Initial Study of the Onsite Measurement of Flow Sensors on Turbine Blades (SOTB)

Author:

Yang Lung-Jieh1ORCID,Tasupalli Chandrashekhar1ORCID,Wang Wei-Cheng1,Lee Che-Yin2,Lee Chi-Yuan3,Athikary Kunal G.4ORCID,Wu Jie-Xun5

Affiliation:

1. Department of Mechanical and Electromechanical Engineering, Tamkang University, New Taipei City 251301, Taiwan

2. Department of Refrigeration, Air-Conditioning and Energy Engineering, National Chin-Yi University of Technology, Taichung 411, Taiwan

3. Department of Mechanical Engineering, Yuan Ze Fuel Cell Center, Yuan Ze University, Taoyuan 32003, Taiwan

4. Department of Computer Science and Engineering, Presidency University, Bangalore Karnataka 560064, India

5. Department of Civil Engineering, Tamkang University, New Taipei City 251301, Taiwan

Abstract

This paper presents a new framework using MEMS flow sensors on turbine blades (SOTB) to investigate unsteady flow features of a rotating wind turbine. Self-heating flow sensors were implemented by the U18 complementary metal-oxide semiconductor (CMOS) MEMS foundry provided by Taiwan Semiconductor Research Institute (TSRI). Flow sensor chips with a size of 1.5 mm × 1.5 mm were parylene-coated, output via a wireless data acquisition system (WDAQ), and mounted at the root, middle and tip of a 1.2 m diameter semi-rigid turbine blade of a 400 W horizontal axis wind turbine (HAWT). The instantaneous angles of attack (AOAs) of the SOTB were found to be 46~62°, much higher than the general stall AOA of 15°, but were accurate considering the normal detection of the flow sensors. The computational fluid dynamics (CFD) simulation of the HAWT was also compared with the SOTB output. The onsite measurement herein revealed that the 3D secondary flow increment, mostly obvious near the middle part of the turbine blades, degraded both the sensor and the turbine performance and initially justified the onsite measurement application.

Funder

Taiwan’s National Science and Technology Council

Publisher

MDPI AG

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