Nov. 23 , 9:00 - 10:30
Room C

Heat Transfer

Chairman: KAMIOKA, Yasuharu and FUCHINO, Shuichiro


    C1-01
  1. Fundamental research about long-distance cooling by slush nitrogen
    IKEUCHI,Masamitsu et al. ( Mayekawa Mfg. Co., Ltd. ), MYK01025@nifty.ne.jp
  2. C1-02 Submitted to Japan-Korea Joint Workshop 2001

  3. Study of Thermal and Cooling Load for Thermal Shield Design
    KIM,Dong-Lak et al. ( Korea Basic Science Institute ), dlkim@comp.kbsi.re.kr
  4. C1-03

  5. Study on the improvement of thermal stability of HTSC tape impregnated with solid nitrogen
    NAKAMURA,Taketsune et al. ( Kyoto University ), tk_naka@kuee.kyoto-u.ac.jp
  6. C1-04

  7. Study on the dry-out energy of HTSC tape impregnated with solid nitrogen
    OKUDE,Ken'ichi et al. ( Kyoto University ), tk_naka@kuee.kyoto-u.ac.jp
  8. C1-05

  9. Study on LXe system for particle detector(7)-Xe recondensing operation by pulse tube refrigerator-
    HARUYAMA,Tomiyoshi et al. ( High Energy Accelerator Research Organization ), tomiyoshi.haruyama@kek.jp
  10. C1-06

  11. The real time simulation of He Bryton Cycle
    ooba,kouki et al. ( National Institute for Fusion Science ), ooba@nifs.ac.jp

Nov. 23 , 10:45 - 12:35
Room C
ADR

Chairman: MURAKAMI, Masahide and NUMAZAWA, Takenori


    C1-07
  1. Advanced ADR System for Continuous Cooling from 10 K to 50 mK
    Shirron,Peter et al. ( Goddard Space Flight Center, NASA ), konta@www.csj.or.jp
  2. C1-08

  3. X-ray detectors at cryogenic temperature and their applications to X-ray astronomy
    MITSUDA,Kazuhisa et al. ( ISAS ), mitsuda@astro.isas.ac.jp
  4. C1-09

  5. Development of high resolution x-ray detectors with Iridium superconductive transition edge sensors
    FUKUDA,Daiji et al. ( Faculty of Engineering, The University of Tokyo ), fukuda@sophie.q.t.u-tokyo.ac.jp
  6. C1-10

  7. Spatial response analysis on superconducting x-ray detectors by Low Temperature Scanning Synchrotron Microscope
    Pressler,Harald et al. ( Photonics Research Institute, National Institute of Advanced Industrial Science and Technology ), m.ohkubo@aist.go.jp
  8. C1-11

  9. Thermal and magnetic propaty of Gd garnet for ADR
    MATSUZAKI,Ayumi et al. ( Faculty of Science, Kanazawa University ), amatsu@nihonkai.kanazawa-u.ac.jp
  10. C1-12

  11. Magnetic Materials for Hydrogen Liquefaction
    NAKAYAMA,Akihiro et al. ( Kawasaki Heavy Industries ), nakayama_a@khi.co.jp

Nov. 23 , 15:00 - 16:00
Room C
Superconducting Device

Chairman: KAWABE, Ushio and Kosaka, Shin


    C1-13
  1. Growth and characterization of Bi2223 whiskers
    NAGAO,Masanori et al. ( Kitami Institute of Technology ), mms01015/mms01@king.cc.kitami-it.ac.jp
  2. C1-14

  3. Surface Resistance Measurement of Bi-Sr-Ca-Cu-O Whisker by Probe-Coupling Type Microstrip Resonator Method
    OKAI,Daisuke et al. ( Himeji Institute of Technology, Faculty of Engineering ), okai@mse.eng.himeji-tech.ac.jp
  4. C1-15

  5. RF properties of 2GHz band MSL resonators with YBCO films
    Akasegawa, Akihiko et al. ( FUJITSU LABORATORIES LTD. ), akasegaw@flab.fujitsu.co.jp
  6. C1-16

  7. Fabrication of Ba(Sn,Mg,Ta)O3 Coaxial Resonator using Bi2223 Thick Films as Superconducting Electrodes
    KINTAKA,Yuji et al. ( Murata Manufacturing Co. Ltd. ), kintaka@murata.co.jp

Nov. 23 , 16:15 - 17:30
Room C
Cryogenics in Helium Liquefaction Center

Chairman: IKEDA, Hiroshi and Odashima, Yutaka


    C1-17
  1. Handling technology of the cryogenic devices in the South Pole: Part 1
    NOGUCHI,Takashi et al. ( Ikegami Technology ), HFH02354@nifty.ne.jp
  2. C1-18

  3. Network monitoring system of operation data of the refrigerator for the large magnet
    NAGAI, Hideo et al. ( National Institute for Materials Science ), nagai.hideo@nims.go.jp
  4. C1-19

  5. Construction of event data base for the operation of the refrigerator
    DANTSUKA, Tomoyuki et al. ( Hitachi Techno Service Co.,Ltd. ), dantsuka.tomoyuki@nims.go.jp
  6. C1-20

  7. Data base managing system for the 40 T hybrid magnet
    ARAKAWA,Takayuki et al. ( Toshiba Corporation ), arakawa.takayuki@nims.go.jp
  8. C1-21

  9. Construction of 24 h-monitoring system for the controller of the large magnet
    YUYAMA, Michinari et al. ( National Institute for Materials Science ), mic@www.csj.or.jp

Nov. 24 , 9:00 - 10:30
Room C
Superfluid helium (I)

Chairman: FUKUDA, Kenji and HAMAGUCHI, Shinji


    C2-01
  1. Thermoacoustic effect and heat transport in saturated HeII-II
    Hideyuki,Yoshida et al. ( College of Science and Technology Nihon University,Institute of Physics ), hideyuki1227@hotmail.com
  2. C2-02

  3. Thermoacoustic effect and heat transport in pressurized He II -II
    SUGANUMA,Yoichi et al. ( College of Science and Technology ), numa_41@hotmail.com
  4. C2-03

  5. Improvement on Cooling Performance in He II Channel Using Fountain Effect
    TAKAHASHI,Masato et al. ( Tokyo Institute of Technology ), masato@es.titech.ac.jp
  6. C2-04

  7. HEAT TRANSFER FROM A FLAT PLATE01.11.1 LOCATED AT THE MIDDLE OF A CHANNEL FILLED WITH PRESSURIZED HE II
    SHIOTSU,Masahiro et al. ( Kyoto University ), tatumoto@pe.energy.kyoto-u.ac.jp
  8. C2-05

  9. NUMERICAL ANALYSIS FOR TWO-DIMENSIONAL HEAT TRANSFER FROM A FLAT PLATE LOCATED AT THE MIDDLE OF A CHANNEL FILLED WITH PRESSURIZED HE II
    TATSUMOTO,hideki et al. ( Kyoto University ), tatumoto@pe.energy.kyoto-u.ac.jp
  10. C2-06

  11. Two-dimensional numerical analysis of HeII heat transfer in vertical channel
    SENZAKI,Ayae et al. ( Department of Energy Sciences Tokyo Institute of Technology ), ayae@mhd.es.titech.ac.jp

Nov. 24 , 10:45 - 12:00
Room C
Superfluid helium (II)

Chairman: SHIOTSU Masahiro and OKAMURA Tetsuji


    C2-07
  1. Heat transfer in a channel containing superfluid helium pressurized up to 1 MPa (II)
    MAEDA,Minoru et al. ( National Institute for Materials Science ), maeda@www.csj.or.jp
  2. C2-08

  3. Two-dimensional Numerical Analysis on the Heat Transport Characteristics of Pressurized Superfluid Helium in Channels.
    HAMAGUCHI, Shinji et al. ( National Institute for Fusion Science ), hamaguchi@LHD.nifs.ac.jp
  4. C2-09

  5. Heat Transfer through Narrow Cooing Channel in Pressurized HeII
    KIMURA,Nobuhiro et al. ( Cryogenics Science Centre,High Energy Accelerator Research Organization ), nobuhiro.kimura@kek.jp
  6. C2-11

  7. Study of the cavitation in liquid helium flow using Venturi channel of different shapes
    MURAKAMI,Masahide et al. ( Institute of Engineering Mechanics Systems, University of Tsukuba ), jishii@hotei.riko.tsukuba.ac.jp
  8. C2-12

  9. Numerical Simulation of Cavitating Flow of Superfluid Helium
    ISHIMOTO,Jun et al. ( Department of Intelligent Machines and System Engineering, Hirosaki University ), ishimoto@cc.hirosaki-u.ac.jp

Nov. 25 , 9:00 - 10:30
Room C
Thermodynamics

Chairman: HARUYAMA, Tomiyoshi and KOBAYASHI, Hisayasu


    C3-01
  1. Visualization of Pool Boiling Liquid 3He below 1K (II)
    KATAGIRI,MASANORI et al. ( Department of Applied Physics Okayama University of Science ), s00rd02@physics.dap.ous.ac.jp
  2. C3-02

  3. Performance of thermoacoustic sound wave generators
    HATAZAWA,Masayasu et al. ( junior college of nihon university ), hatazawa@eme.cst.nihon-u.ac.jp
  4. C3-03

  5. Fluid study of liquid helium in a superconducting magnet by Lattice Boltzmann Method
    TATSUMI,Yuichiro et al. ( DEPARTMENT OF NUCLEAR ENGINEERING, GRADUATE SCHOOL OF ENGINEERING, OSAKA UNIVERSITY ), tatumi35@sanken.osaka-u.ac.jp
  6. C3-04

  7. Expansion of Present Thermoacoustic Theory 1:Critical Discussion on The Theory
    TOMINAGA,Akira et al. ( Institute of Physics, University of Tsukuba ), tominaga@sakura.cc.tsukuba.ac.jp
  8. C3-05

  9. Expansion of Present Thermoacoustic Theory 1:Entropy Flow
    TOMINAGA,Akira et al. ( Institute of Physics, University of Tsukuba ), tominaga@sakura.cc.tsukuba.ac.jp
  10. C3-06

  11. Expansion of Present Thermoacoustic Theory 2: Influence of The Expansion
    TOMINAGA,Akira et al. ( Institute of Physics, University of Tsukuba ), tominaga@sakura.cc.tsukuba.ac.jp

Nov. 25 , 10:45 - 12:15
Room C
Cryocooler (I)

Chairman: MATSUBARA, Yoichi and INOUE, Tatsuo


    C3-07
  1. Observation of flow phenomena in a tapered pulse tube refrigerator
    SHIRAISHI,Masao et al. ( National Institute of Advanced Industrial Science and Technology ), shiraishi.m@aist.go.jp
  2. C3-08

  3. Effects of taper angle on performance of a tapered pulse tube refrigerator
    SHIRAISHI,Masao et al. ( National Institute of Advanced Industrial Science and Technology ), shiraishi.m@aist.go.jp
  4. C3-09

  5. Enthalpy Flow in a Regenerator of Pulse Tube Refrigerator
    IKEGUCHI,Takuya et al. ( University of Tsukuba ), shiraishi.m@aist.go.jp
  6. C3-10

  7. Phase control characteristics of a 4K pulse tube cryocooler
    NAKASHIMA,Yusuke et al. ( Tokyo Institute of Technology Interdisciplinary Graduate School of Science and Engineering ), yasumi.ootani@toshiba.co.jp
  8. C3-11

  9. Development of Oxide Regenerator Materials
    IKEDA,Hiroshi et al. ( Cryogenics Center University of Tsukuba ), ikeda@bk.tsukuba.ac.jp
  10. C3-12

  11. Cooling performance of ceramic magnetic regenerator material
    Numazawa,Takenori et al. ( Tsukuba Magnet Lab., NIMS ), konta@www.csj.or.jp
  12. C3-24

  13. Development of a Miniature Pulse Tube Cryocooler
    YASUKAWA,Yukio et al. ( Fuji Electric Corp. Research & Development, Ltd. ), yasukawa-yukio@fujielectric.co.jp

Nov. 25 , 13:15 - 14:45
Room C
Cryocooler (II)

Chairman: SHIRAISHI, Masao and NISHITANI, Tomio


    C3-13
  1. Construction of a double-loop type thermoacoustic cooler
    SUMI,Takao et al. ( School of Engineering,Nagoya University ), sumi@nuap.nagoya-u.ac.jp
  2. C3-14

  3. 4K pulse tube refrigerator with higher cooling power at first stage
    ZHU,Shaowei et al. ( AISIN SEIKI CO., LTD. ),
  4. C3-15

  5. Development of a 1K cooler for space use
    Narasaki, Katsuhiro et al. ( Sumitomo Heavy Industries, Ltd. ), Kth_Narasaki@shi.co.jp
  6. C3-16

  7. Development of a small Pulse Tube Cryocooler with 5W@80K
    OGURA,Tetsuya et al. ( Sumitomo Heavy Industries,Ltd. ), Tty_Ogura@shi.co.jp
  8. C3-17 Submitted to Japan-Korea Joint Workshop 2001

  9. Experimental Results On V-M Cycle Pulse Tube Refrigerator
    dai,wei et al. ( nihon university ), david@lebra.nihon-u.ac.jp
  10. C3-18

  11. Study on LXe system for particle detector(6)-Development of U-shape pulse tube refrigerator-
    HARUYAMA,Tomiyoshi et al. ( High Energy Accelerator Research Organization ), tomiyoshi.haruyama@kek.jp

Nov. 25 , 15:00 - 16:30
Room C
Cooling System

Chairman: SATO, Toshimi and NOGUCHI, Takashi


    C3-19
  1. Development of 2K-GM/JT Refrigerator -Testing -
    SATO, Akio et al. ( National Institute for Materials Science ), asat@www.csj.or.jp
  2. C3-20

  3. Design Result of ITER Cryogenic System
    HAMADA,KAZUYA et al. ( Japan Atomic Energy Research Institute ), hamada@naka.jaeri.go.jp
  4. C3-21

  5. Measurement of oil contamination in gaseous helium from a screw compressor
    OKUNO,Hiroaki et al. ( Hitachi Techno Service Co.,Ltd. ), h-tukuba@mail.goo.ne.jp
  6. C3-22

  7. Ten Years Operational Experience of the SKS Cryogenic System
    AOKI,Kanae et al. ( High Energy Accelerator Research Organization ), kanae.aoki@kek.jp
  8. C3-23

  9. Presurized Super-Fluide Helium Refrigeration System for Super Conducting magnet Test Bench (III) -Cooling charactaristics of a 6.3m prototype quadrupole super conducting magnet-
    KIMURA,Nobuhiro et al. ( Cryogenics Science Centre,High Energy Accelerator Research Organization ), nobuhiro.kimura@kek.jp