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OPERATING EXPERIENCE WITH MESON PRODUCTION TARGETS AT TRIUMF

机译:在Triumf的Meson Production Targets经验经验

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High power targets are required for operation at beam powers in excess of 1 MW for spallation neutron sources and neutrino factories. TRIUMF has been operating beryllium and graphite meson production targets for many years. Although the proton beam power of 100 kW at 500 MeV is lower, the beam densities and fluences are higher than most operating solid targets. Other high power accelerators have used rotating targets or larger beam spots. The beam size on the TRIUMF targets is maintained at ~0.15 cm{sup}2 and this beam density leads to proton fluences of 10{sup}23 protons/cm{sup}2 per year. The beryllium targets are rectangular rods immersed in a water-cooled stainless steel jacket. The graphite targets consist of pie-shaped segments bonded to a water-cooled copper saddle. Operating experience shows that the graphite targets suffer thermal damage above beam currents of 120 μA but operate for long periods at 100 μA. The beryllium targets can operate to 200 μA and appear to survive radiation damage beyond 10 dpa. This paper will describe the operating experience with these targets and present some thermal and radiation calculations.
机译:对于散介中子源和中微子工厂,梁功率的操作需要高功率目标是在过量的1兆瓦的情况下进行操作。多年来,Triumf一直在运营铍和石墨的梅森生产目标。虽然500 meV的100kW的质子射线功率较低,但光束密度和流量高于大多数操作的固体靶标。其他高功率促进剂使用旋转目标或更大的光束斑点。 Triumf目标上的光束尺寸保持在〜0.15cm {sup} 2,并且该光束密度导致每年10 {sup} 23质子/ cm {sup} 2的质子流量。铍靶是嵌入水冷不锈钢夹套中的矩形棒。石墨靶由粘合到水冷铜鞍座的饼形段组成。操作经验表明,石墨靶突出了高于120μA的光束电流的热损伤,但在100μA的长时间工作。铍靶靶标可以运行到200μA,似乎以10dPa的辐射损伤存活。本文将描述与这些目标的操作经验,并呈现一些热和辐射计算。

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