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MHD pressure drop measurement of PbLi flow in double-bended pipe

机译:双弯管中PbLi流量的MHD压降测量

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The design of liquid metal cooling system for the liquid blanket concepts in magnetic fusion reactor requires the magnetohydrodynamics (MHD) friction loss coefficients for various pipes including pipes and bents to estimate the pressure drop of the whole blanket. The aim of this study is to reveal the MHD pressure drop of PbLi flow in a double-bended pipe. The experiments were conducted in the Oroshhi-2 loop having a super conducting magnet of 3T at NIFS in Japan. In this paper, the MHD pressure drops of the pipe under the magnetic field of 0.5T–3.0T, the ranges of Reynolds number (Re) of 2000–200,000 and Hartmann number (Ha) of 106–640 at the upstream, double-bended and downstream regions were measured. As the results, all the MHD friction loss coefficients in three regions were well correlated with the interaction parameter (Na = Ha2/Re) in the range of 0.1 < N < 100. Finally, the correlation equations of MHD friction loss coefficient against the interaction parameters at the upstream, double-bended and downstream regions of the pipe were obtained. Moreover, it was briefly discussed on the implementation to the liquid metal cooling system design for fusion reactor.
机译:磁聚变反应堆中用于液态毯概念的液态金属冷却系统的设计要求包括管道和弯头在内的各种管道的磁流体动力学(MHD)摩擦损耗系数,以估计整个毯的压降。本研究的目的是揭示双弯管中PbLi流动的MHD压降。实验在日本NIFS的Oroshhi-2回路中进行,该回路具有3T的超导磁体。在本文中,在磁场为0.5T–3.0T,上游的雷诺数(Re)为2000–200,000和Hartmann数(Ha)为106–640的情况下,管道的MHD压降为两倍,测量弯曲区域和下游区域。结果,在0.1 all

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