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Experimental and numerical investigation of 2 K heat exchanger for superfluid helium cryogenic systems at KEK

机译:kek中超氟氦低温系统2 k热交换器的实验和数值研究

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Superfluid helium cryogenic systems at KEK are constructed for research and development of cryomodules of the compact Energy Recovery Linac(cERL)and the International Linear Collider(1LC).The niobium superconducting radio frequency(SRF)cavities in cERL and ILC operate at temperatures of 2.0 K or below.The SRF cavities are cooled with saturated superfluid helium,which is another phase of the liquid helium(LHe),when it is cooled below 2.17 K under saturation condition.To produce superfluid helium continuously,a Joule-Thomson(JT)valve is employed in the cryogenic system.Also,a 2 K heat exchanger(2K HX)is introduced in series with the JT valve to recover the coldness from 2.0 K gaseous helium(GHe)evaporating from the helium tanks of the SRF cavities.This increases the production rate of superfluid helium by reducing the incoming LHe temperature from 4.4 K to 2.2 K or above before the JT valve.At KEK,we have a 2K HX consisting of a helical coil and laminated fins for thermal loads up to 100 W.Its performance needs to be determined and is characterized by a factor known as effectiveness,which is the ratio of actual heat transfer to the maximum possible heat transfer between the fluids.The performance of the 2K HX has been determined experimentally using the heat exchanger test stand and numerically by computational fluid dynamics(ANSYS CFX~R),respectively.In the heat exchanger test stand,the mass flow rate of incoming LHe is kept identical to the outgoing GHe through the 2K HX,using the level and pressure control of superfluid helium.An electric cartridge heater is immersed in the superfluid helium to vary the mass flow rate of evaporating superfluid helium.In the future,the optimization of the 2K HX design will be performed to improve its performance.
机译:Kek的Superfluid Helium氦低低温系统用于研究和开发紧凑型能量回收LINAC(CERL)和国际线性撞机(1LC)的冷冻组芯片。CERL和ILC中的铌超导射频(SRF)腔在2.0的温度下运行。 K或以下。用饱和的超氟氦冷却SRF腔,其是液氦(LHE)的另一相,当它在饱和条件下低于2.17k时冷却。连续生产超氟氦,joule-thomson(JT)阀门在低温系统中采用.SO,与JT阀串联引入2K热交换器(2K HX),以从SRF腔的氦气罐中蒸发的2.0K气态氦气(GHE)中的寒冷。通过将4.4k至2.2 k或更高的进入的LHE温度降低到JT阀之前,增加了超氟氦的生产率。kek,我们有一个2k HX,由螺旋线圈和用于热负荷的层压翅片组成,最高可达100 W。需要确定性能,其特征在于称为有效性的因素,这是实际传热与流体之间的最大可能传热的比率。2K HX的性能已经通过热交换器实验确定通过计算流体动力学(ANSYS CFX〜R)进行测试架和数值。在热交换器测试台中,使用电平和压力控制Superfluid Helium.An电盒加热器浸入超流氦气中,以改变蒸发超流氦的质量流量。将来,将进行2K HX设计的优化以提高其性能。

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