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feature articles

Loop Heat Pipes: A Review of Fundamentals, Operation,and Design

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Pages 387-405 | Published online: 18 Nov 2011

REFERENCES

  • Bienert , W. B. 1998 . Loop Heat Pipe Experiment . Proceedings of the Space Technology and Applications International Forum-1998, American Institute of Physics , : 511 – 513 .
  • Stenger , F. J. 1966 . Experimental Feasibility Study of Water-filled-Capillary-Pumped Heat-Transfer Loops , Cleveland, OH : Tech. Rep. NASA TM-X-1310, NASA Lewis Research Center .
  • Maidanik , Y. F. , Vershinin , S. , Kholdov , V. and Dolgirev , J. 1985 . Heat Transfer Apparatus U.S. Patent No. 4515209
  • Ku , J. 1994 . Thermodynamic Aspects of Capillary Pumped Loop Operation . 6th AIAA/ASME Joint Thermophysics and Heat Transfer Conference . 1994 , Colarado Springs, CO. AIAA paper AIAA-94-2059
  • Nikitkin , M. and Cullimore , B. CPL and LHP Technologies: What Are the Differences, What Are the Similarities . International Conference On Environmental Systems . Danvers, MA. SAE 981587, July 1998
  • Adoni , A. A. , Ambirajan , A. , Jasvanth , V. S. , Kumar , D. , Dutta , P. and Srinivasan , K. 2007 . Thermohydraulic Modeling of Capillary Pumped Loop and Loop Heat Pipe . Journal of Thermophysics and Heat Transfer , 21 ( 2 ) : 410 – 421 .
  • Ku , J. 1997 . Recent Advances in Capillary Pumped Loop Technology . AIAA paper AIAA-97-3780
  • Douglas , D. , Ku , J. and Schlager , L. 1997 . Investigation of Starter Pump Purge Super Heat Observed in the CAPL 1 flight . AIAA paper AIAA-97-3871
  • Maidanik , Y. F. , Fershtater , Y. G. and Pastukhov , V. G. 1995 . Design and Investigation of a Capillary Pumped Loop for Advanced Thermal Control Systems Of Space Vehicles . SAE paper 951509
  • Maydanik , Y. F. 2005 . Loop Heat Pipes . Applied Thermal Engineering , 25 : 635 – 657 .
  • Ku , J. and Nagano , H. 2007 . Loop Heat Pipe Operation With Thermoelectric Converters and Coupling Blocks . AIAA paper AIAA-2007-4713
  • Hoang , T. T. , Cummings , S. M. , Baldauff , R. W. and Brown , M. A. 2002 . Advanced Loop Heat Pipes for Spacecraft Central Thermal Bus Concept . Proceedings of 12th International Heat Transfer Conference July 2002 ,
  • Ku , J. 1999 . Operating Characteristics of Loop Heat Pipes . SAE paper 1999–01-2007
  • Tanaka , K. , Okamoto , A. and Matsui , K. 1998 . Design and Application of the Capillary Pumped Loop for the Future Satellite . AIAA paper AIAA-98-1390
  • Jasvanth , V. S. , Adoni , A. A. , Ambirajan , A. and Kumar , D. 2009 . Results of Experimental and Theoretical Study of Ammonia Based Loop Heat Pipe . Journal of Spacecraft Technology , 19 : 18 – 31 . January
  • Gilmore , D. G. 2002 . Spacecraft Thermal Control Handbook , 2nd ed. , Reston, VA : Aerospace Institute of Aeronuatics and Astronautics .
  • Birur , G. and Bhandari , P. 1997 . Mars Pathfinder Active Thermal Control System: Ground and Flight Performance of a Mechanically Pumped Cooling Loop . AIAA paper AIAA-97-2469
  • Douglas , D. and Ku , J. 1999 . Testing of the Geoscience Laser Altimeter System (GLAS) Prototype Loop Heat Pipe . AIAA paper AIAA-99-0473
  • Baker , C. L. , Grob , E. W. , McCarthy , T. V. , Nikitkin , M. N. and Ancarrow , W. C. 2004 . “ Geoscience Laser Altimetry System (GLAS) On-Orbit Flight Report on the Propylene Loop Heat Pipes (LHPs) ” . In Space Technology and Applications International Forum—STAIF 2004 Edited by: El-Genk , M. S. 88 – 95 .
  • Kaya , T. , Hoang , T. T. , Ku , J. and Cheung , M. K. 1999 . Mathematical Modelling of Loop Heat Pipes . AIAA paper AIAA-99-0477
  • Nagai , H. , Muto , M. , Murakami , M. , Ueno , S. and Matsuko , M. 2003 . Steady and Transient Behaviour of a Double-Condenser Design LHP for MAXI . AIAA paper AIAA-2003-3770
  • Choi , M. K. 2003 . SWIFT BAT Loop Heat Pipe Thermal System Characteristics And Ground/flight Operation Procedure . AIAA paper AIAA-2003-6077
  • Rodriguez , J. I. 2000 . Thermal Design of Tropospheric Emission Spectrometer Instrument . SAE paper 2000–01-2274
  • Romberg , O. , Bodendieck , F. , Block , J. , Nadalini , R. and Schneider , N. 2006 . NETLANDER Thermal Control . Acta Astronautica , 59 : 946 – 955 .
  • Swanson , T. D. and Birur , G. C. 2003 . NASA Thermal Control Technologies for Robotic Spacecraft . Applied Thermal Engineering , 23 : 1055 – 1065 .
  • Kaya , T. and Ku , J. 1999 . Ground Testing of Loop Heat Pipes for Spacecraft Thermal Control . AIAA paper AIAA-99-3447
  • Ambrose , J. , Buchan , E. and Yendler , B. 2000 . Modeling and Test Results for a Loop Heat Pipe With Parallel-flow Condenser . AIAA paper AIAA-2000-2280
  • Baumann , J. , Cullimore , B. , Ambrose , J. , Buchan , E. and Yendler , B. 2000 . A Method for Enveloping Reliable Start-Up of LHPs . AIAA paper AIAA-2000-2285
  • Wolf , D. A. and Bienert , W. B. 1994 . Investigation of Temperature Control Characteristics of Loop Heat Pipes . SAE paper 941576
  • Fleming , A. J. , Thomas , S. K. and Yerkes , K. L. 2010 . Titanium–Water Loop Jeat Pipe Operating Characteristics Under Standard and Elevated Acceleration fields . Journal of Thermophysics and Heat Transfer , 24 ( 1 ) : 184 – 198 .
  • Baker , C. , Bienert , W. B. and Ducao , A. S. 1998 . Loop Heat Pipe flight Experiment . SAE paper 981580
  • Kawasaki , H. , Noda , H. , Yabe , T. , Ishikawa , H. , Nomura , T. and Saito , Y. 2008 . Characteristics of Reservoir Embedded Loop Heat Pipe in Deployable Radiator on ETS-VIII at Beginning of the Experiment Under Orbital Environment . AIAA paper AIAA-2008-3926
  • Garimella , S. V. , Joshi , Y. K. , Bar-Cohen , A. , Mahajan , R. , Toh , K. C. , Carey , V. P. , Baelmans , M. , Lohan , J. , Sammakia , B. and Andros , F. 2002 . Thermal Challenges in Next Generation Electronic Systems—Summary of Panel Presentations and Discussions . IEEE Transactions on Components and Packaging Technologies , 25 ( 4 ) : 569 – 575 .
  • Garimella , S. V. , Fleischer , A. S. , Murthy , J. Y. , Keshavarzi , A. , Prasher , R. , Patel , C. , Bhavnani , S. H. , Venkatasubramanian , R. , Mahajan , R. , Joshi , Y. , Sammakia , B. , Myers , B. A. , Chorosinski , L. , Baelmans , M. , Sathyamurthy , P. and Raad , P. E. 2008 . Thermal Challenges in Next-Generation Electronic Systems . IEEE Transactions on Components and Packaging Technologies , 31 ( 4 ) : 801 – 815 .
  • Hoang , T. , O’Connell , T. , Ku , J. , Butler , D. and Swanson , T. 2003 . Miniature Loop Heat Pipes for Electronic Cooling . ASME 2003 International Electronic Packaging Technical Conference and Exhibition (InterPACK2003), Maui, Hawaii, USA , 2 : 517 – 525 . July
  • Zimbeck , W. , Slavik , G. , Cennamo , J. , Kang , S. , Yun , J. and Kroliczek , E. Loop Heat Pipe Technology for Cooling Computer Servers . 11th Intersociety conference on Thermal and Thermomechanical Phenomena in Electronic Systems (ITHERM 2008), Orlando, FL , 19 – 25 . May 2008
  • Maydanik , Y. F. , Vershinin , S. V. , Pastukhov , V. G. and Fried , S. 2010 . Loop Heat Pipes for Cooling Systems of Servers . IEEE Transactions on Components and Packaging Technologies , 33 ( 2 ) : 416 – 423 .
  • Singh , R. , Akbarzadeh , A. , Dixon , C. , Mochizuki , M. and Riehl , R. R. 2007 . Miniature Loop Heat Pipe With flat Evaporator for Cooling Computer CPU . IEEE Transactions on Components and Packaging Technologies , 30 ( 1 ) : 42 – 49 .
  • Launay , S. , Satre , V. and Bonjour , J. 2007 . Parametric Analysis Of Loop Heat Pipe Operation: A Literature Review . International Journal of Thermal Sciences , 46 : 621 – 636 .
  • Pastukhov , V. G. , Maidanik , Y. F. and Fershtater , Y. G. 1997 . Adaption of Loop Heat Pipes to Zero-G Conditions . Proceedings of the Sixth European Symposium on Space Environmental Control Systems, no. ESA SP-400 , : 385 – 391 . European Space Agency
  • Adoni , A. A. , Ambirajan , A. , Jasvanth , V. S. , Kumar , D. and Dutta , P. 2009 . Effects of Mass of Charge on Loop Heat Pipe Operational Characteristics . Journal of Thermophysics and Heat Transfer , 23 ( 2 ) : 346 – 355 .
  • Adoni , A. A. , Ambirajan , A. , Jasvanth , V. S. , Kumar , D. and Dutta , P. 2010 . Theoretical and Experimental Studies on an Ammonia-Based Loop Heat Pipe With a flat Evaporator . IEEE Transactions on Components and Packaging Technologies , 33 ( 2 ) : 478 – 487 .
  • Kiseev , V. M. , Vlassov , V. V. and Murakoa , I. 2010 . Experimental Optimization of Capillary Structure for Loop Heat Pipes and Heat Switches . Applied Thermal Engineering , 30 : 1312 – 1319 .
  • Joung , W. , Yu , T. and Lee , J. 2010 . Experimental Study on the Operating Characteristics of a flat Bifacial Evaporator Loop Heat Pipe . International Journal of Heat and Mass Transfer , 53 : 276 – 285 .
  • Ogushi , T. , Haga , S. , Ishikawa , H. , Yao , A. , Miyasaka , A. and Noda , H. 2001 . Mathematical Modelling for Predicting Steady State and Transient Characteristics of Reservoir Embedded Loop Heat Pipe (RELHP) . SAE paper 2001–01-2239
  • Adoni , A. A. , Ambirajan , A. , Jasvanth , V. S. , Kumar , D. and Dutta , P. 2010 . Theoretical Studies of Hard filling in Loop Heat Pipes . Journal of Thermophysics and Heat Transfer , 24 ( 1 ) : 173 – 183 .
  • Chuang , P. A. 2003 . An Improved Steady-State Model of Loop Heat Pipes Based on Experimental and Theoretical Analysis, Ph.D. thesis , Pennsylvania State University .
  • Guiping , L. , Hongxing , Z. , Xingguo , S. , Jianfeng , C. , Ting , D. and Jianyin , M. 2006 . Development and Test Results of a Dual Compensation Chamber Loop Heat Pipe . Journal of Thermophysics and Heat Transfer , 20 ( 4 ) : 825 – 834 .
  • Hongxing , Z. , Guiping , L. , Ting , D. , Wei , Y. , Xingguo , S. , Sudakov , R. G. and Maidanik , Y. F. 2005 . Investigation of Startup Behaviors of a Loop Heat Pipe . Journal of Thermophysics and Heat Transfer , 19 ( 4 ) : 509 – 518 .
  • Parker , M. L. 2000 . Modeling of Loop Heat Pipes With Applications to Spacecraft Thermal Control, Ph.D. thesis , PA : University of Pennsylvania, Philadelphia .
  • Adoni , A. A. , Ambirajan , A. , Jasvanth , V. S. , Kumar , D. , Badarinarayan , K. and Dutta , P. in press . Evaporation Heat Transfer Coefficient in a Capillary Pumped Loop and Loop Heat Pipe for Different Working fluids . Heat Transfer Engineering , 33 : 2012
  • Chernysheva , M. A. , Vershinin , S. V. and Maydanik , Y. F. 2007 . Operating Temperature and Distribution of a Working fluid in LHP . International Journal of Heat and Mass Transfer , 50 : 2704 – 2713 .
  • Bai , L. , Lin , G. , Zhang , H. and Wen , D. 2009 . Mathematical Modeling of Steady-State Operation of a Loop Heat Pipe . Applied Thermal Engineering , 29 : 2643 – 2654 .
  • Cheung , K. , Hoang , T. T. , Ku , J. and Kaya , T. 1998 . Thermal Performance and Operational Characteristics of Loop Heat Pipe (NRL LHP) . SAE paper 981813
  • Bai , L. , Lin , G. , Wen , D. and Feng , J. 2009 . Experimental Investigation of Startup Behaviours of a Dual Compensation Chamber Loop Heat Pipe With Insufficient fluid Inventory . Applied Thermal Engineering , 29 : 1447 – 1456 .
  • Hoang , T. T. , Baldauff , R. W. and Cheung , K. H. 2005 . Start-Up Behaviour of an Ammonia Loop Heat Pipe . AIAA paper AIAA-2005-5630
  • Ku , J. , Ottenstein , L. and Birur , G. Thermal Performance of a Multi-Evaporator Loop Heat Pipe With Thermal Masses and Thermal Electrical Coolers . Proceedings of the 13th International Heat Pipe Conference, Shanghai, China , September 2004
  • Chernysheva , M. A. , Maydanik , Y. F. and Ochterbeck , J. M. 2008 . Heat Transfer Investigation in Evaporator of Loop Heat Pipe During Startup . Journal of Thermophysics and Heat Transfer , 22 ( 4 ) : 617 – 622 .
  • Li , T. and Ochterbeck , J. M. 1999 . Effect of Wick Thermal Conductivity on Startup of a Capillary Pumped Loop . AIAA paper AIAA-99-3446
  • Dupont , V. , Joly , J. L. , Miscevic , M. and Platel , V. 2003 . Capillary Pumped Loop Startup: Effect of the Wick fit on Boiling Incipience . Journal of Thermophysics and Heat Transfer , 17 ( 2 ) : 138 – 144 .
  • Guiping , L. , Li , N. , Bai , L. and Wen , D. 2010 . Experimental Investigation of a Dual Compensation Chamber Loop Heat Pipe . International Journal of Heat and Mass Transfer , 53 : 3231 – 3240 .
  • Nikitkin , M. N. , Bienert , W. B. and Goncharov , K. A. 1998 . Non Condensable Gases and Loop Heat Pipe Operation . SAE paper 981584
  • Anderson , W. G. , Hartenstine , J. R. , Sarraf , D. B. and Tarau , C. 2010 . Intermediate Temperature fluids for Heat Pipes and Loop Heat Pipes . 15th International Heat Pipe Conference (15th IHPC), Clemson, USA , April
  • Singh , R. , Akbarzadeh , A. and Mochizuki , M. 2010 . Operational Characteristics of the Miniature Loop Heat Pipe With Non-Condensible Gases . International Journal of Heat and Mass Transfer , 53 : 3471 – 3482 .
  • Dickey , J. T. and Peterson , G. P. 1994 . Experimental and Numerical Investigation of a Capillary Pumped Loop . Journal of Thermophysics and Heat Transfer , 8 ( 3 ) : 602 – 607 .
  • Muraoka , I. , Ramos , F. M. and Vlassov , V. V. 1998 . Experimental and Theoretical Investigation of a Capillary Pumped Loop With a Porous Element in the Condenser . International Communications in Heat Mass Transfer , 25 ( 8 ) : 1085 – 1094 .
  • Muraoka , I. , Ramos , F. M. and Vlassov , V. V. 2001 . Analysis of Operational Characterstics and Limits of a Loop Heat Pipe With Porous Element in Condenser . International Journal of Heat and Mass Transfer , 44 ( 12 ) : 2287 – 2297 .
  • Kaya , T. and Hoang , T. T. 1999 . Mathematical Modelling of Loop Heat Pipes and Experimental Validation . Journal of Thermophysics and Heat Transfer , 13 ( 3 ) : 314 – 320 .
  • Hoang , T. T. and Kaya , T. 1999 . Mathematical Modelling of Loop Heat Pipes With Two-Phase Pressure Drop . AIAA paper AIAA-99-3448
  • Furukawa , M. 2006 . Model-Based Method of Theroretical Design Analysis of a Loop Heat Pipe . Journal of Thermophysics and Heat Transfer , 20 ( 1 ) : 111 – 121 .
  • Launay , S. , Sartre , V. and Bonjour , J. 2008 . Analytical Model for Characterization of Loop Heat Pipes . Journal of Thermophysics and Heat Transfer , 22 ( 4 ) : 623 – 631 .
  • Cullimore , B. and Baumann , J. 2000 . Steady-State and Transient Loop Heat Pipe Modelling . SAE paper 2000–01-2316
  • Hoang , T. T. and Kaya , T. 2003 . Transient Modelling of Loop Heat Pipes . AIAA paper AIAA-2003-6082
  • Ku , J. High Frequency Low Amplitude Temperature Oscillation in Loop Heat Pipe Operation . 33d International Conference on Environmental Systems, Society of Automotive Engineers, Vancouver, British Columbia, Canada, SAE paper 2003–01-2836 , July, 2003
  • Launay , S. , Platel , V. , Dutour , S. and Joly , J. L. 2007 . Transient Modeling of Loop Heat Pipes for Oscillating Behaviour Study . Journal of Thermophysics and Heat Transfer , 21 ( 3 ) : 487 – 495 .
  • Hoang , T. T. and Ku , J. 2004 . Mathematical Modelling of Loop Heat Pipes With Multiple Capillary Pumps and Multiple Condensers: Part 1—Steady State Simulations . AIAA paper AIAA-2004-5577
  • Hoang , T. T. and Ku , J. 2005 . Mathematical Modelling of Loop Heat Pipes With Multiple Capillary Pumps and Multiple Condensers . AIAA paper AIAA-2005-5682
  • Ku , J. 2006 . Heat Load Sharing in a Loop Heat Pipe With Multiple Evaporators and Multiple Condensers . AIAA paper AIAA-2006-3108
  • North , M. T. , Sarraf , D. B. , Rosenfeld , J. H. , Maidanik , Y. F. and Vershinin , S. 1997 . High Heat flux Loop Heat Pipes . Proceedings of the 6th European Symposium on Space Environmental Control Systems (ESA SP-400) , 1 : 371 – 376 .
  • Adoni , A. A. , Ambirajan , A. , Jasvanth , V. S. , Kumar , D. , Badarinarayana , K. , Bhandari , D. R. and Dutta , P. 2010 . Evaporation Heat Transfer Coeffcient in a Capillary Pumped Loop for Different Working Fluids . 20th National and 9th ISHMT/ASME Heat and Mass Transfer Conference, Mumbai, India, , January
  • Maidanik , Y. F. and Vershinin , S. V. 2009 . Development and Tests of Ammonia Miniature Loop Heat Pipes With Cylindrical Evaporators . Applied Thermal Engineering , 29 : 2297 – 2301 .
  • Singh , R. , Akbarzadeh , A. and Mochizuki , M. 2009 . Effect of Wick Characteristics on the Thermal Performance of the Miniature Loop Heat Pipe . Journal of Heat Transfer , 131 ( 8 ) 08601–1–08601–10
  • Ren , C. and Wu , Q.-S. 2007 . Heat Transfer in Loop Heat Pipes Capillary Wick: Effect Effective Thermal Conductivity . Journal of Thermophysics and Heat Transfer , 21 ( 1 ) : 134 – 140 .
  • Riehl , R. R. and dos Santos , N. 2008 . Loop Heat Pipe Performance Enhancement Using Primary Wick With Circumferential Grooves . Applied Thermal Engineering , 28 : 1745 – 1755 .
  • Pashtukov , V. G. and Maydanik , Y. F. 2007 . Low-Noise Cooling System for PC on the Base of Loop Heat Pipes . Applied Thermal Engineering , 27 : 894 – 901 .
  • Lashley , C. , Krein , S. and Barcomb , P. 1998 . Deployable Radiators—A Multi-Disciplinary Approach . SAE paper 981691
  • Hoang , T. T. 2007 . Mathematical Modeling of Loop Heat Pipes Part II: Secondary Wick Analysis . AIAA paper AIAA-2007-4837
  • Oost , S. V. , Mullender , B. , Bekaert , G. and Legros , J. C. 2002 . “ Secondary Wick Operation Principle and Performance Mapping in LHP and FLHP Evaporators ” . In Space Technology and Applications International Forum–STAIF2002 Edited by: El-Genk , M. S. 94 – 103 .
  • Anderson , W. G. , Dussinger , P. M. , Garner , S. D. , Hartenstine , J. R. and Sarraf , D. B. Loop Heat Pipe Design, Manufacturing, and Testing—An Industrial Perspective . Proceedings of the ASME 2009 Heat Transfer Summer Conference, San Francisco, California USA , July 2009
  • Mishkinis , D. , Ochterbeck , J. M. and Sodtke , C. 2003 . Non-Dimensional Analysis and Scaling Issues in Loop Heat Pipes . AIAA paper AIAA-2003-341
  • Mo , Q. and Liang , J. T. 2006 . A Novel Design and Experimental Study of a Cryogenic Loop Heat Pipe With High Heat Transfer Capability . International Journal of Heat and Mass Transfer , 49 : 770 – 776 .
  • Hoang , T. T. , O’Connell , T. A. , Ku , J. , Butler , C. D. and Swanson , T. D. 2005 . Performance Demonstration of a Hydrogen Advanced Loop Heat Pipe for 20–30K Cryocooling of Far Infrared Sensors . SPIE 12th Cryogenic Optical Systems and Instruments ,
  • Singh , R. , Akbarzadeh , A. and Mochizuki , M. 2010 . Thermal Potential of Flat Evaporator Miniature Loop Heat Pipes for Notebook Cooling . IEEE Transactions on Components and Packaging Technologies , 33 ( 1 ) : 32 – 45 .
  • Carey , V. P. 1992 . Liquid–Vapor Phase Change Phenomena , New York : Taylor & Francis .

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