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A successful general fluid-to-fluid similarity theory for heat transfer at supercritical pressure

机译:一种成功的一般流体流体相似性,用于超临界压力的热传递

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The present paper introduces a successful and general fluid-to-fluid similarity theory for heat transfer to fluids at supercritical pressure, having a high degree of universality. This work shortly follows the recent publication of a "local" successful similarity theory developed for fluids at supercritical pressures in a range of conditions in which the values of their molecular Prandtl number were quantitatively similar, extending its conclusions to the case of different molecular Prandtl numbers. The reason why this further step requested a short time to be elaborated is due to recognising that previous work by the Authors had actually already solved the related problems, though in a slightly different way, now interpreted in a more significant frame owing to a better problem understanding. The present similarity theory is based on first ideas developed more than one and a half decade ago by one of the authors, while addressing flow stability of supercritical fluids in heated channels, which encountered immediate problems to be applied in a straightforward way to heat transfer. These ideas were revised and considerably improved during the PhD thesis of the other author, also overcoming a sort of prejudicial assumption that finally resulted to limit their applicability. More recently, published DNS data triggered further reflections on the role of the Prandtl number, leading to the mentioned "local" form of the successful similarity theory. This led to the present step, by just recognising that the mentioned PhD thesis had already proposed a sufficient rationale to extend this local interpretation to a broader range of conditions. The rather convincing results presented herein, obtained making use of RANS CFD analyses with four different fluids, demonstrate the interesting capabilities of this final form of the theory. The establishment of an effective set of dimensionless numbers for heat transfer problems is hoped to pave the way for the development of the still lacking successful engineering heat transfer correlations for supercritical pressure fluids. It further calls for dedicated experiments needed to confirm the suitability of the present theory beyond any reasonable doubt.
机译:本文介绍了一种成功和一般的流体流体相似性理论,用于热传递到超临界压力的流体,具有高度的普遍性。这项工作很快遵循最近发布的“本地”成功的相似性理论,用于在其分子PRANDTL数量的价值定量相似的一系列条件下为流体开发的流体,其结论到不同分子PRANDTL数的情况下。这个进一步的阶段要求阐述短时间的原因是因为认识到提交人实际上已经解决了相关问题,但是以略有不同的方式,现在由于更好的问题而言,现在在更加重要的框架中解释为更重要的框架理解。目前的相似性理论基于由其中一位作者开发的第一款人,同时解决加热通道中超临界流体的流动稳定性,这遇到了以直接的方式应用于传热的直接问题。这些想法在其他作者的博士论文中进行了修订并大大改善,也克服了一种偏见的偏见假设,最终导致限制了适用性。最近,发布的DNS数据触发了对Prandtl号码的作用的进一步反映,导致提到的“本地”形式的成功相似理论。这导致了本步骤,仅识别出所提到的博士学论点已经提出了足够的理由,以将这种地方解释扩展到更广泛的条件范围内。本文呈现的相当令人信服的结果,获得使用RanS CFD分析与四种不同的流体进行分析,证明了该理论的最终形式的有趣能力。希望为传热问题建立有效的无量纲数,希望为超临界压力流体的发展缺乏成功的工程传热相关性铺平道路。它进一步呼吁进行专用实验,以确认本理论超出任何合理怀疑的适用性。

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