Flashing flow in the rotating curved channels with variable cross-section of a two-phase flow turbine

Li, H. and Yu, Z. (2021) Flashing flow in the rotating curved channels with variable cross-section of a two-phase flow turbine. International Communications in Heat and Mass Transfer, 126, 105434. (doi: 10.1016/j.icheatmasstransfer.2021.105434)

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Abstract

The rotating flash flow has rarely been studied, although its characteristics affect significantly the performance of the two-phase flow turbine. In this paper, through analyzing the flashing flow obtained by CFD methods, which is validated with the experimental data, the relationships of average flow parameters under various rotational speeds were studied theoretically and numerically using the flow equations established on the Frenet coordinate system. The ratio of the mass flow rate under various rotational speeds was formalized and found to be dependent on the rotational speed and thermophysical properties. The generation and development of vapour were revealed and correlated to the geometry of the channel. The secondary flow in the flashing rotating channel was discussed and found to rotate in opposite directions upstream/downstream of the throat. The flashing induced near the throat had the effect on flow homogenizing in the normal direction of the cross-section. The analysis could be further applied to the analogy of the secondary flow between the rotating single-phase flow and the rotating flashing flow.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Li, Dr Hongyang and Yu, Professor Zhibin
Authors: Li, H., and Yu, Z.
College/School:College of Science and Engineering > School of Engineering > Systems Power and Energy
Journal Name:International Communications in Heat and Mass Transfer
Publisher:Elsevier
ISSN:0735-1933
ISSN (Online):1879-0178
Published Online:28 June 2021
Copyright Holders:Copyright © 2021 The Authors
First Published:First published in International Communications in Heat and Mass Transfer 126: 105434
Publisher Policy:Reproduced under a Creative Commons License

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