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毕业论文网 > 任务书 > 机械机电类 > 过程装备与控制工程 > 正文

顺应型(conformed shape)吸附天然气储罐设计任务书

 2020-05-05 08:05  

1. 毕业设计(论文)的内容和要求

1. 题目背景及意义,应主要包括:吸附天然气(ANG)研究背景和意义;吸附天然气储罐的工作条件和要求;顺应型储罐介绍,顺应型储罐和CNG,LNG储罐的区别 2. 顺应型吸附天然气储罐(conformable tank或ANG tank)设计,应主要包括:应用3D建模软件(AutoCAD或SolidWorks或Pro/E或UG等)设计储罐,建立储罐的三维模型 3. 储罐工作应力分析:应用有限元软件(SolidWorks或ANSYS)对储罐进行应力分析 4. 储罐预算说明:储罐的加工制造预算

2. 参考文献

[1] Kelly, E., Wood, M., 2012, ”Cautious optimism for growth seen in US natural gas market,” Hydrocarbon Processing [2] Jerry, L. A., Leonard, J. B., Agoston, J., ”Storage of Methane and Freon by Interstitial van der Waals Confinement,” Science, 296(5577), pp. 2367-2369 [3] P. Pfeifer, F. Ehrburger-Dolle, T. P. Rieker, M. T. Gonz#225;lez, W. P. Hoffman, M. Molina-Sabio, F. Rodr#237;guez-Reinoso, P. W. Schmidt, and D. J. Voss, 2002, ”Nearly Space-Filling Fractal Networks of Carbon Nanopores,” Phys. Rev. Lett., 88(11), 5502 [4] Y. Ginzburg, 2006, ”ANG Storage as a technological solution for the ”chicken-and-egg” problem of NGV refueling infrastructure development,” 232rd World Gas Conference, Amsterdam [5] W. Young and R. Budynas, 2002, Roark#8217;s Formulas for Stress and Strain. 7th ed., McGraw-Hill, New York, NY, Chap. 13 [6] Kleinlogel, A., 1952, ”Rigid frame formulas: explicit formulas of all statistical quantities for those single-panel frames which occur in practical steel, reinforced concrete, and timber constructuion,” 1st Edition. New York F. Ungar Pub. Co. [7] M.Starczewaki, 1981, ”Non-Circular Pressure Vessels,” British Engine Technical Report, XIV, pp. 62-88. [8] ASME, 2001, ”ASME boiler and pressure vessel code section VIII,” Division 1, Appendix 13. [9] M. D. Blair, D G. Turner, R. K. Kunz, M. J. Wrner, K. W. Davis, F. E. Wolcott and J. D. Bennett, 1996, ”Composite conformable pressure vessel,” U.S. Patent 5577630 [10] M. D. Blair, D G. Turner, R. K. Kunz, M. J. Wrner, K. W. Davis, F. E. Wolcott and J. D. Bennett, 2000, ”Composite conformable pressure vessel,” U.S. Patent 6095367 [11] M. D. Blair, D G. Turner, R. K. Kunz, M. J. Wrner, K. W. Davis, F. E. Wolcott and J. D. Bennett, 2010, ”Composite conformable pressure vessel,” U.S. Patent Re41142E [12] A. Haaland, 2000, ”High-Pressure Conformable Hydrogen Storage for Fuel Cell Vehicles,” Proceedings of the 2000 Hydrogen Program Review, Thiokol Propulsion, Brigham City, NREL/CP-570-28890 [13] M. H. Ogle, R. L. Jones and S. D. Smith, 1998, ”Development of conformable fuel tanks for natural gas vehicles,” 220504/1/98, The Welding Institute, Abington [14] H. Ogasa, M. Oku, D. Vangundy, ”Performance Evaluation of an Automobile Utilizing an Adsorbed Natural Gas Tank.” Honda RD Co., Ltd. [15] P. Buckley, ”ANG Tank Design and Fuel Delivery System,” 2005, Midwest Research Institute, Kansas City [16] R. P. Graham, 1998, ”Low-cost Conformable Storage to maximize vehicle range,” NREL/SR-540-23579, Thiokol Aerospace Industrial Technologies, Golden [17] Dubinin M.M., 1960, ”The potential theory of adsorption of gases and vapors for sorbents with energetically nonuni- form surfaces,” Chem. Rev. 60, pp. 235#8211;241 [18] Paveliev V.T., 1948, ”Methane sorption by the active car-bons at high pressures,” Proc. Acad. Sci. USSR 62 (6), pp. 779#8211;782 (in Russian) [19] Braslaw J., Nasea J., and Golowoy A., 1981, ”Low Pressure Methane Storage System for Vehicles: Preliminary Concept Evolution,” Ford Motor Co., Deaborn, MI, pp. 261#8211; 270. [20] Cook T.L., Komodromos C., Quinn D.F., and Ragan S., 1996, ”A low pressure natural gas vehicle storage system, in: Proc. of the 1996 Windsor Workshop on Alternative Fuels,” Toronto, Canada, pp. 159#8211;167. [21] Komodromos C., Fricker N., Slater G., 1994, ”Development of noncylindrical tanks for low pressure adsorbed natural gas storage in vehicles, in: 4th Biennial International Con ference and Exhibition on Natural Gas Vehicles,” Toronto, Canada, pp. 11#8211;22. [22] Cook T.L., Horne D.B., 1997, ”Low pressure adsorbed natural gas vehicle demonstration,” in: Proc. 20th World Gas Conference, Copenhagen, Denmark, pp. 31#8211;41. [23] J. Blachut, K. Magnucki, 2008, ”Strength, stability, and optimization of pressure vessels: review of selected problems,” Applied Mechanics Reviews. 61,060801-1-33. [24] J. S. Liu, G.T. Parks, and P. J. Clarkson, 2001, ”Shape optimisation of axisymmetric cylindrical nozzles in spherical pressure vessels subject to stress constraints,” International Jounal of Pressure and Piping. 78, pp. 1-9. [25] K. Magnucki, W. Szyc, and J. Lewinski, 2002, ”Minimization of stress concentration factor in cylindrical pressure vessels with ellipsoidal heads,” International Journal of Pressure Vessels and Piping. 79, pp. 841#8211;846. [26] K. Magnucki, J. Lewinski, 2000, ”Fully stressed head of a pressure vessel,” Thin-Walled Structures, 38, pp. 167-178. [27] L. Zhu, J. T. Boyle, 2000, ”Optimal Shapes for Axisymmetric Pressure Vessels: A Brief Overview,” Journal of Pressure Vessel Technology, 122, pp. 443-449 [28] R.C. Carbonari, P.A. Mu#241;oz-Rojas, and E.Q. Andrade, 2011, ”Design of pressure vessels using shape optimization: An integrated approach,” International Journal of Pressure Vessels and Piping. 88, pp. 198-212. [29] A. I. Borovkov, D. S. Mikhaluk, 2002, ”Finite Element Stress Analysis and Multi-parameter Optimization of a High-pressure Vessel,” Proc. 10th Int. ANSYS#8217;2002 Conf., Pittsburgh. USA [30] J. Blachut, K. Magnucki, 2008, ”Strength, stability, and optimization of pressure vessels: review of selected problems,” Applied Mechanics Reviews, 61, 060801-1-33. [31] K. Magnucki, W. Szyc, and J. Lewinski, 2002, ”Minimization of stress concentration factor in cylindrical pressure vessels with ellipsoidal heads,” International Journal of Pressure Vessels and Piping, 79, pp. 841#8211;846. [32] J. Lewinski, 2010, ”Shaping of a Head of Cylindrical Pressure Vessel,” XXIV Symposium Vibrations in Physical Systems, Boznan #8211; Bedlewo [33] P. Pfeifer, 2007, ”Clean Vehicles: From Agricultural Waste to High-Tech Storage Tanks,” KC Press Conference, Kansas City. [34] P. Pfeifer, 2011, ”Advanced Natural Gas Fuel Tank Project,” Natural Gas Vehicle Technology Forum, San Francisco. [35] T. Fowler, 2012, ”America, Start Your Natural-Gas Engines,” The Wall Street Journal, from http://online.wsj.com/article/ [36] J. S. Arora, 2004, Introduction to Optimum Design, 2nd ed., Elsevier Academic Press, San Diego, CA. Chap. 15. [37] R. Kannan and C. Monma, 1978 ”On the computational complexity of integer programming problems,” In Henn, R., Korte, B., and Oettli, W., editors, Optimization and Operations Research, volume 157 of Lecture Notes in Economics and Mathematical Systems, pp. 161#8211;172. [38] A. R. Conn, K. Scheinberg, and L. N. Vicente, 2008, Introduction to derivative free optimization. SIAM, Philadelphia. [39] C. D. Ambrosio, A. Lodi, 2011, ”Mixed integer nonlinear programming tools: a practical overview,” 4OR-Q J Oper Res, 9, pp. 329#8211;349. [40] A.H. Land, A. G. Doig, 1960, ”An automatic method of solving discrete programming problems,” Econometrica, 28(3), pp.497#8211;520. [41] I. Quesada, I.E. Grossmann, 1992, ”An LP/NLP based branch and bound algorithm for convex MINLP optimization problems,” Computers Chemical Engineering, 16(10-11), pp. 937#8211;947. [42] H.S. Ryoo, N.V. Sahinidis, 1995, ”Global optimization of nonconvex NLPs and MINLPs with applications in process design,” Computers Chemical Engineering, 19(5), pp. 551-556 [43] P. Belotti, C. Kirches, S. Leyffer, J. Linderoth, J. Luedtke, and A. Mahajan, 2012,”Mixed-Integer Nonlinear Optimization,” ANL/MCS-P3060-1121, Mathematics And Computer Science Division, Argonne National Laboratory, Argonne. [44] G. Liuzzi, S. Lucidi, and F. Rinaldi, 2011, ”Derivative-free methods for bound constrained mixed-integer optimization,” Comput Optim Appl, 53(2), pp. 505-526 [45] H. H. Hoc, 1980, ”Topological Optimization Of Networks: A Nonlinear Mixed Integer Model Employing Generalized Benders Decomposition,” IEEE Transactions on Automatic Control, 27, pp. 164-169 [46] C. S. Adjiman, I. P. Androulakis, and C. A. Floudas, 2000, ”Global Optimization of Mixed-Integer Nonlinear Problems,” AIChE Journal, 46(9), pp. 1769-1797 [47] O. K. Gupta, A. Ravindran, 1985, ”Branch and Bound Experiments in Convex Nonlinear Integer Programming,”, Management Science, 31(12), pp. 1533-1546 [48] M. Duran, I. E. Grossmann, 1986, ”An outer-approximation algorithm for a class of mixed-integer nonlinear programs,” Math Program, 36, pp. 307#8211;339 [49] A. M. Geoffrion, 1972, ”Generalized Benders decomposition,” J Optim Theory Appl, 10, PP. 237#8211;260 [50] Abaqus 6.11 Documentation [51] All-craft.missouri.edu

3. 毕业设计(论文)进程安排

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