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首页> 外文期刊>The Journal of Supercritical Fluids >Numerical analysis of penetration lengths in submerged supercritical water jets
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Numerical analysis of penetration lengths in submerged supercritical water jets

机译:淹没超临界水射流穿透长度的数值分析

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摘要

"Hydrothermal spallation drilling" is a possible alternative drilling technology that uses the properties of certain rock types to disintegrate into small fragments when heated up rapidly by a hot impinging fluid jet. Hot supercritical water jets are favored to provide the required heat for thermal rock fragmentation. However, the indispensable presence of a dense water-based drilling fluid during operation can cause considerable heat losses in the supercritical water jet before impingement on the rock surface. To predict these heat losses from the hot jet to the cold aqueous environment, a numerical model based on the commercial CFD tool ANSYS FLUENT~R was established. Penetration lengths of the supercritical jet plume at near-critical pressures were determined numerically and validated with experimental values for a wide range of conditions. Experiments and simulations showed an acceptable agreement and the experimental trends were satisfactorily predicted by the model.
机译:“水力散裂钻井”是一种可能的替代钻井技术,该技术利用某些岩石类型的特性,在被热冲击流体射流快速加热时分解成小碎片。热超临界水射流有利于为热岩石破碎提供所需的热量。然而,在操作期间必不可少的稠密水基钻井液的存在会在撞击岩石表面之前在超临界水射流中造成相当大的热损失。为了预测从热射流到冷水环境的热量损失,建立了基于商用CFD工具ANSYS FLUENT〜R的数值模型。数值确定了超临界射流在近临界压力下的渗透长度,并在各种条件下用实验值进行了验证。实验和仿真表明可接受的一致性,并且该模型令人满意地预测了实验趋势。

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