首页> 外文期刊>Fusion Science and Technology >HIGH-POWER SHORT-PULSE, MECHANICAL, AND THERMOHYDRAULIC TESTS OF THE WINDOW PROTOTYPE FOR REMOTE STEERING LAUNCHER
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HIGH-POWER SHORT-PULSE, MECHANICAL, AND THERMOHYDRAULIC TESTS OF THE WINDOW PROTOTYPE FOR REMOTE STEERING LAUNCHER

机译:远程转向发射器的窗口原型的高压短脉冲,机械和热液测试

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The millimeter-wave system of the remote steering launcher at the upper port level is composed of beam-lines that are rated for 2-MW continuous-wave operation at 170 GHz. In each beamline, a torus window is located between the entrance to the in-vessel square corrugated waveguide and the steerable mirrors in the launcher back end. In the reference design, the maximum steering angle of 12 deg imposes a 27-mm off-center beam shift to the window disk center, which in turn leads to asymmetrical heating of the window. This raises particular concerns of enhanced thermomechanical stresses in the window and in the metallic window cuffs. In order to qualify the optical, mechanical, and thermohydraulic design, high-rnpower short-pulse and thermohydraulic tests were performed using a prototype chemical vapor deposition diamond torus window developed and manufactured at Forschungszentrum Karlsruhe. It was proven that arcing did not occur even under maximum millimeter-wave power levels available (up to 0.53 MW) and that the millimeter-wave beam profile was fully maintained. A test facility allowed thermohydraulic studies of the window cooling system with parameters characteristic for component cooling water loops at ITER (p_w =1.0 MPa, T_w = 40℃).
机译:远程转向发射器的上端口级别的毫米波系统由额定在170 GHz下用于2 MW连续波操作的束线组成。在每条光束线上,圆环窗口位于船内方形波纹波导的入口与发射器后端的可操纵镜之间。在参考设计中,最大转向角为12度,使相对于窗玻璃中心的偏心光束偏移为27 mm,这又导致了窗玻璃的不对称加热。这引起了窗户和金属窗套中的热机械应力增大的特别关注。为了使光学,机械和热工液压设计合格,使用由Forschungszentrum Karlsruhe开发和制造的原型化学气相沉积金刚石圆环窗进行了大功率短脉冲和热工液压测试。事实证明,即使在最大毫米波功率水平(高达0.53 MW)下也不会发生电弧,并且毫米波光束轮廓得以完全保持。测试设备允许对窗口冷却系统进行热工水力研究,其参数为ITER(p_w = 1.0 MPa,T_w = 40℃)的组件冷却水回路的特征参数。

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