Optics and Precision Engineering, Volume. 24, Issue 7, 1640(2016)

Structure design and optimization of high heat load absorbers in SSRF front-end

LI Yong-jun1...2,*, ZHANG Min1, XUE Song1, JIA Dan-dan1 and JIN Li-min1 |Show fewer author(s)
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  • 1[in Chinese]
  • 2[in Chinese]
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    References(17)

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    [11] [11] XU ZH M, FENG X K, WANG N X, et al.. Thermal analysis of the first canted-undulator front-end components at SSRF [J]. Nuclear Instruments and Methods in Physics Research A, 2015, 774: 94-102.

    [12] [12] North American Hoganas High Alloys LLC. GlidCop technical book [OL]. http: //www.hoganas.com/NAH.

    [13] [13] GNIELINSKI V. New equations for heat and mass transfer in turbulent pipe and channel flow [J]. International Chemical Engineering, 1976, 16(2): 359-368.

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    [15] [15] KUAN C K, SHENG I C, LIN H Y, et al.. Heat-transfer analysis of a water-cooled channel for the TPS front-end components [C]. Proceedings of the Fourth International Particle Accelerator Conference, Shanghai, P.R. China: IPAC, 2013: 3466-3468.

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    [17] [17] WANG N X, LIU SH L, XU ZH M, et al.. Comparison of photon shutter temperature measured in the front end of insertion devices at SSRF with the FEA simulation results [J]. Nuclear Techniques, 2011, 34(3): 165-168.(in Chinese)

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    LI Yong-jun, ZHANG Min, XUE Song, JIA Dan-dan, JIN Li-min. Structure design and optimization of high heat load absorbers in SSRF front-end[J]. Optics and Precision Engineering, 2016, 24(7): 1640

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    Paper Information

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    Received: Jan. 18, 2016

    Accepted: --

    Published Online: Aug. 29, 2016

    The Author Email: LI Yong-jun (liyongjun@sinap.ac.cn)

    DOI:10.3788/ope.20162407.1640

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