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Microwave heating device for internal heating convection experiments, applied to Earth's mantle dynamics

机译:用于内部热对流实验的微波加热装置,应用于地球的地幔动力学

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摘要

We report the design, construction, and performances of a microwave (MW) heating device for laboratory experiments with non-contact, homogeneous internal heating. The device generates MW radiation at 2.47 GHz from a commercial magnetron supplied by a pulsed current inverter using proprietary, feedback based command and control hardware and software. Specially designed MW launchers direct the MW radiation into the sample through a MW homogenizer, devised to even the MW power distribution into the sample's volume. An adjustable MW circuit adapts the MW generator to the load (i.e., the sample) placed in the experiment chamber. Dedicated heatsinks maintain the MW circuits at constant temperature throughout the experiment. Openings for laser scanning for image acquisition with a CCD camera and for the cooling circuits are protected by special MW filters. The performances of the device are analyzed in terms of heating uniformity, long term output power stability, and load matching. The device is used for small scale experiments simulating Earth's mantle convection. The 30 × 30 × 5 cm convection tank is filled with a water‑based viscous fluid. A uniform and constant temperature is maintained at the upper boundary by an aluminum heat exchanger and adiabatic conditions apply at the tank base. We characterize the geometry of the convective regime as well as its bulk thermal evolution by measuring the velocity field by Particle Image Velocimetry and the temperature field by using Thermochromic Liquid Crystals.
机译:我们报告了用于非接触均匀内部加热的实验室实验的微波(MW)加热设备的设计,构造和性能。该设备使用基于反馈的专有命令和控制硬件和软件,从由脉冲电流逆变器提供的商用磁控管产生2.47 GHz的MW辐射。经过特殊设计的MW发射器通过MW均质器将MW辐射引导到样品中,该均化器旨在将MW功率分布均匀地分布到样品的体积中。可调节的MW回路使MW发生器适应置于实验室内的负载(即样品)。在整个实验过程中,专用散热器将MW电路保持在恒定温度下。专用MW滤镜保护用于CCD相机进行图像采集的激光扫描开口以及冷却回路的开口。根据加热均匀性,长期输出功率稳定性和负载匹配对设备的性能进行了分析。该设备用于模拟地球地幔对流的小规模实验。 30×30×5 cm对流罐中装有水基粘性流体。铝制热交换器在上边界处保持均匀且恒定的温度,并且在罐体底部施加了绝热条件。我们通过使用粒子图像测速仪测量速度场和使用热致变色液晶测量温度场来表征对流形式的几何形状及其整体热演化。

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