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Experimental Study of Pellet Delivery to the ITER Inner Wall through a Curved Guide Tube at Steady-State Pressure

机译:稳态压力下通过弯曲导管将颗粒输送到ITER内壁的实验研究

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Injection of solid hydrogen pellets from the magnetic high-field side will be the primary technique for depositing fuel particles into the core of International Thermonuclear Experimental Reactor (ITER) burning plasmas. This injection scheme will require the use of a curved guide tube to route the pellets from the acceleration device, under the divertor, and to the inside wall launch location. In an initial series of pellet tests in support of ITER, single 5.3-mm-diam cylindrical D2 pellets were shot through a mock-up of the planned ITER curved guide tube. Those data showed that the pellet speed had to be limited to ap300 m/s for reliable delivery of intact pellets. Also, microwave cavity mass detectors located upstream and downstream of the test tube indicated that ap10% of the pellet mass was lost in the guide tube at 300 m/s. The tube base pressure for that test series was ap10-4 torr. However, for steady-state pellet fueling on ITER, the guide tube will operate at an elevated pressure due to the pellet erosion in the tube. Assuming the present design values for ITER pellet fueling rates/vacuum pumping and a 10% pellet mass loss during flight in the tube, calculations suggest a steady-state operating pressure in the range of 10-20 torr. Thus, experiments to ascertain the pellet integrity and mass loss under these conditions have been carried out. Also, some limited test data were collected at a tube pressure of ap100 torr. No significant detrimental effects have been observed at the higher tube pressures. The new test results are presented and compared to the baseline data previously reported
机译:从磁场高磁场侧注入固体氢颗粒将是将燃料颗粒沉积到国际热核实验反应堆(ITER)燃烧等离子体核心中的主要技术。这种注射方案将需要使用弯曲的导管,以将药丸从加速装置分流器下方传送到内壁发射位置。在支持ITER的最初一系列颗粒试验中,通过计划中的ITER弯曲导管的模型射击了单个5.3毫米直径的圆柱形D 2 颗粒。这些数据表明,为了可靠地输送完整的药丸,药丸速度必须限制在ap300 m / s。同样,位于试管上游和下游的微波腔质量检测器表明,ap10%的颗粒质量以300 m / s的速度在导管中损失。该测试系列的管基压力为ap10 -4 torr。但是,对于在ITER上为稳态颗粒供油的情况,由于颗粒在管道中的侵蚀,导管将在高压下运行。假设当前的ITER颗粒加油速率/真空泵设计值以及在管内飞行过程中颗粒质量损失为10%,计算表明稳态工作压力为10-20托。因此,已经进行了确定在这些条件下的丸粒完整性和质量损失的实验。另外,在ap100托的管压下收集了一些有限的测试数据。在较高的管压力下未观察到明显的有害影响。呈现新的测试结果,并将其与先前报告的基准数据进行比较

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