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Content Provider | The American Society of Mechanical Engineers (ASME) Digital Collection |
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Author | Chen, Qi Birk, A. M. |
Copyright Year | 2010 |
Abstract | This paper presents experimental data for the performance of a round ejector with a 22.5° bent entraining diffuser. The experiments were carried out on a hot gas wind tunnel that could provide primary mass flow rates up to 2.2 kg/s at ambient temperature and 1.8 kg/s at 500°C. Velocity, pressure and temperature were measured in the annulus upstream of the primary nozzle, on the mixing tube and diffuser walls, at the diffuser gap inlets and at the diffuser exit. The inlet flow swirl angle and flow temperature were varied to study their effect on ejector pumping, wall pressure, and wall temperature distribution. The data from bent ejectors were compared with similar data for a round straight ejector. The results showed that the 22.5° bent entraining ejector had better hot core cooling performance than the straight entraining ejector since the hot core was cooled by the tertiary flow more efficiently at the outer side of the bend. |
Sponsorship | International Gas Turbine Institute |
Starting Page | 2745 |
Ending Page | 2755 |
Page Count | 11 |
File Format | |
ISBN | 9780791844021 |
DOI | 10.1115/GT2010-22230 |
e-ISBN | 9780791838723 |
Volume Number | Volume 7: Turbomachinery, Parts A, B, and C |
Conference Proceedings | ASME Turbo Expo 2010: Power for Land, Sea, and Air |
Language | English |
Publisher Date | 2010-06-14 |
Publisher Place | Glasgow, UK |
Access Restriction | Subscribed |
Subject Keyword | Wall temperature Temperature Cooling Wind tunnels Ejectors Annulus Nozzles Diffusers Flow (dynamics) Pressure |
Content Type | Text |
Resource Type | Article |
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