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1 Journal of the Heat Transfer Society of Japan

2 How to Write a Manuscript of Dennetsu Taro DENNETSU (Dennetsu University) Microsoft Word [1][2,4] 1 [6-10] 1 A4 (210mm297mm) (Therm. Sci. Eng. ) - 30mm 20mm 1 45mm (JICST) 10 ( mm) mm 10mm 10 ( mm) (Windows) MS [1] B (Macintosh) (1999), [2] Incropera, F. P. and Dewitt, D. P., Fundamentals of (Windows) MS Heat and Mass Transfer, John Wiley & Sons (Macintosh) (1976). [3] Smith, A. et al., Therm. Sci. Eng., 7-5 Times New Roman Symbol (1999), ( =5.271mm) [4] (1980) MS-WORD

3 Vol No. 166 January ( )

4 Journal of The Heat Transfer Society of Japan Vol.41, No.166, January, 2002 CONTENTS New Year s Greeting Yasunobu FUJITA (Kyusyu University) 1 < Advances of Heat Transfer Research in the Past 10 Years: Part 1 > On the Momoir of the 40 th Anniversaty of The Heat Transfer Society of JAPAN Akira TAKIMOTO (KanazawaUniversity) 2 Recent Advances in Bioengineering in Heat Transfer Yukio YAMADA (University of Electro-Communications) 3 Environment and Energy Takeo S. SAITOH (Tohoku University) 9 An Overview on Development of Heat Transfer Simulation in this Decade. Hiroshi KAWAMURA (Tokyo University of Science) 17 Advances of Heat Transfer Research in the Past 10 Years: Material and Device Shigefumi NISHIO (The University of Tokyo) 24 <Report of Branch> Kids Energy Symposium 2001Generation of Mechanical Power from Thermal Energy! Katsunori HANAMURA (Gifu University) 30 Report of Tokai Branch Masafumi HIROTA (Nagoya University) 32 Report of Kyushu Branch Hiroshi TAKAMATSU(Kyushu University) 33 Report of Chugoku-Shikoku Branch Tatsuo NISHIMURA (Yamatguchi University) 33 Report of Hokuriku-Shinetu Branch Toshihiro IWAKI (Toyama University) 34 <Calendar> 35 <Announcements> 37

5 New Year s Greeting 40 Yasunobu FUJITA (Kyusyu University) CD -1- Jour. HTSJ, Vol. 41, No. 166

6 40 40 On the Momoir of the 40 th Anniversaty of The Heat Transfer Society of JAPAN 40 Akira TAKIMOTO (KanazawaUniversity) S (1971) (1981) 20 3 (1991) (2001)

7 10 Recent Advances in Bioengineering in Heat Transfer Yukio YAMADA (University of Electro-Communications) Jour. HTSJ, Vol. 41, No. 166

8 [5] m [6] [7] [8] m (1) (2) [9] [10] [11] [12] [13] 37 [14] (1) (2)

9 10 25 [18] 1980 Rubinsky[19] [15] [20,21] [22] Rubinsky [16] Ishiguro and Rubinsky[23] [24] [25] [17] [26] -5- Jour. HTSJ, Vol. 41, No. 166

10 10 10cm 10.6m [31] CT [32] CT [33] [34] [35] [27] [28] [29] [30] 700nm 2m

11 10 x CTMRI MRI 1 [36] DNA P-SC P-SC News Letter, No.29, Vol. 102, pp ( ). -7- Jour. HTSJ, Vol. 41, No. 166

12 10 [1] H. H. Pennes, J. Appl. Physiol., Vol. 1, pp (1948). [2] S. Weinbaum and L. M. Jiji, J. Biomech. Eng., Vol. 107, pp (1985). 98, ASME, (1988). [19] B. Rubinsky, J. of Heat Transfer, Vol. 111, pp (1989). [20] H. Ishiguro and B. Rubinsky, Cryobiology, Vol. 31, pp (1994). [3] Vol. 31, [21] H. Takamatsu and B. Rubinsky, Cryobiology, Vol. pp , (1993). 39, pp (1999). [4] ( ) [22] Vol. 60, pp , (1994) [5] H. Kobayashi et al., Respir. Physiol., Vol. 78, pp (1990). Vol. 64, pp (1998). [23] H. Ishiguro and B. Rubinsky, Int. J. of Heat and Mass Trans., Vol. 41, pp (1998). [6] Vol. [24] 38 64, pp (1998). [7] E. Takahashi and K. Doi, Am. J. Physiol., Vol.271, pp. H1734-H1739 (1996). E132 (2001). [25] 37 D125 (2000). [8] 13 [26] 38 pp E133 (2001). (1998). [9] S. Yokoyama et al., Appl. Human Sci., Vol. 16, pp (1997). [27] 35 C131, (1998). [28] [10] pp (2001) Vol. 61, pp (1995). [11] Y. Shoji et al., AJTE , Proc. of 5th [29] 32 D224, (1995). ASME/JSME Joint Thermal Engineering [30] G. Müller and A. Roggan ed., Laser-Induced Conference, 1999, San Diego, USA. Interstitial Thermotherapy, SPIE Optical [12] S. Murakami et al., Building and Environment, Vol. 35, No. 6 (2000). Engineerng Press, Bellingham, USA (1995). [31] S. Kumar et al., Applied Optics, Vol. 35, No. 9, [13] Vol. 42, pp. pp , (1996) (1989). [14] B.Rubinsky, AJTE , Proc. of 5th [32] Y. Yamada and Y. Hasegawa, JSME International Journal, Series B., Vol. 39, No. 4, pp , ASME/JSME Joint Thermal Engineering (1996). Conference, 1999, San Diego, USA. [15] D. P. Siegel et al., Biophysical Journal, Vol. 66, pp (1994). [16] B. Rubinsky et al., Am. J. Physiol., Vol. 262, pp. R542-R565 (1993). [17] R. A. Ring and H. V. Danks, Cryo Letters, Vol. 19, pp (1998). [18] J. J. McGrath and K. R. Diller, ASME HTD- Vol. [33] H. Eda et al., Review of Scientific Instruments, Vol. 70, pp , (1999). [34] Y. Yamada, Annual Review of Heat Transfer, Vol. VI, pp. 1-59, Begell House, New York (1995). [35] 29 6, pp (2000) [36] K. Kuroda et al, Magn. Reson. Med., Vol. 35, pp (1996)

13 10 Environment and Energy Takeo S. SAITOH (Tohoku University) -9- Jour. HTSJ, Vol. 41, No. 166

14 ARAKAWA Ambient Temp. [] N RIVER OTEMACHI TANASHI SHINJUKU IKEBUKURO July 23, 2001 Time:19:00 TAMAGAWA RIVER SHIBUYA ROPPONGI TOKYO BAY 5 km :00 2 [18] (a) (b) (c) (d) 2 g 1 Urban Structures (Porous Structures) H P H P T C T H 0 1 x, km T S Initial temp., K Porosity IMPERIAL PALACE T max =34.4 (SHINJUKU) T min =30.5 (SHAKUJII) 1 [15] Height z, km

15 x, cm Heated region 4 () [18] TOKYO (Summer, 18:00) 2031 N T= () z, cm TOKYO BAY 10 km UV, Gflops Jour. HTSJ, Vol. 41, No. 166

16 10 1 [22], BMRC, 1998 BMRC 3.2x5.6L17 3.2x5.6L12 CGCM2, 2001 CCCma 3.8x3.8L10 1.8x1.8L29 CSM1.3, 2001 NCAR 2.8x2.8L18 2.0x2.4L45 ECHAM4/ DKRZ 2.8x2.8L18 2.8x2.8L11 OPYC3, x2.25L1 GFDL_R30, 1999 GFDL 2.25x2.3L18 8 GISS2, 1995 GISS 4.0x5.0L9 4.0x5.0L13 HadCM3, 2000 UKMO 2.5x3.75L x1.25L20 MRI2, 2000 MRI 2.8x2.8L30 2.0x2.5L23 CCSR/NIES, CCSR 5.6x5.6L20 2.8x3.8L /NIES GISS : UKMO : MRI : CCSR : NIES : 2 CO 2 % [22], [K] BMRC, CGCM2, CSM1.3, ECHAM4/OPYC3, GFDL_R30, GISS2, HadCM3, MRI2, CCSR/NIES, BMRC CCCma NCAR DKRZ GFDL : : : : : Bureau of Meteorology Research Center Canadian Center for Climate Modeling and Analysis National Center for Atmospheric Research Das Deutsche Klimarechenzentrum Geophysical Fluid Dynamics Laboratory Goddard Institute for Space Studies United Kingdom Meteorological Office Meteorological Research Institute Center for Climate Research Studies National Institute for Environmental Studies

17 10 8 CO 2 [29] 4 [23] Jour. HTSJ, Vol. 41, No. 166

18

19 (PV) Evacuated tube (Type B) 10 Evacuated tube (type A) CPC Collector with double-glazing (Kr gas filled) Flat plate CPC Collector with single-glazing a 13 CPC SRCS (Dynamic) (Static), CPC solar collector 11 Electricity generator LHTES steam accumulator Steam expander Cooling water P PCM capsule P P Condenser 12 SRCS -15- Jour. HTSJ, Vol. 41, No. 166

20 10 [15] 38 (2001) [16] Bornstein, R and Lin, O., Atmospheric Environ., 34-3 (2000), [17] (B ) (1994) [18] Saitoh, T.S. and Yamada, N., Int. J. Experimental Thermal and Fluid Science (2001), (in prep.) [19] Russell, G. L., J. R. Miller and D. Rind Atmosphere-Ocean, 33-4 (1995), [20] Flato, G. M.; G. J. Boer, W.G. Lee; N.A. McFarlane, D. Ramsden, M.C. Reader, A.J. Weaver, Climate Dynamics, 16(2000), [21] Boville, B. A., and P. R. Gent, Journal of Climate, 11(1998), [22] The third assessment report of the Intergovernmental Panel on Climate Change, Cambridge Univ. Press, (2001). [23] Jones, P.D., M. New, D.E. Parker, S. Martin and I.G. Rigor, Res. Geophys., 37(1999), [24] The second assessment report of the Intergovernmental Panel on Climate Change, Cambridge Univ. Press, (1996). [25] Saitoh, T. S., and S. Wakashima, Proceedings of the 5th ASME/JSME Joint Thermal Engineering Conference (March 15-19, 1999, San Diego, California) CD-ROM. [26] Saitoh, T. S., and S. Wakashima, Proceedings of the 35th Intersociety of Energy Conversion Engineering Conference (July 24-28, 2000, Las Vegas, Nevada), 2(2000), [1] 49- [27] Saitoh, T. S., and S. Wakashima, Proceedings of 445 (1983) the 36th Intersociety of Energy Conversion [2] Saitoh, T.S. and Fukuda, K., Bull. JSME, Engineering Conference (July 29-August 2, (1985), Savannah, Georgia), II(2001), [3] 34-3 (1987), [28] Wakashima, S., and T. S. Saitoh, Thermal Science & Engineering, 9-4(2001), [4] (1991.4) [29] Saitoh, T. S., and S. Wakashima, Extended [5] Abstracts of the 6th International Carbon Dioxide (1992). Conference, II (2001), [6] (1992.1) [30] Saitoh, T. S. and S. Wakashima, Extended [7] 18-4 (1992), Abstracts of the 6th International Carbon Dioxide [8] (1993) Conference, II (2001), [9] (1993)1-8. [31], ENEREGY, (2000), [10] (1995.7) [32],, [11] T.S.Saitoh et al., Atmospheric Environ., 30-20,4-6(1998), (1996), [33],,, [12] (1996), 25-1(1999), [34],, 36(1994), [13] (1997) [14] (1997)

21 10 An Overview on Development of Heat Transfer Simulation in this Decade. Hiroshi KAWAMURA (Tokyo University of Science) 10 CPU 1CPU 2Gflops Flops 1Gflops CPU 10Gflops 816GB 64 CPU CPU CPU (DNS) 10 Re Jour. HTSJ, Vol. 41, No. 166

22 10 Clock [MHz] CISC RISC DEC21064A DEC21064 Pentium Pro II III Pentium 4 DEC21264A DEC21164A DEC A 21264B CPU Flops Super SPARC Ultra SPARC Web [2] 0 Alpha year Pentium 500Mflops 1 CPU 5Gflpos 10 DNS CPU DNS CPU 100MHz DEC Alpha CPU 275MHz DNS 15 Intel [3,4] 10 Pentium CPU Pentium 2GHz DNS DNS Re180 1GB Rem=5,600 Re u Rem 2 CPU

23 10 Mesh Number Requirement Satake-Kunugi-Himeno (Circular tube ) Kawamura-Abe-Matsuo (2000-) 100 Approx. Memory Requirement [GB] Kawamura-Abe-Matsuo (1998, 1999) 10 Abe-Kawamura-Matsuo (2001) 10 7 Wikström-Johanson (1998) Kim-Moin-Moser (1990) Kawamura-Abe-Matsuo (1999) Kawamura et al. (1998) Kim-Moin-Moser (1987) Tiselj et al. (2001) 1 Kuroda-Kasagi (1990), Kasagi et al. (1992) Kawamura-Suzuki (1994) 10 6 R e / c c ,000 Tanahashi et al. (2001) Moser-Kim-Mansour (1999) u R e u / 2 DNS Pr t y + Re b =5700 Re b =14100 Re b =24500 Pr=0.71 Pr= y/ 3DNS Re640Rem=24,000 [5] DNS DNS Re=180, 395, Pr=0.71, DNS Prt=1.1 Prt= DNS Prt= [6] DNS 10 Prt [7] DNS -19- Jour. HTSJ, Vol. 41, No. 166

24 10 (a) u (u + >3.5: red, u + <-3.5: blue) (a) u (u + >3.5: red, u + <-3.5: blue) (b) (Pr=0.71) ( + >3.5: red, + <-3.5: blue) (b) (Pr=0.71) ( + >3.5: red, + <-3.5: blue) (c) (Pr=0.025) ( + >0.06: red, + <-0.06: blue) (c) (Pr=0.025) ( + >0.12: red, + <-0.12: blue) (d) p (p + >2.5: red, p + <-2.5: blue) (d) p (p + >3.5: red, p + <-3.5: blue) 4ADNS 4BDNS ( Re = 180, at y + = 10) Pr=5.0 Pr=0.71 ( Re = 640, at y + = 10) (Re640) 4A,B Re DNS Re (Re180)

25 10 (Pr=0.71) (Pr=0.025) DNS Pr=0.71 Pr=0.025 DNS 10 DNS 4 sweep 5 (ejection) [8] DNS MARS (Pr=0.71) DNS [9] sweep (ejection) 10 (Pr=0.025) Pr=0.71 DNS -21- Jour. HTSJ, Vol. 41, No. 166

26 10 Flow DNS [8] [10] [10] 10 CIP CIP Cubic Interpolated Pseudo-particle 10 [11] 10 CPU [12] CPU 10 CPU 100W/cm

27 10 CPU 10 CPU [1] ( 1996) 37. [2] htm [3] Kim, J. Moin, P. and Moser, R.. J. Fluid Mech. 177 (1987) 133. [4] Kim, J and Moin, P., Turbulent Shear Flows 6, Springer (1989) 85. [5] Abe, H., Kawamura, H. and Matsuo, Y., J. Fluid Eng. 123 (2001)382. [6] Kasagi, N. and Ohtsubo,Y., Turbulent Shear Flows 8, Springer (1993) 97. [7] Kawamura, H., et al. Int. J. Heat Fluid Flow, 19 (1998) 482. [8] 9-5 (2001) 153. [9] Iwasaki, T., et al. Int. J. Heat Fluid Flow, 22 (2001) 332. [10] (2001) 331. [11] 7-2 (1999) 70. [12] Shirakawa, H., et al. Thermal Sci. & Eng., 9-6, (2001) Jour. HTSJ, Vol. 41, No. 166

28 10 10 Advances of Heat Transfer Research in the Past 10 Years: Material and Device Shigefumi NISHIO (The University of Tokyo) OS 25 (1988) 27 (1990) CVD 29 (1992) OS 1990 Lior Heat and Mass Transfer in Materials Processing [1] a) Crystal growth

29 10 b) Solidification c) Casting and molding d) Plasma spray e) Laser and electron beam processing f) New materials by rapid processing 1992 [2] A) Molecular dynamics of condensation process B) Micro/macro modeling of solidification process C) High-precision measurement and active control of solidification process D) Ultra-high rate cooling for manufacturing of rapidly solidified materials E) Meltingevaporation and sublimation processes in ultra-high precision processing Rapid Solidification of Metals and Alloys [3]Jones 1982 [5] 1988 mushy zone [4] 1991 [6] [5] -25- Jour. HTSJ, Vol. 41, No. 166

30 10 [9] PFM(Phase Field Model) PFM [7] Cz [r,t] 0 1 phase field phase field 0.5 DLCZ Cz [7] PFM [10] 2) 5) [11] 10 C [8] CVD

31 10 10 [17] LSI PC PC (1986) 24 (1987) 27 (1990) 29 (1992) [18] OS 10 [19] PC 10 MPU i386 i [20] Dream pipe [21] 10 Tuckerman & Pease SEMOS [12] COSMOS [19] Cotter[13] MCM(Multi Chip Module) Kurzweg & Zhao Dream heat spreader pipe[14] Little Microminiature Refrigerator (MMR) [15] high-performance heat spreader Vapor Chamber [16] heat spreader 10 [22] [23] LSI 10 [24] PC PC PC [25] -27- Jour. HTSJ, Vol. 41, No. 166

32 10 (1998) [26] [6] Hayashi, Y., Heat Transfer 1998, 1(1998)287. [7] [27] [8] 38 (2001) [9] Therm. Sci. Eng., 9-6 (2001) MEMS(Micro Electro-Mechanical Systems) 9. [10] (2001) [11] B (1998) 463 [12] Tuckerman, D.B. and Pease, R.F.W., IEEE [28] Electron Device Letters, EDL-2(1981)126. [29] [13] Cotter, C.P., Proc. 5 th Int. Heat Pipe Conf., (1984), [30] 328. [31][35] [14] Kurzweg, U.H. and Zhao, L., Phys. Fluids, TAS(Total Analytical System)[36][37] 27-1(1984)2624. [38] [15] LittleW.A., Rev. Sci. Instrum., 55-5(1984)661. [16] (1985)7 [17] 37 (2000)39 [18] 20-2(2001)36 [19] Nishio, S., Preprints of 11 th Intern. Heat Pipe Conf., 3(1999) [20] No (1994)606 [21] 60(1994)3498 [22] 19(2000)2 [23] 2001 (2001)432 [24] 2001 (2001)3-3 [1] Heat and Mass Transfer in Materials Processing, [25] (2001)3-4 (Ed. by Tanasawa, I. and Lior, N.), Hemisphere [26] Kim, S.J. and Kim, D., ASME J. Heat Transfer, Pub. Co.(1992). 121(1999)639. [2] [27] Palm, B., Heat Transfer and Transport Phenomena in Microscale, Begell House(2000)54. (1997) [3] Jones, H., Rapid Solidification of Metals and Alloys, The Institute of Metallurgists(1982). 1(1995)227 [28] 3 37 (2000)215 [29] 37 [4] (1991) (2000)217 [5] (2000) [30] (1999)

33 10 [31] 4 36 [35] 3 38 (1999)193 [32] 5 (2000)213 [33] 4 (2000)389 [34] 2 (2001)325 (2001) [36] 3 (2001) [37] Majumdar, A., (2001) [38] 2 (2001) Jour. HTSJ, Vol. 41, No. 166

34 2001 Kids Energy Symposium 2001 Generation of Mechanical Power from Thermal Energy! Katsunori HANAMURA (Gifu University)

35 63 20 CD -31- Jour. HTSJ, Vol. 41, No. 166

36 Report of Tokai Branch ( ) Masafumi HIROTA (Nagoya University) :3017: (1) (1) (2) T. Kashiwagi, K.B. Mcgrattan, H.R. Baum (NIST) (3) (2) (4) (5) (6) (3) (7) DNS

37 Report of Kyushu Branch Hiroshi TAKAMATSU(Kyushu University) Report of Chugoku-Shikoku Branch Tatsuo NISHIMURA (YamatguchiUniversity) 13:3017:00 [ ] [ ] -33- Jour. HTSJ, Vol. 41, No. 166

38 Report of Hokuriku-Shinetsu Branch Toshihiro IWAKI (Toyama University) () 17 () [ ] [ ] Large Eddy Simulation P.Ratanadecho [ ] ( ) [ ] [ ] [ ]

39 Fax: ac.jp -35- Jour. HTSJ, Vol. 41, No. 166

40

41 39 URLhttp://htsymp-me.eng.hokudai.ac.jp/ CD-ROM ( ) () PDF..pdf ( 123.pdf) PDF PDF MS-Word95 8 PageMaker PDF 5,000 ( 4 12 ) a) b) ( CD-R ) ( ) 3 3 4JICST Tel&Fax htsymp39@mech-me.eng.hokudai.ac.jp ,000 12,000 5,000 6,000 CD-ROM 8,000 8,000 10, ,000 5,000 3,500 2,000 ( ) 40 (6 4 ) Jour. HTSJ, Vol. 41, No. 166

42 JICST 1 1 PDF MS-Word 95 MS-Word 97,98 MS-Word 2000 MS-Word 2001 PDF ,000 4 Postscript PageMaker PDF PDF

43 PDF PDF PDF CD-ROM CD-ROM PDF 1MB PDF Windows Macintosh MS MS Times Times New Roman Times Arial Arial Arial Symbol Symbol Symbol MS-Word MS-Word PDF Acrobat PDF Adobe Acrobat Acrobat PDFWriter Distiller PDF PDF Distiller Distiller PDF 1. Distiller 2. Distiller 3. PDF Distiller Distiller [ ][PrintOptimized] -39- Jour. HTSJ, Vol. 41, No. 166

44 PDF 20 mm 150mm 150mm (1) (2) (1) 20 mm (1) 2 (B)12-345(2001), A4 (210mm X 297 mm) 12 15mm Instruction for Preparing a Paper Taro DENNETSU 1, Jiro KIKAI 2, Hanako NETURIKI Netsu Heavy Industries Ltd., Sakura, Ohmiya, Saitama Dept. of Mech. Eng., Dennetsu Inst. Tech., 4-5 Fuji, Yokohama, Kanagawa English abstract Key Words : Heat Transfer, Forced Convection mm 15mm

45 JICST JICST JICST -41- Jour. HTSJ, Vol. 41, No. 166

46 No ( )

47 39 13,000 A1 10,000 A2 12,000 B1 9,800 B2 12,000 C1 9,800 C ,000 D1 9,500 D2 9,000 E1 8,500 E2 9,000 F1 8,500 F2 8,500 G1 7,000 G2 8,500 H1 8,500 I1 6,544 J1 7,930 K1 5,966 J2 7,237 K2 ( ) :0017:00 A :0020: :0010:00 B :3012:30 19, :0016:00 C :3018: :0010:30 D :0012:00 25, :0017:00 E :3019: :409:00 F :0012:00 23, :0016:00 G :0019: :0010:00 H :0014:00 17, Jour. HTSJ, Vol. 41, No. 166

48 ,500 3,000 6,000 9,000 2,000 4,000 8,000 12,000 4 ( ) covdesk@jrhokkaido.co.jp

49 -45- Jour. HTSJ, Vol. 41, No. 166

50 THERMAL SCIENCE AND ENGINEERING JIS-

51 ) ) ) ) THERMAL SCIENCE AND ENGINEERING ) TEL, FAX htsj@asahi-net. .ne.jp HP: THERMAL SCIENCE AND ENGINEERING TEL: FAX: motizuki@cc.tuat.ac.jp -47- Jour. HTSJ, Vol. 41, No. 166

52

53 -49- Jour. HTSJ, Vol. 41, No. 166

54

55 Leading Edge the Thermal Technology

56 Tel : Fax : takimoto@t.kanazawa-u.ac.jp

57 F Tel / Fax : Copyright Clearance Center, Inc.(CCC) 222 Rosewood Drive, Danvers, MA USA Phone : Fax : Notice about photocopying In order to photocopy any work from this publication, you or your organization must obtain permission from the following organization which has been delegated for copyright for clearance by the copyright owner of this publication. Except in the USA The Copyright Council of the Academic Societies (CCAS) 41-6 Akasaka 9-chome, Minato-ku, Tokyo Japan Phone / Fax : In the USA Copyright Clearance Center, Inc. (CCC) 222 Rosewood Drive, Danvers, MA USA Phone : Fax : ISSN Journal of The Heat Transfer Society of Japan Vol. 41, No (5689) (5689) Published by The Heat Transfer Society of Japan 16-16, Yushima 2-chome, Bunkyo-ku, Tokyo , Japan Phone / Fax :

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