首页> 外文期刊>Fusion Science and Technology >ENGINEERING DESIGN OF CONTACT-TYPE LIQUID LEVEL SENSOR FOR MEASURING THICKNESS VARIATION OF LIQUID LITHIUM JET IN IFMIF/EVEDA LITHIUM TEST LOOP
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ENGINEERING DESIGN OF CONTACT-TYPE LIQUID LEVEL SENSOR FOR MEASURING THICKNESS VARIATION OF LIQUID LITHIUM JET IN IFMIF/EVEDA LITHIUM TEST LOOP

机译:测量IFMIF / EVEDA锂测试环中液态锂射流厚度变化的接触式液位传感器的工程设计

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In the Engineering Validation and Engineering Design Activities (EVEDA) on the International Fusion Materials Irradiation Facility (IFMIF), hydraulic stability of a liquid Li jet simulating the IFMIF Li target is planned to be validated in the EVEDA Li Test Loop (ELTL). This paper presents the engineering design of a contact-type liquid level sensor for use in ELTL. The sensor is going to be utilized to measure variation of jet thickness in the validation test on hydraulic stability of the Li jet, which is one of the major key tests to be performed in ELTL. A fundamental requirement for the engineering specification of the sensor is to ensure the position accuracy of the measurement probe against the pressure load of approximately 0.1 MPa between the inside and the outside of the test chamber. The calculation result on structural strength of the sensor with a Nastran code showed that the maximum displacement was 0.65 mm and that the sensor has adequate strength against the pressure load. The calculation result on the sensor temperature with an ABAQUS code showed that the probe tip's temperature can be heated up to approximately the operation temperature with no heaters installed on the sensor.
机译:在国际聚变材料辐照设施(IFMIF)的工程验证和工程设计活动(EVEDA)中,计划在EVEDA Li测试环(ELTL)中对模拟IFMIF Li目标的液锂射流的水力稳定性进行验证。本文介绍了ELTL中使用的接触式液位传感器的工程设计。该传感器将在Li射流的水力稳定性验证测试中用于测量射流厚度的变化,这是ELTL中要进行的主要关键测试之一。传感器工程规范的基本要求是确保测量探头在测试腔室内外之间承受约0.1 MPa压力负载时的位置精度。使用Nastran代码对传感器的结构强度进行的计算结果表明,最大位移为0.65 mm,并且该传感器具有足够的强度承受压力载荷。使用ABAQUS代码对传感器温度进行计算的结果表明,在传感器上未安装加热器的情况下,探头尖端的温度可以加热到大约工作温度。

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