2019
DOI: 10.1002/ese3.412
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Power coefficient measurements of a novel vertical axis wind turbine

Abstract: Wind tunnel experiments were performed to evaluate the power coefficients of three vertical axis wind turbines (VAWTs), namely, (a) conventional VAWT (two-bladed troposkien shape), (b) novel 50% shifted troposkien shape-vertical axis wind turbine (50% STS-VAWT), and (c) novel 100% STS-VAWT. All turbines had the same

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Cited by 12 publications
(7 citation statements)
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“…In this case, not only vibration control could be achieved, but also the turbine power coefficient could be maximized as suggested in another publication. [19,20]…”
Section: Analysis Of Simulation Resultsmentioning
confidence: 99%
“…In this case, not only vibration control could be achieved, but also the turbine power coefficient could be maximized as suggested in another publication. [19,20]…”
Section: Analysis Of Simulation Resultsmentioning
confidence: 99%
“…Darrieus Phi rotor (troposkien shape) with 50% shifted troposkien shape-VAWT & 100% shifted troposkien shape-VAWT (Figure 8 K) (Hilewit et al, 2019) • Model A achieved a higher max power coefficient compared to model B and the conventional phi rotor.…”
Section: • Drag Device • Low Efficiencymentioning
confidence: 97%
“…Although there are a few formulas for computing the C p value, the fundamental equation is still the same. The C p has always been the primary focus of turbine design, construction, and real-time implementation [ 25 ]. The torque coefficient ( C t ), mechanical power and torque, tip speed ratio (TSR), drag or lift coefficients, and other basic parameters are included.…”
Section: Literature Reviewmentioning
confidence: 99%