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DEVELOPMENT OF A DIAGNOSTIC TWIN SCREW EXTRUDER TO CHARACTERIZE FUEL PRODUCTION FOR TOKAMAKS

机译:诊断双螺旋螺杆挤出机以表征托卡马克燃料生产

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摘要

Twin screw extrusion is anticipated to meet the pellet fueling demands of tokamak fusion devices. The twin-screw design principle has been proven by a functional prototype extruder at Oak Ridge National Laboratory (ORNL); however numerical models necessary for design optimization have yet to be validated due to system complexity. Characteristic measurements of solid flow during extrusion are difficult for any extruder and are exacerbated by the cryogenic environment necessary to solidify solid hydrogen. In this paper, we first discuss current modeling efforts to establish needs for experimental measurements and then present the design and construction status of a diagnostic twin-screw extruder to address these needs. Development is underway of a mass transfer analysis that predicts volumetric efficiency and augments an existing 1st order model of extrudate temperature. These predictive models are necessary for design and operation of hydrogenic twin screw extruders for fueling tokamaks, including ITER.
机译:预计双螺杆挤出将满足托卡马克聚变设备对颗粒燃料的需求。双螺杆设计原理已经在橡树岭国家实验室(ORNL)的功能性原型挤出机中得到证明;然而,由于系统复杂性,设计优化所需的数值模型尚未得到验证。对于任何挤出机来说,挤出过程中固体流动的特性测量都是困难的,并且由于固化固体氢所必需的低温环境而加剧。在本文中,我们首先讨论当前的建模工作,以建立对实验测量的需求,然后介绍诊断双螺杆挤出机的设计和构造状态,以解决这些需求。传质分析的开发正在进行,该分析可预测体积效率并增强现有的挤出温度的一阶模型。这些预测模型对于设计加氢双螺杆挤出机(包括ITER)为托卡马克提供燃料所必需。

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  • 来源
    《Fusion Science and Technology》 |2013年第3期|525-529|共5页
  • 作者

    J. T. Fisher; J. W. Leachman;

  • 作者单位

    School of Mechanical and Materials Engineering, Washington State University, 405 NE Spokane Street, Pullman, Washington 99164-2920;

    School of Mechanical and Materials Engineering, Washington State University, 405 NE Spokane Street, Pullman, Washington 99164-2920;

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