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Physics study of liquid hydrogen moderator of CMRR reactor cold neutron source

机译:CMRR反应堆冷中子源液氢减速剂的物理研究

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The neutronic performance of a liquid hydrogen (LH) moderator is affected by its constituent ratio of para-hydrogen (pH) to ortho-hydrogen (oH) due to the difference of their scattering cross sections, as well as by the moderator geometric structure. Initially, the transmission and reflection properties of pure pH and oH slabs were analyzed. These indicated that the reflection method would generate a higher cold neutron flux (CNF) than the transmission method for both pH and oH, and that oH has a better reflection performance than pH. Secondly, the slab LH moderator located at the neutron channel entrance in the reactor was investigated under different conditions viz. pH percentage, slab thickness and neutron channel transparency. Results show that the slab thickness of the LH moderator in the range of 3-5 cm is appropriate for mixed pH and oH, that the optimum value of the pH proportion decreases with neutron channel transparency (optimum pH proportion for absorbent, translucent and transparency neutron channel walls are 100%, 75% and 50% respectively), and that the CNF with a transparent wall is 2-3 times higher than that with an absorbent wall. Bending the LH slab to various degrees showed that the CNF with an absorbent wall channel is determined primarily by the curvature of a concave moderator-viewed surface. However, the CNF for the transparent wall case is mainly determined by the viewed surface area due to a contribution of neutrons reflected from the heavy water. In the case of a 2 cm thick aluminum-alloy channel wall, we obtain an optimized geometry of a half-cylinder shape, balancing the area and curvature of the viewed surface. For 75% pH and 100% pH components, compared with the reference LH moderator configuration, the CNF of our optimized moderator increased by 41% and 20%, respectively.
机译:液态氢(LH)减速剂的中子性能受其散射截面的不同而影响的对氢(pH)与原氢(oH)的组成比以及减速剂的几何结构影响。最初,分析纯pH和oH平板的透射和反射特性。这些表明,对于pH和oH而言,反射法将比透射法产生更高的冷中子通量(CNF),并且oH具有比pH更好的反射性​​能。其次,研究了在不同条件下位于反应堆中子通道入口处的平板LH减速器。 pH值百分比,平板厚度和中子通道透明度。结果表明,LH调节剂的平板厚度在3-5 cm的范围内适合混合pH和oH,pH比例的最佳值随中子通道的透明度而降低(吸收剂,半透明和透明中子的最佳pH比例)通道壁分别为100%,75%和50%),而具有透明壁的CNF则比具有吸收壁的CNF高2-3倍。将LH平板弯曲到不同程度表明,带有吸收壁通道的CNF主要由凹形减速器观察到的表面的曲率决定。但是,由于从重水反射的中子的贡献,透明壁箱的CNF主要取决于所观察的表面积。在2厘米厚的铝合金通道壁的情况下,我们获得了半圆柱形状的优化几何形状,平衡了所观察表面的面积和曲率。与参考LH调节剂配置相比,对于75%pH和100%pH成分,我们优化的调节剂的CNF分别增加了41%和20%。

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