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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Monte Carlo Simulations Comparing the Response of a Novel Hemispherical Tepc to Existing Spherical and Cylindrical Tepcs for Neutron Monitoring and Dosimetry
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Monte Carlo Simulations Comparing the Response of a Novel Hemispherical Tepc to Existing Spherical and Cylindrical Tepcs for Neutron Monitoring and Dosimetry

机译:蒙特卡罗模拟比较新型半球形TEPC对中子监测和剂量测定的现有球形和圆柱TEPC的响应

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摘要

Neutron dosimetry in reactor fields is currently mainly conducted with unwieldy flux monitors. Tissue Equivalent Proportional Counters (TEPCs) have been shown to have the potential to improve the accuracy of neutron dosimetry in these fields, and Multi-Element Tissue Equivalent Proportional Counters (METEPCs) could reduce the size of instrumentation required to do so. Complexity of current METEPC designs has inhibited their use beyond research. This work proposes a novel hemispherical counter with a wireless anode ball in place of the traditional anode wire as a possible solution for simplifying manufacturing. The hemispherical METEPC element was analyzed as a single TEPC to first demonstrate the potential of this new design by evaluating its performance relative to the reference spherical TEPC design and a single element from a cylindrical METEPC. Energy deposition simulations were conducted using the Monte Carlo code PHITS for both monoenergetic 2.5 MeV neutrons and the neutron energy spectrum of Cf-252-D2O moderated. In these neutron fields, the hemispherical counter appears to be a good alternative to the reference spherical geometry, performing slightly better than the cylindrical counter, which tends to underrespond to H*(10) for the lower neutron energies of the Cf-252-D2O moderated field. These computational results are promising, and if follow-up experimental work demonstrates the hemispherical counter works as anticipated, it will be ready to be incorporated into an METEPC design.
机译:反应器领域中的中子剂量测定法目前主要用笨重的通量监测器进行。已经显示组织当量比例计数器(TEPCS)具有提高这些领域中子剂量测定法的精度,而多元素组织当量比例计数器(MetePCS)可以降低所需的仪器尺寸。当前MetePC设计的复杂性抑制了超越研究的应用。该工作提出了一种新的半球形计数器,其与无线阳极球代替传统的阳极线作为用于简化制造的可能解决方案。分析了半球形MetePC元件作为单个TEPC,首先通过从圆柱形Metepc中评估其相对于参考球体TEPC设计和单个元件来评估其性能来证明这种新设计的潜力。使用MoneNergetic 2.5 MeV中子和CF-252-D2O适度的中子能谱进行的能量沉积模拟。在这些中子场中,半球形计数器似乎是对参考球形几何形状的良好替代方案,比圆柱形计数器略好地执行,这趋于对应于CF-252-D2O的较低中子能量的H *(10)进行对应的H *(10)适度的领域。这些计算结果很有希望,如果随访实验工作表明,如预期的那样,它将准备好结合到Metepc设计中。

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