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Experimental determination of the epithermal flux shape-parameter factor, alpha, for the University of Arizona TRIGA Mark I reactor

机译:亚利桑那大学TRIGA Mark I反应堆的超热通量形状参数因子α的实验确定

摘要

Assuming an epithermal neutron flux distribution function of the form Φ'epi(E) α 1/E¹⁺ᵅ, the epithermal flux-shape parameter, alpha, and the integrated subcadmium to epicadmium flux ratio, f, were experimentally determined for two irradiation facilities in the University of Arizona TRIGA Mark I reactor. Two equivalent approaches: the Multimonitor method and the Non-linear least-squares method, based on integral (reaction rate) techniques applied to thin foils of gold, zirconium, vanadium, dysprosium, copper, manganese and molybdenum, were used. The Non-linear least-squares approach was found superior to the Multimonitor method on the basis of smaller resulting uncertainties. The resulting parameters are: α = -.0396±.0104 and f = 16.89 ± 1.08 for the Rabbit and α = -.0296 ±.0089 and f = 19.57 ± 1.26 for the Susan, where the reported uncertainties represent one sigma values.
机译:假设形式为Φ'epi(E)α1 /E¹⁺ᵅ的超热中子通量分布函数,通过实验确定了两种辐照设施的超热通量形状参数α以及次镉与epi镉的总通量比​​f在亚利桑那大学的TRIGA Mark I反应堆中。使用了两种等效方法:基于整体(反应率)技术的多显示器方法和非线性最小二乘法,该方法应用于金,锆,钒,,铜,锰和钼的薄箔。由于产生的不确定性较小,因此发现非线性最小二乘方法优于Multimonitor方法。所得参数为:对于兔子,α= -.0396±.0104和f = 16.89±1.08,对于Susan,α= -.0296±.0089和f = 19.57±1.26,其中报告的不确定性表示一个西格玛值。

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