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Investigation of Applicability of Using Water Mist for Cooling High-Pressure Turbine Components via Rotor Cavity Feed Channels

机译:通过转子腔进料通道使用水雾使用水雾的适用性研究

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摘要

Mist cooling has been considered as a potential means to significantly enhance cooling the hot components of a gas turbine. However, it is a great challenge to transport mist to locations where cooling is needed due to the high temperature environment and rotating components in the gas turbines. One plausible way is to transport high-pressure water to the rotor cover-plate cavity via a feed channel passing through the vane. The high-pressure water is then atomized to fine droplets (mist) that can be used to cool the rotor cover-plate cavity and possibly the blades as well. This study is focused on investigating whether pressurized liquid water can resist boiling during its transportation through the hot vane and gas turbine interior walls. Both 1-D empirical correlations and a 3-D flow computational scheme are used. Results show what could happen during the water transport in the feed channel with various inlet and boundary conditions. Conditions that can avoid boiling have been identified.
机译:雾气冷却被认为是显着增强冷却燃气轮机的热部件的潜在装置。然而,在需要高温环境和燃气轮机中的旋转部件,将雾输送到需要冷却的位置是一个巨大的挑战。一种合理的方式是通过穿过叶片的进料通道将高压水输送到转子盖板腔。然后将高压水雾化为可用于冷却转子盖板腔的细滴(雾)以及可能也是刀片。本研究专注于研究加压液体是否可以通过热叶片和燃气轮机内壁在运输过程中抵抗沸腾。使用1-D经验相关性和3-D流量计算方案。结果表明,具有各种入口和边界条件的进料通道中的水运输过程中可能发生的情况。已经确定了可以避免沸腾的条件。

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