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FLOW-3D | 多相流多物理仿真
FLOW‑3D 是高精度多相流 CFD 仿真软件,依托**Tru‑VOF 自由液面追踪**与**FAVOR 几何表征**两大核心算法,擅长求解复杂三维瞬态自由液面流动问题,助力工程人员完成产品仿真验证与方案迭代,优化设计方案,有效压缩研发周期、降低实物试验成本。
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HYDRO | 水利土木环境分析软件
FLOW-3D HYDRO 是专为土木、水利、环境、海洋工程打造的专业 CFD 建模解决方案,结合尾矿、多相流及浅水模型的最新技术发展,聚焦多相流相关工程问题的高效精准仿真。
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M-Star CFD | 生物化工行业搅拌混合分析软件
M-Star 是一款现代计算流体动力学 (CFD) 软件,为科学家和工程师提供第一原理建模工具,可生成与测量数据在功能上无差别的预测结果。
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Fine Marine | 船舶CFD计算软件
面向船舶设计师和工程师的CFD 软件
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CharLES | 高保真仿真软件
Fidelity CharLES 是高保真计算流体动力学 (CFD) 求解器,可将大涡模拟 (LES) 的实际应用扩展到航空航天、汽车和涡轮机械的广泛工程应用。它旨在应对最棘手的流体动力学挑战,可准确预测气动声学、空气动力学、燃烧、传热和多相方面 CFD 的传统复杂问题。
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Fidelity CFD | 旋转机械CFD软件
全面适用于轴流压缩机/涡轮、离心压缩机、向心涡轮、水泵、通风机的CFD软件
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ISED | 综合能源规划仿真软件
ISED(Integrated System Energy Designer)是对综合能源系统和微电网进行能源规划和技术经济分析的专业仿真工具。软件覆盖电、热、冷、蒸汽、氢能等能源场景。
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HOMER | “源网荷储一体化”系统分析软件
HOMER 是美国可再生能源实验室开发出来的产品,有Pro、Grid、Front三个版本,可用于独立微电网到分布式发电和大型公共事业电站,优化混合电力系统的价值,拥有精确、灵活、稳健的技术经济模拟。
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HOMER Pro | 风光储系统设计与优化软件
HOMER Pro是一款方便易用的微电网软件。从大型地面电站和分布式发电到独立微电网,优化混合电力系统的价值,拥有精确、灵活、稳健的技术经济模拟.
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gPROMS | 新一代工艺过程、仿真、设计、优化平台
一款工艺设备及流程进行仿真建模及设计优化的新一代通用过程模拟平台。在gPROMS产品系列中涵盖了化工行业流程模拟、反应器分离器详细设计、生命科学、食品制药、能源电力、油气行业、污水处理、燃料电池等相关专业模块工具,同时外部接口的存在使用户在调用其他软件特征功能时起到事半功倍的效果。
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MGMS | 数字化综合能源管控软件
西门子数字化综合能源管控平台MGMS是西门子基于数字孪生技术打造的用户侧能源生产与使用相结合的多能流综合能源管控系统。依托于机理模型和数据模型,对系统内的分布式能源设备,能源转换设备(公用动力系统),各类负荷,以及储能设备建立起数学模型,通过人工智能(机器学习)的手段,实现对系统的能源预测(负荷预测 / 发电预测),通过数据处理、模型训练、动态预测和策略优化等一系列步骤,完成对系统内各设备的优化调度,参数优化等高级功能,实现优化运行目标。
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Celsius EC | 电子产品热仿真软件
Celsius EC Solver (原名 6SigmaET)旨在帮助电子系统设计师快速准确地解决电子产品散热管理问题。Celsius EC Solver 利用强大的计算引擎和网格划分技术,助力设计人员对复杂的设计进行建模和分析,不仅可以降低产品失效风险,还可以优化热管理解决方案,最大程度地提升性能
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FLOW-3D--航空航天--参考文献
以下是FLOW-3D在航空航天工业应用方面的论文。
26-23 Jason Hartwig, Narottama Esser, Shreykumar Jain, David Souders, Allen Prasad Varghese, Angelantonio Tafuni, CFD design and analysis of a perforated plate for the control of cryogenic flow under reduced gravity, AIAA Scitech Forum, 2023. doi.org/10.2514/6.2023-0133
78-22 Timothy Aaron Blackman, Propellant optimization for a pulsed solid propellant thruster system for small satellites, Thesis, Florida Institute of Technology, 2022.
10-22 Nathan F. Andrews, Shane B. Coogan, Ellen Smith, Oliver Ouyang, Stephen Reiman, Brian Pincock, Bryan Munro, A three-dimensional, quick-running analysis method for large amplitude liquid slosh and bulk fluid motion in flight vehicles, AIAA Scitech Forum, AAIA 2022-0071, 2022. doi.org/10.2514/6.2022-0071
98-21 Pengxiang Hu, Zhihua Zhao, Shutao Yang, Yaoxiang Zeng, Feng Qi, Study on equivalent sloshing mass locations for liquid-filled cylindrical tanks, Journal of Spacecraft and Rockets, 2021. doi.org/10.2514/1.A35098
62-20 Zhang Dazhi, Meng Li, Li Yong-Qiang, Numerical simulation analysis of liquid transportation in capsule-type vane tank under microgravity, Microgravity Science and Technology, 32.3, 2020. doi.org/10.1007/s12217-020-09811-1
107-19 Martin Konopka, Extension of a standard flow solver for simulating phase change in cryogenic tanks, Journal of Thermophysics and Heat Transfer, 33.3, 2019. doi.org/10.2514/1.T5546
79-19 Baotang Zhuang, Yong Li, Jintao Liu, and Wei Rui, Numerical simulation of fluid transport along parallel vanes for vane type propellant tanks, Microgravity Science and Technology, 32; pp. 129-138, 2019. doi.org/10.1007/s12217-019-09746-2
54-19 Robert E. Manning, Ian Ballinger, Manoj Bhatia, and Mack Dowdy, Design of the Europa Clipper propellant management device, AIAA Propulsion and Energy 2019 Forum, Indianapolis, IN, USA, August 19-22, 2019: Proceedings, 2019. doi.org/10.2514/6.2019-3858
48-19 Lei Wang, Tian Yan, Jiaojiao Wang, Shixuan Ye, Yanzhong Li, Rui Zhuan, and Bin Wang, CFD investigation on thermodynamic characteristics in liquid hydrogen tank during successive varied-gravity conditions, Cryogenics, 103; 102973, 2019. doi.org/10.1016/j.cryogenics.2019.102973
1-18 Martin Konopka, Extension of a standard flow solver for simulating phase change in cryogenic tanks, AIAA 2018-1818: AIAA Aerospace Sciences Meeting, Kissimmee, FL, USA, January 8-12, 2018. doi.org/10.2514/6.2018-1818
64-17 Shane Coogan, Grant Musgrove, Preliminary analysis method for large amplitude liquid slosh in air-launched space launch vehicles, 53rd AIAA/SAE/ASEE Joint Propulsion Conference, Session: Propellant Feed and Fluid Management II, Atlanta, GA, USA, July 10-12, 2017. doi.org/10.2514/6.2017-5006
69-16 Philipp Behruzi, Francesco De Rose, Coupling sloshing, GNC and rigid body motions during ballistic flight phases, Propulsion and Energy Forum, 52nd AIAA/SAE/ASEE Joint Propulsion Conference, Salt Lake City, UT, USA, July 25-27, 2016.
55-16 Martin Konopka, Peter Noeding, Jörg Klatte, Philipp Behruzi, Jens Gerstmann, Anton Stark, Nicolas Darkow, Analysis of LN2 filling, draining, stratification and sloshing experiments, 46th AIAA Fluid Dynamics Conference, Washington, D.C. USA, 2016. doi.org/10.2514/6.2016-4272
95-15 D. Frank, Control of fluid mass center in the Gravity Probe B space mission Dewar, Classical and Quantum Gravity, 32.22; 224011, 2015. doi.org/10.1088/0264-9381/32/22/224011 Available in shared drive: Aerospace
Sebastian Schmitt, Michael E. Dreyer, Free surface oscillations of liquid hydrogen in microgravity conditions, Cryogenics, 72.1; pp. 22-35, 2015. doi.org/10.1016/j.cryogenics.2015.07.004
55-15 53-15 Jeffrey Moder, Kevin Breisacher, Preliminary simulations of the ullage dynamics in microgravity during jet mixing portion of tank pressure control experiments, 51st AIAA/SAE/ASEE Joint Propulsion Conference, AIAA 2015-3853, 2015. doi.org/10.2514/6.2015-3853
52-15 Philipp Behruzi, Diana Gaulke, Joerg Klatte, Nicolas Fries, Adam Butt, Development of the MPCV ESM propellant tanks, 51st AIAA/SAE/ASEE Joint Propulsion Conference, AIAA 2015-4157, 2015. doi.org/10.2514/6.2015-4157
51-15 Grant Musgrove, Shane Coogan, Validation and rules-of-thumb for computational predictions of liquid slosh dynamics, 51st AIAA/SAE/ASEE Joint Propulsion Conference, Orlando, FL, USA, July 27-29, 2015.
23-15 Eckart Fuhrmann, Michael Dreyer, Steffen Basting, Eberhard Bänsch, Free surface deformation and heat transfer by thermocapillary convection, Heat and Mass Transfer, 52; pp. 855-876, 2016. doi.org/10.1007/s00231-015-1600-9
9-15 Zhicheng Zhou, Hua Huang, Constraint surface model for large amplitude sloshing of the spacecraft with multiple tanks, Acta Astronautica, 111; pp. 222-229, 2015. doi.org/10.1016/j.actaastro.2015.02.023
43-14 C. Ludwig and M.E. Dreyer, Investigations on thermodynamic phenomena of the active-pressurization process of a cryogenic propellant tank, Cryogenics (2014), doi: http://dx.doi.org/10.1016/j.cryogenics.2014.05.005.
40-14 M. Berci, S. Mascetti; A. Incognito, P. H. Gaskell, and V. V. Toropov, Dynamic Response of Typical Section Using Variable-Fidelity Fluid Dynamics and Gust-Modeling Approaches—With Correction Methods, Journal of Aerospace Engineering, © ASCE, ISSN 0893-1321/04014026(20), May 2014.
22-14 M. Lazzarin, M. Biolo, A. Bettella, M. Manente, R. DaForno, and D. Pavarin, EUCLID satellite: Sloshing model development through computational fluid dynamics, Aerospace Science and Technology, JID:AESCTE AID:3040 /FLA, Available online 12 April 2014.
75-13 Carina Ludwig and Michael Dreyer, Analyses of Cryogenic Propellant Tank Pressurization based upon Experiments and Numerical Simulations, 5TH EUROPEAN CONFERENCE FOR AERONAUTICS AND SPACE SCIENCES (EUCASS), Munich, Germany, 1-5 July 2013
49-13 Damien Theureau, Astrium; Jean Mignot, French Space Agency (CNES); Sebastien Tanguy, Fluid Mechanics Institute of Toulouse (IMFT), Integration of low g sloshing models with spacecraft attitude control simulators, Chapter DOI: 10.2514/6.2013-4961, August 2013.
44-13 Philipp Behruzi, Jörg Klatte and Gaston Netter, Passive Phase Separation in Cryogenic Upper Stage Tanks, 49th AIAA/ASME/SAE/ASEE Joint Propulsion Conference, July 14 – 17, 2013, San Jose, CA.
43-13 Philipp Behruzi, Jörg Klatte, Nicolas Fries, Andreas Schütte, Burkhard Schmitz and Horst Köhler, Cryogenic Propellant Management Sounding Rocket Experiments on TEXUS 48, 49th AIAA/ASME/SAE/ASEE Joint Propulsion Conference, July 14 – 17, 2013, San Jose, CA.
113-12 M. Lazzarin, M. Biolo, A. Bettella, and R. Da Forno, EUCLID Mission: Theoretical Sloshing Model and CFD Comparison, 48th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, 30 July – 01 August 2012, Atlanta, Georgia
34-12 N. Fries , P. Behruzi, T. Arndt, M. Winter, G. Netter, U. Renner, Modelling of fluid motion in spacecraft propellant tanks – Sloshing, Space Propulsion 2012 conference, 7th-10th May 2012, Bordeaux
55-11 P. Behruzi, F. de Rose, P. Netzlaf, H. Strauch, Ballistic Phase Management for Cryogenic Upper Stages, DGLR Conference, Bremen, Germany, 2011
11-11 Philipp Behruzi, Hans Strauch, and Francesco de Rose, Coasting Phase Propellant Management for Upper Stages, 38th COSPAR Scientific Assembly, 18-15 July 2010, Bremen, Germany. PowerPoint presentation.
73-10 Amber Bakkum, Kimberly Schultz, Jonathan Braun, Kevin M Crosby, Stephanie Finnvik, Isa Fritz, Bradley Frye, Cecilia Grove, Katelyn Hartstern, Samantha Kreppel and Emily Schiavone, Investigation of Propellant Sloshing and Zero Gravity Equilibrium for the Orion Service Module Propellant Tanks, Wisconsin Space Conference, Yingst, R. A., & Wisconsin Space Grant Consortium. (2010). Dawn of a new age: 20th Annual Wisconsin Space Conference, August 19-20, 2010. Green Bay, Wis: Wisconsin Space Grant Consortium; University of Wisconsin-Green Bay.
35-10 Kevin Breisacher and Jeffrey Moder, Computational Fluid Dynamics (CFD) Simulations of Jet Mixing in Tanks of Different Scales, NASA/TM—2010-216749
21-10 Berci M., Mascetti S., Incognito A., Gaskell P.H., Toropov V.V., Gust Response of a Typical Section Via CFD and Analytical Solutions, V European Conference on Computational Fluid Dynamics, ECCOMAS CFD 2010, Lisbon, Portugal, 14-17 June 2010 (A companion PowerPoint presentation in pdf format is available upon request)
49-08 Jens Gerstmann, Michael Dreyer, et al., Dependency of the apparent contact angle on nonisothermal conditions, PHYSICS OF FLUIDS 20, 042101 (2008)
35-07 N. Fries, K. Odic and M. Dreyer, Wicking of Perfectly Wetting Liquids into a Metallic Mesh, Proceedings of the 2nd International Conference on Porous Media and its Applications in Science and Engineering, ICPM2, Kauai, Hawaii, USA, June 17-21, 2007
08-07 Gary Grayson, Alfredo Lopez, Frank Chandler, Leon Hastings, Ali Hedayat, and James Brethour, CFD Modeling of Helium Pressurant Effects on Cryogenic Tank Pressure Rise Rates in Normal Gravity, 43rd AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit, © 2007 by The Boeing Company. Published by the American Institute of Aeronautics and Astronautics, Inc. with permission. AIAA 2007-5524, 8 – 11 July 2007
34-06 Phillipp Behruzi, Mark Michaelis and Gaël Khimeche, Behavior of the Cryogenic Propellant Tanks during the First Flight of the Ariane 5 ESC-A Upper Stage, 42nd AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, 9-12 July 2006, Sacramento, California, © 2006 by the American Institute of Aeronautics and Astronautics, Inc. All rights reserved.
12-06 G. D. Grayson, A. Lopez, F. O. Chandler, L. J. Hastings, S. P. Tucker, Cryogenic Tank Modeling for the Saturn AS-203 Experiment, AIAA 2006-5258, presented at the 42nd AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit, July 9-12, 2006, Sacramento, CA.
29-02 O. Bayle, V. L’Hullier, M. Ganet, P. Delpy, J.L. Francart and D. Paris, Influence of the ATV Propellant Sloshing on the GNC Performance, AIAA Guidance, Navigation, and Control Conference and Exhibit, Monterey, California, 5-8 August 2002, © 2002 by EADS Launch Vehicles
42-01 C. Figus and L. Ounougha, Correlations between Neutral Buoyancy Tests and CFD, Spacecraft Propulsion, Third International Conference held 10-13 October, 2000 at Cannes, France. European Space Agency ESASP-465, 2001, p.547
24-01 Hiroshi Nishino, Shujiro Sawai, & Katsumi Furukawa, Prediction of Sloshing Dynamics in Spinning Spherical Tanks, Mitsubishi Heavy Industry, The Institute of Space and Astronautical Science 9th Workshop on Astrodynamics and Flight Mechanics (1999)
5-96 D. J. Frank, Dynamics of Superfluid Helium in Low-Gravity: A Progress Report, Advanced Technology Center, Lockheed Martin Missiles & Space, Palo Alto, CA 94304, USA, To be published in Proceedings of 1996 NASA/JPL Microgravity Low Temperature Physics Workshop, April 1996
7-95 G. D. Grayson, Coupled Thermodynamic-Fluid-Dynamic Solution for a Liquid Hydrogen Tank, Journal of Spacecraft and Rockets, Vol. 32, No. 5, September-October 1995
5-94 G. Ross, Dynamics of Superfluid Helium in Low Gravity, dissertation submitted to Dept. Mech. Engrg. and Committee on Graduate Studies of Stanford University for Ph.D. degree, July 1994
9-93 N. H. Hughes, Numerical Stability Problem Encountered Modeling Large Liquid Mass in Micro Gravity, The Boeing Company, presented at the AAS/AIAA Astrodynamics Specialist Conference, Victoria, B.C., Canada, August 16-19, 1993
8-93 G. D. Grayson and J. Navickas, Interaction Between Fluid-Dynamic and Thermodynamic Phenomena in a Cryogenic Upper Stage, McDonnell Douglas, AIAA-93-2753, presented at the AIAA 28th Thermophysics Conference, Orlando, FL, July 6-9, 1993
7-93 G. Grayson and E. DiStefano, Propellant Acquisition for Single Stage Rocket Technology, McDonnell Douglas, AIAA-93-2283, presented at the AIAA/SAE/ASME/ASEE 29th Joint Propulsion Conference and Exhibit, Monterey, CA, June 28-30, 1993
6-93 Y. Letourneur and J. Sicilian, Propellant Reorientation Effects on the Attitude of the Main Cryotechnic Stage of Ariane V, Aerospatiale, Les Mureaux and Flow Science Inc, presented at the AIAA/SAE/ASME/ASEE 29th Joint Propulsion Conference and Exhibit, Monterey, CA, June 28-30, 1993
9-91 G. P. Sasmal, J. I. Hochstein, M. C. Wendl, Washington University and T. L. Hardy, NASA Lewis Research Center, Computational Modeling of the Pressurization Process in a NASP Vehicle Propellant Tank Experimental Simulation, (AIAA 91-2407), AIAA/SAE/ASME/ASEE 27th Joint Propulsion Conference, Sacramento, CA, June 24-26, 1991
8-91 M. F. Fisher, G. R. Schmidt, and J. J. Martin, Analysis of Cryogenic Propellant Behavior in Microgravity and Low Thrust Environments, NASA-Marshall Space Flight Center, AIAA/SAE/ASME/ASEE 27th Joint Propulsion Conference, Sacramento, CA, June 24-26, 1991
15-90 T. L. Hardy and T. M. Tomasik, Prediction of the Ullage Gas Thermal Stratification in a NASP Vehicle Propellant Tank Experimental Simulation Using FLOW-3D, NASA Technical Memorandum 103217, NASA-Lewis Research Center, Cleveland, OH, July 1990
6-90 J. Navickas, McDonnell Douglas Space Systems Co., Huntington Beach, CA and P.Y. Cheng, McDonnell Douglas Aircraft Co., St. Louis, MO, Effect of Propellant Sloshing on the Design of Space Vehicle Propellant Storage Systems, presented at the 26th AIAA/SAE/ASME/ASEE Joint Propulsion Conference, Orlando World Center, Orlando, FL, July 16-18, 1990
1-90 S. M. Dominick and J. R. Tegart, Fluid Dynamics and Thermodynamics of a Low Gravity Liquid Tank Filling Method, AIAA 28th Aerospace Sciences Meeting, AAIA-90-0509, Reno, NV, January 1990.
9-89 S. Lin and D. K. Warinner, FLOW-3D Analysis of Pressure Responses in an Enclosed Launching System, presented at the Symposium on Computational Experiments, PVP ASME Conference, Honolulu, HI, July 22-27, 1989
1-89 J. Navickas, E. C. Cady, and J. L. Ditter, Suspension of Solid Particles in the Aerospace Plane’s Slush Hydrogen Tanks, McDonnell Douglas Astronautics Co. report, Huntington Beach, CA, 1988, presented at the Symposium on Computational Experiments, PVP ASME Conference, Honolulu, HI, July 22-27, 1989
11-88 J. Navickas, Prediction of a Liquid Tank Thermal Stratification by a Finite Difference Computing Method, presented to AIAA/ASEE/ASME/SAE 24th Joint Propulsion Conference, Boston, MA, 11-14 July 1988
10-88 J. Navickas, Space-Based System Disturbances Caused by On-Board Fluid Motion During System Maneuvers, presented to 1st National Fluid Dynamics Congress, Cincinnati, OH, July 24-28, 1988
9-88 J. Navickas, E. C. Cady, and T. L. Flaska, Modeling of Solid-Liquid Circulation in the National Aerospace Plane’s Slush Hydrogen Tanks, Advanced Propulsion, Advanced Technology Center, McDonnell Douglas Astronautics Co., Huntington Beach, CA, May 24, 1988
3-88 J. M. Sicilian and C. W. Hirt, Nozzle/Case Joint Analysis with CFD Analysis Using the FLOW-3D Program, in Redesigned Solid Rocket Motor Circumferential Flow Technical Interchange Meeting Final Report, NASA-TWR-17788, February 1988
5-87 J. J. Der and C.L. Stevens, Liquid Propellant Tank Ullage Bubble Deformation and Breakup in Low Gravity Reorientation, AIAA/SAE/ASME/ASEE 23rd Joint Propulsion Conference, San Diego, Calif., June 1987 (AIAA-87-2021)
3-87 J. Navickas and J. Ditter, Effect of the Propellant Storage Tank Geometric Configuration on the Resultant Disturbing Forces and Moments during Low-Gravity Maneuvers, McDonnell Douglas Astronautics report, MDAC H2589, April 1987, presented at 1987 ASME Winter Annual Meeting
1-87 J. J. Der and C. L. Stevens, Low-Gravity Bubble Reorientation in Liquid Propellant Tanks, AIAA 25th Aerospace Sciences Meeting, Reno, Nevada, January 12-15, 1987 (AIAA-87-0622)
7-86 J. Navickas, C. R. Cross, and D. D. Van Winkle, Propellant Tank Forces Resulting from Fluid Motion in a Low-Gravity Field, ASME Symposium in Microgravity Fluid Mechanics, Winter Annual Meeting, Anaheim, CA, December 7-12, 1986
6-86 J. Navickas and C. R. Cross, Some Typical Applications of the HYDR3D Code, FLOW-3D Experience Conference, Redondo Beach, California, November 6-7, 1986
5-86 R. E. Martin, Effects of Transient Propellant Dynamics on Deployment of Large Liquid Stages in Zero-Gravity with Application to Shuttle-Centaur, 37th Annual Astronautical Congress, Innsbruck, Austria, Oct. 3-10, 1986 (IAF-86-119), Acta Astronautical Vol. 15, No. 6/7, pp. 331-340, 1987
6-85 John I. Hochstein, Computational Prediction of Propellant Motion During Separation of a Centaur G-Prime Vehicle from the Shuttle, NASA report, Washington University, St. Louis, MO, December 1985 (WU/CFDL-85/1)
4-85 T. W. Eastes, Y. M. Chang, C. W. Hirt, and J. M. Sicilian, Zero-Gravity Slosh Analysis, ASME Winter Annual Meeting, Miami, Florida, November 1985
3-84 J. M. Sicilian and C. W. Hirt, Numerical Simulation of Propellant Sloshing for Spacecraft, ASME Winter Annual Meeting, New Orleans, LA, December 9-14, 1984































