统,用于直接连接到发电机的转子轴,还开发了一个电子测量系统,用于更精确的测量和较小的干扰。为了比较系统和更详细地探索发电机概念的性能,已经进行了更详细的测试。本文做了三个不同的实验。前两个实验是为了研究飞轮的性能,并观察有飞轮和无飞轮的LRTC系统的性能。第三个实验研究了通过添加更多的薄圆盘来增加飞轮的质量来优化飞轮质量。所有动作都是用一个六关节工业机器人模拟的。已经用不同的时间周期模拟了几种正弦类型的波浪运动,还用机器人模拟了几种真实的波浪气候运动(取自野外的数据)。实验表明,在LRTC系统中添加飞轮在提高峰值功率和平均输出功率方面具有优势,并且还软化了输出功率振荡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-RPM torque converter (LRTC) with Integrated direct shaft flywheel
The low-RPM Torque Converter (LRTC) is a rotating generator concept for use on the seabed with the driving force from sea waves motion on the sea surface. This concept is built up of two identical generators connected opposite each other via a spring drum with a built-in ball bearing clutch. The drum is connected to a buoy on the sea surface via a wire, the wire is rolled around the spring drum. With sea waves, the buoy moves either upwards or downwards and pulls the wire upwards or downwards. This movement causes the generators to spin. This article presents an upgrade of the LRTC generator concept and upgraded measurement system, both hardware and software. A flywheel system of the thin-disc type has been designed for direct connection to the generator's rotor shaft and an electronic measuring system has also been developed for more accurate measurements and minor disturbances. More detailed tests have been performed both for the purpose of comparing the systems and to explore the performance of the generator concept in more detail. Three different experiments have been done in this article. The first two experiments were performed to investigate the performance of the flywheel and to see the performance of the LRTC system with and without flywheel. The third experiment investigated the optimization of the flywheel mass by increasing the mass of the flywheel with the addition of more thin discs. All movements are simulated with a six-joint industrial robot. Several sinusoidal types of wave motions have been simulated with different time periods and also several real wave climate motions (data taken from fields) have been simulated with the robot. The experiments show that the addition of the flywheel in the LRTC system provides advantages in increasing both peak power, average output power and also softens the output power oscillation.
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来源期刊
International Marine Energy Journal
International Marine Energy Journal Engineering-Ocean Engineering
CiteScore
1.70
自引率
0.00%
发文量
24
审稿时长
12 weeks
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