科技报告详细信息
Thermal properties for the thermal-hydraulics analyses of the BR2 maximum nominal heat flux.
Dionne, B. ; Kim, Y. S. ; Hofman, G. L. (Nuclear Engineering Division)
关键词: ALUMINIUM;    BERYLLIUM;    BURNUP;    CAPACITY;    HEAT FLUX;    IRRADIATION;    MEAT;    PRESSURE VESSELS;    SPECIFIC HEAT;    STAINLESS STEELS;    THERMAL HYDRAULICS;    THERMODYNAMIC PROPERTIES;   
DOI  :  10.2172/1018508
RP-ID  :  ANL/RERTR/TM-11-20
PID  :  OSTI ID: 1018508
Others  :  TRN: US201114%%171
学科分类:材料科学(综合)
美国|英语
来源: SciTech Connect
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【 摘 要 】

This memo describes the assumptions and references used in determining the thermal properties for the various materials used in the BR2 HEU (93% enriched in {sup 235}U) to LEU (19.75% enriched in {sup 235}U) conversion feasibility analysis. More specifically, this memo focuses on the materials contained within the pressure vessel (PV), i.e., the materials that are most relevant to the study of impact of the change of fuel from HEU to LEU. This section is regrouping all of the thermal property tables. Section 2 provides a summary of the thermal properties in form of tables while the following sections present the justification of these values. Section 3 presents a brief background on the approach used to evaluate the thermal properties of the dispersion fuel meat and specific heat capacity. Sections 4 to 7 discuss the material properties for the following materials: (i) aluminum, (ii) dispersion fuel meat (UAlx-Al and U-7Mo-Al), (iii) beryllium, and (iv) stainless steel. Section 8 discusses the impact of irradiation on material properties. Section 9 summarizes the material properties for typical operating temperatures. Appendix A elaborates on how to calculate dispersed phase's volume fraction. Appendix B shows the evolution of the BR2 maximum heat flux with burnup.

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