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SINQ layout, operation, applications and R&D to high power

机译:SINQ的布局,运营,应用和研发向大功率发展

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Since 1997, the Paul Scherrer Institut (PSI) is operating a 1 MW class research spallation neutron source, named SINQ. SINQ is driven by a cascade of three accelerators, the final stage being a 590 MeV isochronous ring cyclotron which delivers a beam current of 1.8 mA at an rffrequency of 51 MHz. Since for neutron production this is essentially a dc-device, SINQ is a continuous neutron source and is optimized in its design for high time average neutron flux. This makes the facility similar to a research reactor in terms of utilization, but, in terms of beam power, it is, by a large margin, the most powerful spallation neutron source currently in operation world wide. As a consequence, target load levels prevail in SINQ which are beyond the realm of existing experience, demanding a careful approach to the design and operation of a high power target. While the best neutronic performance of the source is expected for a liquid lead-bismuth eutectic target, no experience with such systems exists. For this reason a staged approach has been embarked upon, starting with a heavy water cooled rod target of Zircaloy-2 and proceeding via steel clad lead rods towards the final goal of a target optimised in both, neutronic performance and service life time. Experience currently accruing with a test target containing sample rods with different materials specimens will help to select the proper structural material and make dependable life time estimates accounting for the real operating conditions that prevail in the facility. In parallel, both theoretical and experimental work is going on within the MEGAPIE (MEGAwatt Pilot Experiment) project, a joint initiative by six European research institutions and JAERI (Japan), DOE (USA) and KAERI (Korea), to design, build, operate and explore a liquid lead-bismuth spallation target for 1MW of beam power, taking advantage of the existing spallation neutron facility SINQ.
机译:自1997年以来,Paul Scherrer Institut(PSI)一直在运行一个名为SINQ的1 MW级研究散裂中子源。 SINQ由三个加速器的级联驱动,最后一个是590 MeV同步环形回旋加速器,它以51 MHz的射频频率提供1.8 mA的束流。因为对于中子生产来说,这实际上是一个直流设备,所以SINQ是连续的中子源,并且在设计上针对高时间平均中子通量进行了优化。就利用率而言,这使该设施类似于研究堆,但就射束功率而言,在很大程度上,它是目前世界范围内运行的最强大的散裂中子源。结果,目标负载水平在SINQ中占了上风,这超出了现有经验的范围,要求对高功率目标的设计和操作采取谨慎的方法。对于液态铅-铋共晶靶材,有望获得最佳的中子性能,但尚无此类系统的经验。因此,已经采取了分阶段的方法,从Zircaloy-2的重水冷却棒靶开始,然后通过包钢铅棒朝着在中子性能和使用寿命方面均达到最佳的靶的最终目标前进。当前在包含不同材料样品棒的测试目标上获得的经验将有助于选择合适的结构材料,并根据设备的实际运行条件做出可靠的使用寿命估算。同时,由六个欧洲研究机构与JAERI(日本),DOE(美国)和KAERI(韩国)联合发起的MEGAPIE(MEGAwatt试点实验)项目正在进行理论和实验工作,以设计,建造,利用现有的散裂中子设施SINQ,运行和探索1MW束功率的液态铅-铋散裂目标。

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