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A novel vertical axis water turbine for power generation from water pipelines

机译:一种新颖的垂直轴水轮机,用于通过输水管道发电

摘要

In order to help water supply utilities improve water supply management, offer early warning and control water pipeline leakage, so as to provide clean water to residents, many instruments are installed to monitor hydraulic and water quality conditions along the water pipelines. However, one of the challenges of such tremendous monitor system is its limited power resources to make the smart sensors and sensor networks operate continuously and safely due to poor site conditions. In this paper, a novel vertical-axis water turbine has been developed for hydropower harness inside water pipelines when extra water head can be consumed. The small hydro power generated can be used for power supply to the data collection systems in underground and congested locations or to maintenance work at remote locations. The device was developed through CFD (Computational Fluid Dynamic) simulation and lab tests. The performance of the developed water turbines and the flow characteristics inside water pipes were simulated using the ANSYS CFD packages: FLUENT and Gambit. After the simulation, a number of prototypes were fabricated and tested to measure the real power output and verify the simulated results. The results indicate that the simulation outcomes can offer a good guidance for the rotor design even though the difference between the simulation and experimental results is fairly large. The results also show that the rotor with a hollow structure combined with an eye-shaped slanted block in a pipeline could generate the maximum power as compared with other types of vertical-axis rotors. Furthermore, the simulation and test results of different generation turbines offer valuable information for developing hydropower harness device in confined conditions.
机译:为了帮助供水公用事业改善供水管理,提供预警和控制输水管道泄漏,以便为居民提供清洁水,安装了许多仪器来监测输水管道中的水力和水质状况。但是,如此庞大的监控系统面临的挑战之一是由于现场条件恶劣,使得智能传感器和传感器网络连续且安全运行的电源资源有限。在本文中,已经开发出一种新颖的垂直轴水轮机,用于在可以消耗额外水头的情况下在输水管道内使用水力发电装置。产生的少量水力发电可用于为地下和拥挤地区的数据收集系统供电,或用于偏远地区的维护工作。该设备是通过CFD(计算流体动力学)仿真和实验室测试开发的。使用ANSYS CFD软件包FLUENT和Gambit对开发的水轮机的性能和水管内的流动特性进行了仿真。仿真之后,制造并测试了许多原型,以测量有功功率输出并验证仿真结果。结果表明,即使仿真结果与实验结果之间的差异很大,仿真结果仍可为转子设计提供良好的指导。结果还表明,与其他类型的垂直轴转子相比,具有空心结构的转子与眼形倾斜块相结合的管道可以产生最大的功率。此外,不同世代涡轮机的仿真和测试结果为在有限条件下开发水力发电装置提供了有价值的信息。

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