具有实时数据监控系统的实验室规模振荡水柱OWC试验台的研制

N. Hiron, I. Giriantari, L. Jasa, I. Kumara
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引用次数: 0

摘要

垂直轴风力发电振荡水柱(OWC)是一种将海浪转化为电能的发电技术。要深入了解带VAWT的OWC性能,需要一个复杂的监测系统。本文主要讨论两个问题。第一阶段是制造实验室规模的OWC试验台,第二阶段是开发和验证专用OWC系统的实时监控系统。本文提出的监控系统由传感器单元、单片机和监控单元组成。传感器单元放置在试验台的某些部分。然后,测量变量包括波浪振荡,室中水面振荡,OWC中Savonius涡轮的旋转,室中的空气压力。数据采集采用带有图形界面的Arduino-Uno,使用LabVIEW程序。试验台和监测系统已研制成功,并在实验室规模的VAWT上进行了测试。OWC和涡轮性能测量数据已成功地以交互形式显示并存储在计算机的数据记录中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Development of Laboratory-Scale Oscillating Water Column OWC Test Rig with Real-Time Data Monitoring System
Oscillating water column (OWC) with vertical axis wind turbine (VAWT) involves extracting ocean waves into electrical energy. To know the performance of OWC with VAWT in depth requires a complex monitoring system. This article focuses on two discussions. The first is manufacturing the laboratory-scale OWC test rig, and the second is developing and validating the real-time monitoring system for the purpose-built OWC system. The monitoring system we proposed was consists of the sensors unit, MCU, and monitoring unit. The sensor unit is placed in certain parts of the test rig. And then, the measurement variables include wave oscillations, water surface oscillations in the chamber, rotation of the Savonius turbine in the OWC, air pressure in the chamber. The data acquisition uses the Arduino-Uno with graphics interface using the LabVIEW program. The test rig and the monitoring system have been successfully developed and tested on the OWC prototype with laboratory-scale VAWT. OWC and turbine performance measurement data have been successfully displayed in an interactive form and stored in data logging on a computer.
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