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首页> 外文期刊>Journal of nuclear engineering and radiation science >Research Challenges of Heat Transfer to Supercritical Fluids
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Research Challenges of Heat Transfer to Supercritical Fluids

机译:传热对超临界流体的研究挑战

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摘要

Supercritical fluids (SCFs) become more and more important in various engineering applications. In nuclear power systems, SCFs are considered as coolant of the reactor core such as the supercritical water-cooled reactor (SCWR), superconducting magnets and blankets in the fusion reactors, or as fluid in the energy conversion systems of the next generation nuclear reactors. Accurate determination of heat transfer and the temperature of the structural material (e.g., fuel rod cladding) is of crucial importance for the system design. Thus, extensive studies on heat transfer to SCFs have been carried out in the past five decades and are still ongoing worldwide. However, no breakthrough is recognized or expected in the near future. In this paper, the status, main challenges, and future R&D needs are briefly reviewed. Three aspects are taken into consideration, i.e., experimental studies, numerical analysis, and model development for the prediction of heat transfer coefficient (HTC). Several key challenges and also the important subjects of the future R&D needs are identified. They are (a) data base for turbulence quantities, (b) multisolution of wall temperature, (c) extensive Reynolds-averaged Navier–Stokes (ERANS) method, and (d) new prediction method for HTC.
机译:超临界流体(SCFS)在各种工程应用中变得越来越重要。在核电系统中,SCFS被认为是反应器核心的冷却剂,例如超临界水冷式反应器(SCWR),熔体反应器中的超导磁铁和橡皮布,或作为下一代核反应堆的能量转换系统中的流体。准确测定传热和结构材料的温度(例如,燃料杆包层)对系统设计至关重要。因此,在过去五十年中进行了对SCFS的热传递的广泛研究,仍在全球范围内进行。但是,在不久的将来,没有公认或预期的突破。在本文中,简要审查了地位,主要挑战和未来的研发需求。考虑三个方面,即实验研究,数值分析和用于预测传热系数(HTC)的模型开发。确定了几个关键挑战以及未来的R&D需要的重要主题。它们是(a)湍流量的数据库,(b)壁温的多校测量,(c)广泛的雷诺平均Navier-stokes(erans)方法,以及HTC的新预测方法。

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