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| 1 | Study on a 5.0 W/80 K single stage Stirling type pulse tube cryocooler显示文摘A single stage Stirling pulse tube cryocooler was designed based on REGEN 3.2 and fabricated for testing. The experimental results show that the cooler can provide a cooling capacity of 5.0 W at 79.1 K, and produce a no-load temperature of 57.0 K, operating with an average pressure of 2.50 MPa and a frequency of 60 Hz, performance results that are very close to the calculated values. The cryocooler can be cooled from room temperature to 80 K in 8.5 min. The fast cooldown time is a result of the small regenerator. | Zhi-hua GAN Guo-jun LIU Ying-zhe WO Qiang CAO Li-min QIU Guo-bang CHEN J.M. PFOTENHAUER | 2008 | Journal of Zhejiang University-Science A(Applied Physics & Engineering)2008,9,9: | 5 |
| 2 | 氮工质低温脉动热管的数值模拟显示文摘低温制冷机被广泛应用于超导体冷却、低温医疗、低温液体贮存等方面,但受到只能在冷头处提供冷量的限制。脉动热管作为一种灵活高效的传热元件,可以与低温制冷机配合以实现分布式冷却和长距离冷量传送。低温工质在物性上与常温工质有很大不同,这使得以氮、氢为代表工质的低温脉动热管的传热和振荡特性有别于以水、乙醇为代表工质的常温脉动热管。针对脉动热管中的长液塞典型流动现象,建立了多气泡-液塞的闭式脉动热管模型,给出了以氮为工质时装置的振荡和传热特性,结果显示氮工质的低温脉动热管与水的脉动热管相比,其内部的长液塞具有更高的振荡频率,且具有更小的传热温差。 | 韩东阳 孙潇 甘智华 焦波 Pfotenhauer J M | 2017 | 低温与超导2017,45,7: | 3 |
| 3 | 液氢温区脉动热管实验研究显示文摘为了研究脉动热管用于冷却Mg B——2超导磁体的可行性,对一台自行研制的液氢温区脉动热管实验台开展了实验研究工作。充液率为34.2%时,随着加热功率的增大,脉动热管经历了启动、脉动、极限3个阶段,启动阶段中脉动热管传热温差波动很大,传热性能差,而脉动阶段中脉动热管传热温差很小,传热性能好。脉动热管在加热功率为1.28 W时具有最高的有效热导率为19 k W/m·K,此时蒸发段与冷凝段温差为0.28 K。 | 邓皓仁 孙潇 韩东阳 刘雨梦 焦波 Pfotenhauer J M 甘智华 | 2016 | 低温工程2016,,1: | 2 |
| 4 | Laser-plasma acceleration of quasi-monoenergetic protons from microstructured targets显示文摘 | Schwoerer H Pfotenhauer S Jackel O | 2006 | Nature2006,439,26: | 1 |
| 5 | Study on a 5.0 W/80 K single stage Stirling type pulse tube cryocooler显示文摘 | Zhi-hua Gan Guo-jun Liu Ying-zhe Wu Qiang Cao Li-min Qiu Guo-bang Chen J. M. Pfotenhauer | 2008 | Journal of Zhejiang University SCIENCE A2008,,9: | 1 |
| 6 | Laser-plasma acceleration quasi-monoenergetic protons from microstructured targets 显示文摘 | Schwoerer H Pfotenhauer S | 2006 | Nature2006,439,: | 1 |
| 7 | 不同冷凝段温度下液氢脉动热管实验研究显示文摘脉动热管是一种高效的传热元件,可用于将低温制冷机冷头的有限冷量分配到更大的面积、传输到更远的距离。本文采用一台两级GM制冷机作为氢工质脉动热管的冷源,测试脉动热管在不同冷凝段温度下的传热性能,实验中充液率为28%@19K。不控制冷凝段温度(实验A)和将冷凝段温度控制在19 K(实验B)的实验结果表明实验A中的脉动热管在每个热负荷下都有更小的温差和更大的有效热导率。固定热负荷,控制冷凝段温度从16.5 K逐步增加到24 K(实验C),结果表明在此充液率和热负荷下,有效热导率随着冷凝段温度的升高而近似线性增加。在本研究的三组实验工况下,氢脉动热管正常运行范围内,冷凝段温度越高,有效热导率越高。 | 李思卓 孙潇 刘东立 John Pfotenhauer 甘智华 王博 赵钦宇 仇旻 | 2022 | 工程热物理学报2022,43,11: | 1 |
| 8 | Laser-plasma acceleration of quasi-monoenergetic protons from microstructured targets显示文摘 | Schwoerer H Pfotenhauer S Jackel O | 2006 | Nature2006,439,7075: | 1 |
| 9 | Laser-plasma acceleration of quasi-monoenergetie protons from microstructured targets 显示文摘 | Schwoerer H Pfotenhauer S J ckel O | 2006 | Nature2006,439,: | 1 |
| 10 | Laser-plasma acceleration of quasi-monoenergetic protons from microstructured targets显示文摘 | Schwoerer H Pfotenhauer S Jackel O | 2006 | Nature2006,439,26: | 1 |
| 11 | Study on a 5.0 W/80 K single stage Stirling type pulse tube cryocooler显示文摘 | Zhi-hua Gan Guo-jun Liu Ying-zhe Wu Qiang Cao Li-min Qiu Guo-bang Chen J. M. Pfotenhauer | 2008 | Journal of Zhejiang University SCIENCE A2008,,9: | 1 |
| 12 | Quench detection of multiple magnet system显示文摘 | Mohamed A Hilal George VCscey John M Pfotenhauer | 1994 | IEEE Transactions on Applied Superconductivity1994,4,3: | 1 |
| 13 | Optimization of the intercept temperature for high temperature superconducting current lead 显示文摘 | Yang S and Pfotenhauer J M | 1996 | Advances in Cryogenic Engineering1996,41,: | 1 |
| 14 | Laser-plasma acceleration of quasi-monoenergetic protons from microstructured targets显示文摘 | Schwoeror H Pfotenhauer S Jackel O | 2006 | Nature2006,439,7075: | 1 |
| 15 | Laserplasma acceleration of quasi-monoenergetic protons from microstructured targets显示文摘 | SCHWOERER H PFOTENHAUER S | 2006 | Nature2006,439,: | 1 |
| 16 | Laser-plasma acceleration of quasi-monoenergetic protons from microstructured targets显示文摘 | Schwoerer H Pfotenhauer S Jckel O | 2006 | Nature2006,439,26: | 1 |
| 17 | Voltage Detection and Magnet Protection显示文摘 | M Pfotenhauer F Kessler and M A Hilal | 1993 | IEEE Trans Appl Supercon1993,3,1: | 1 |
| 18 | Laser-plasma acceleration of quasi-monoenergetie protons from microstructured targets显示文摘 | Sehwoerer H Pfotenhauer S Jckel O | 2006 | Nature2006,439,26: | 1 |
| 19 | Laser plasma acceleration of quasi monoenergetic protons from microstructured targets显示文摘 | Schwoerer H Pfotenhauer S Jackel O | 2006 | Nature2006,439,7075: | 1 |
| 20 | Laser-plasma acceleration of quasi-monoenergetic protons from microstructurcd targets显示文摘 | Schwoerer H Pfotenhauer S J (a) ckel O | | 0,,26: | 1 |