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Thermal conductivity of compressed beryllium pebble beds

机译:压缩铍卵石床的导热系数

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For helium cooled pebble bed blankets, the description of the thermal-mechanical interaction between pebble beds and structural material requires the knowledge of the pebble bed thermal conductivity k as a function of temperature Tand deformation state (pebble bed strain ε). Experimental results for the thermal conductivity of compressed beryllium pebble beds are presented. The pebble beds consisted of 1 mm NGK pebbles and are representative for dense pebble beds (packing factors γ ≈ 63.5%). Measurements were performed in the temperature range between 200 and 650℃, with maximum pressures of 3.6 MPa and pebble bed deformations up to ε≈3.5%. A correlation is proposed which is based primarily on measurements but uses conductivity values for non-deformed pebble beds predicted by the Schluender Bauer Zehner model. It is argued that the proposed correlation is expected to be applicable also for pebble diameters different from 1 mm and other packing factors than 63.5% as long as densified pebble beds are considered. Finally, a conductivity correlation is presented which is applicable up to the ultimate compaction to a solid body.
机译:对于氦冷却的卵石床毯,描述卵石床和结构材料之间的热力相互作用需要了解卵石床导热系数k与温度T和变形状态(卵石床应变ε)的关系。给出了压缩铍卵石床导热系数的实验结果。卵石床由1毫米NGK卵石组成,可代表致密卵石床(堆积系数γ≈63.5%)。在200至650℃的温度范围内进行测量,最大压力为3.6 MPa,卵石床变形高达ε≈3.5%。提出了一种相关性,该相关性主要基于测量值,但对Schluender Bauer Zehner模型预测的未变形卵石床使用了电导率值。据认为,只要考虑到致密的卵石床,建议的相关性也有望适用于直径小于1 mm的卵石和其他填充因子小于63.5%的卵石。最后,给出了电导率相关性,该电导率相关性适用于对固体的最终压实。

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