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Multi-solid multi-channel Mithrandir (M~3) code for thermal-hydraulic modelling of ITER Cable-in-Conduit Superconductors

机译:多固体多通道密特兰(M〜3)代码,用于ITER导管内超导体的热工液压建模

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摘要

We present a new multi-solid multi-channel (M~3) thermal-hydraulic model for the analysis of the International Thermonuclear Experimental Reactor (ITER) Cable-In-Conduit Conductors (CICC). The model discretizes the cross section of an ITER CICC into M current carrying cable elements (e.g., the six last-but-one cabling stages—the petals), coupled with N hydraulic channels (e.g., the six petals + the central channel) and K non-current carrying solid components (e.g., the jacket of the CICC), with M, N and K arbitrary integers. Along each of the M + K solid components a ID transient heat conduction equation is solved, whereas along each of the N channels three Euler-like ID equations, derived from the conservation laws for compressible He flow, are solved. The resulting quasi 3D model, in which ID equations are coupled by heat and mass transfer between the different CICC components, is implemented in the M~3 code and validated against experimental results from the ITER Good Joint sample and the ITER Poloidal Field Conductor Insert Full Size Joint Sample. The new code is able to reproduce with good accuracy the measured temperature gradients on the CICC cross section, provided sufficiently accurate input data are available.
机译:我们提出了一种新的多固体多通道(M〜3)热工液压模型,用于分析国际热核实验反应堆(ITER)导管内导体(CICC)。该模型将ITER CICC的横截面离散为M个载流电缆元件(例如,六个最后但最后一个布线阶段-花瓣),N个液压通道(例如六个花瓣+中央通道)和K个非载流固体成分(例如,CICC的护套),具有M,N和K个任意整数。沿着每个M + K固体组分,求解一个ID瞬态热传导方程,而沿着每个N通道,求解三个从可压缩He流量的守恒定律导出的类似Euler的ID方程。生成的准3D模型(其中ID方程通过不同CICC组件之间的传热和传质耦合)在M〜3代码中实现,并针对ITER良好接头样品和ITER极场导体插入物的实验结果进行了验证大小联合样品。只要有足够准确的输入数据,新代码就能在CICC横截面上以高精确度再现所测得的温度梯度。

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