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Transverse heat transfer coefficients on a full size dual channel CICC ITER conductor

机译:全尺寸双通道CICC ITER导体上的横向传热系数

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Dual channel Cable-In-Conduit Conductors (CICC) provide low hydraulic resistance and faster central channel circulation, limiting superconductors temperature rise. The Poloidal Field Insert Sample (PFIS) was tested in the SULTAN facility to evaluate the thermal coupling between the CICC channels upon an experimental heat transfer coefficient assessment. Simple assumptions on the flow - homogeneous central and annular temperatures, no jacket conduction, no steel inertia and diffusivity - lead to a one-dimensional thermal model fully solved in its transient response to a Heavyside temperature evolution at the inlet, using a Laplace transformation. Transient temperature step data fitted with the analytical resolution provide heat transfer coefficients as a function of mass flow rate, compared to crude predictions. The transient measurements provided consistent measurements on the full range of mass flow rate in both vertical flow directions, whereas steady state homogenization characteristic length measures pursuing the same goal suffer from annular isothermal assumption. Recommendations are made for the thermohydraulic instrumentation of future conductor samples.
机译:双通道导管内导体(CICC)具有较低的水力阻力和较快的中央通道循环,从而限制了超导体的温度上升。在SULTAN设施中测试了极场插入物样品(PFIS),以通过实验传热系数评估来评估CICC通道之间的热耦合。对流动的简单假设-均匀的中心和环形温度,无夹套传导,无钢惯性和扩散率-使用Laplace变换可以完全解决一维热模型,该模型可以对进口处沉侧温度的瞬态响应进行瞬态响应。与粗略的预测相比,具有分析分辨率的瞬态温度阶跃数据提供了传热系数与质量流量的关系。瞬态测量在两个垂直流向的整个质量流率范围内提供了一致的测量结果,而追求相同目标的稳态均质化特征长度测量则受到环形等温假设的困扰。针对将来的导体样品的热工仪表提出了建议。

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