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首页> 外文期刊>The Journal of Supercritical Fluids >Experimental heat transfer study on impinging, turbulent, near-critical water jets confined by an annular wall
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Experimental heat transfer study on impinging, turbulent, near-critical water jets confined by an annular wall

机译:环形壁约束的冲击,湍流,近临界水射流的传热实验研究

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摘要

Polycrystalline rock can be fragmented and penetrated, when hot supercritical water jets impinge on it. Knowledge about the heat transfer between supercritical water jets and the rock's surface is absolutely crucial for this drilling method called hydrothermal spallation rock drilling. The present work for the first time provides systematic heat transfer data of impinging, turbulent, near- and supercritical water jets confined by a cylindrical wall. The most striking result is the dependence of heat transfer coefficients on the surface temperature of the impingement plate: experiments at supercritical jet temperatures performed with two different calorimeter types show remarkable differences between heat transfer coefficients obtained with low surface temperatures (at high heat fluxes) and high surface temperatures (at low heat fluxes). However, the experimental data of both calorimeters could be incorporated in a single empirical correlation by accounting for the variation of individual fluid properties across the jet's thermal boundary layer.
机译:当热超临界水射流撞击多晶岩时,多晶岩会破碎并穿透。关于超临界水射流与岩石表面之间的热传递的知识对于这种称为热液散裂岩石钻探的方法至关重要。本工作首次提供了由圆柱壁限制的撞击,湍流,近临界和超临界水射流的系统传热数据。最显着的结果是传热系数对冲击板表面温度的依赖性:在两种不同量热仪类型的超临界射流温度下进行的实验表明,在低表面温度(高热通量)下获得的传热系数与高表面温度(低热通量)。但是,通过考虑射流热边界层上各个流体属性的变化,可以将两个量热计的实验数据合并到单个经验相关中。

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