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Molten Chloride Salts for Heat Transfer in Nuclear Systems.

机译:用于核系统中热传递的熔融氯化物盐。

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摘要

A forced convection loop was designed and constructed to examine the thermal- hydraulic performance of molten KCl-MgCl2 (68-32 at %) salt for use in nuclear co-generation facilities. As part of this research, methods for prediction of the thermo-physical properties of salt mixtures for selection of the coolant salt were studied. In addition, corrosion studies of 10 different alloys were exposed to the KCl-MgCl2 to determine a suitable construction material for the loop.;Using experimental data found in literature for unary and binary salt systems, models were found, or developed to extrapolate the available experimental data to unstudied salt systems. These property models were then used to investigate the thermo-physical properties of the LINO3-NaNO3-KNO 3-Ca(NO3), system used in solar energy applications. Using these models, the density, viscosity, adiabatic compressibility, thermal conductivity, heat capacity, and melting temperatures of higher order systems can be approximated. These models may he applied to other molten salt systems.;Coupons of 10 different alloys were exposed to the chloride salt for 100 hours at 850°C was undertaken to help determine with which alloy to construct the loop. Of the alloys exposed, Haynes 230 had the least amount of weight loss per area. Nickel and Hastelloy N performed best based on maximum depth of attack. Inconel 625 and 718 had a nearly uniform depletion of Cr from the surface of the sample. All other alloys tested had depletion of Cr along the grain boundaries. The Nb in Inconel 625 and 718 changed the way the Cr is depleted in these alloys. Grain-boundary engineering (GBE) of Incoloy 800H improved the corrosion resistance (weight loss and maximum depth of attack) by nearly 50% as compared to the as-received Incoloy 800H sample.;A high temperature pump, thermal flow meter, and pressure differential device was designed, constructed and tested for use in the loop, The heat transfer of the molten chloride salt was found to follow general correlations used to estimate the Nusselt number for water in both the forced convection laminar regime and in the mixed convection regime.
机译:设计和构造了强制对流回路,以检查用于核热电联产设施的熔融KCl-MgCl2(68-32 at%)盐的热-水力性能。作为这项研究的一部分,研究了预测用于选择冷却剂盐的盐混合物的热物理性质的方法。此外,将10种不同合金的腐蚀研究暴露于KCl-MgCl2中,以确定适合该回路的建筑材料;使用文献中一元和二元盐体系的实验数据,发现模型或开发模型以推断可用的尚未研究的盐系统的实验数据。然后将这些特性模型用于研究用于太阳能应用的LINO3-NaNO3-KNO 3-Ca(NO3)系统的热物理特性。使用这些模型,可以估算高阶系统的密度,粘度,绝热可压缩性,导热率,热容和熔融温度。这些模型可能适用于其他熔融盐体系。在850°C下,将10种不同合金的试样暴露于氯化物盐中100小时,以帮助确定使用哪种合金构造环。在暴露的合金中,Haynes 230的单位面积重量损失最少。根据最大攻击深度,镍和哈氏合金N表现最佳。 Inconel 625和718从样品表面几乎完全去除了Cr。测试的所有其他合金在晶界上都有Cr的消耗。 Inconel 625和718中的Nb改变了这些合金中Cr贫化的方式。与收到的Incoloy 800H样品相比,Incoloy 800H的晶界工程(GBE)将耐腐蚀性(重量损失和最大侵蚀深度)提高了近50%。;高温泵,热流量计和压力设计,构造和测试了在回路中使用的微分装置。发现熔融氯化物盐的传热遵循一般相关性,该一般相关性用于估计强制对流层流状态和混合对流状态下水的Nusselt数。

著录项

  • 作者

    Ambrosek, James Wallace.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Nuclear.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 238 p.
  • 总页数 238
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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