首页> 外文期刊>The Journal of Supercritical Fluids >'Stagnation flow heat transfer of confined, impinging hot water jets under supercritical pressures'
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'Stagnation flow heat transfer of confined, impinging hot water jets under supercritical pressures'

机译:“在超临界压力下,受限,撞击热水射流的滞流传热”

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摘要

Hydrothermal spallation drilling is a possible alternative drilling technology based on the characteristics of certain rock types to disintegrate continuously into small fragments when exposed to high thermal loads. Impinging supercritical water jets or hydrothermal flames are favored to provide the required heat for thermal fragmentation. Hence, stagnation flow heat transfer under supercritical pressures of water was investigated by means of two calorimetric sensor devices covering a wide range of heat fluxes and surface temperatures. A numerical model based on ANSYS FLUENT was established to predict the heat transfer in conjunction with the Shear-Stress Transport k-omega turbulence model and the REFPROP database to calculate the thermo-physical properties. Finally, area-averaged heat transfer coefficients in the stagnation region of impinging hot water jets were determined by numerical simulations and validated against experimental measurements. Generally, the experimental trends were predicted correctly by the numerical model although the absolute heat transfer was overestimated. (C) 2015 Elsevier B.V. All rights reserved.
机译:热液散裂钻探是一种可能的替代钻探技术,它基于某些岩石类型的特征,当暴露于高热负荷时会连续崩解成小块。撞击超临界水射流或水热火焰有利于提供热裂解所需的热量。因此,借助于两个涵盖大范围热通量和表面温度的量热传感器设备,研究了水在超临界压力下的滞流传热。建立了基于ANSYS FLUENT的数值模型,结合Shear-Stress Transportk-ω湍流模型和REFPROP数据库来预测热传递,以计算热物理性质。最后,通过数值模拟确定了撞击热水射流停滞区域的面积平均传热系数,并通过实验测量进行了验证。通常,尽管绝对传热率被高估了,但通过数值模型可以正确预测实验趋势。 (C)2015 Elsevier B.V.保留所有权利。

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