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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Monte Carlo simulation of single and two-dosimeter approaches in a steam generator channel head.
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Monte Carlo simulation of single and two-dosimeter approaches in a steam generator channel head.

机译:蒸汽发生器通道顶部单剂量法和两剂量法的蒙特卡罗模拟。

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In a steam generator channel head, it was not unusual to see radiation workers wearing as many as twelve dosimeters over the surface of the body to avoid a possible underestimation of effective dose equivalent (H(E)) or effective dose (E). This study shows that only one or two dosimeters can be used to estimate H(E) and E without a significant underestimation. MCNP and a point-kernel approach were used to model various exposure situations in a steam generator channel head. The single-dosimeter approach (on the chest) was found to underestimate H(E) and E significantly for a few exposure situations, i.e., when the major portion of radiation source is located in the backside of a radiation worker. In this case, the photons from the source pass through the body and are attenuated before reaching the dosimeter on the chest. To assure that a single dosimeter provides a good estimate of worker dose, these few exposure situations cannot dominate a worker's exposure. On the other hand, the two-dosimeter approach (on the chest and back) predicts H(E) and E very well, hardly ever underestimating these quantities by more than 4% considering all worker positions and contamination situations in a steam generator channel head. This study shows that two dosimeters are adequate for an accurate estimation of H(E) and E in a steam generator channel head.
机译:在蒸汽发生器通道头中,经常看到辐射工作人员在身体表面佩戴多达十二个剂量计,以避免可能低估有效剂量当量(H(E))或有效剂量(E)。这项研究表明,只有一个或两个剂量计可以用来估计H(E)和E,而不会出现明显的低估。 MCNP和点核方法用于模拟蒸汽发生器通道头中的各种暴露情况。在某些暴露情况下,即当放射源的主要部分位于放射工作人员的背面时,发现单剂量计方法(在胸部)显着低估了H(E)和E。在这种情况下,来自光源的光子穿过人体,并在到达胸部剂量计之前被衰减。为了确保单个剂量计能够很好地估算出工人的剂量,这几种暴露情况无法控制工人的暴露。另一方面,双剂量计方法(在胸部和背部)可以很好地预测H(E)和E,考虑到蒸汽发生器通道头中的所有工人位置和污染情况,很难将这些量低估4%以上。这项研究表明,两个剂量计足以准确估计蒸汽发生器通道头中的H(E)和E。

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