1.張博超、施立宏、林弘杰,2023,潛艦自主逃生球體上浮過程運動計算模擬,第三十五屆中國造船暨輪機工程研討會暨國科會成果發表會,桃園,6月17日。
2.張博超,2020,潛艦逃生與救援系統探討與建制規劃初探,科技部補助專題研究計畫報告(編號:MOST 108-2218-E-992-317-026),國立高雄科技大學造船及海洋工程系。
3.蔡柔安,2021,歷年潛艦事故與潛艦逃生救援現況之探討,國立高雄科技大學造船及海洋工程系,碩士論文。4.Howaldtswerke-Deutsche Werft, HABETaS® An unrivalled rescue solution for submariners, ThyssenKrupp Marine Systems GmbH.
5.Gabler, Ulrich, 1996, Unterseebootbau, Bernard & Graefe Verlag, Bonn, Germany.
6.ThyssenKrupp Marine System, 2013, HABETaS-An Innovative Rescue System for Submarine Crews, Defence Procurement International, Defence Procurement International Ltd..
7.Stewart, Nick, 2008, Submarine escape and rescue: a brief history, Journal of Military and Veterans’ Health, vol. 17, no. 1, pp. 27-28, Australian Military Medicine Association, October.
8.Maritime DC & PPE Information Center, Retrieved from https://dcfpnavymil.org/.
9.Koh Hock Seng, Chew Yixin, Ng Xinyun, 2010, Submarine Rescue Capability and its Challenges, DSTA HORIZONS, no. 6, pp. 4-15, Defence Science and Technology Agency, June.
10.LaPenna, Joshua J., 2009, Surfacing Rescue Container Concept Design for Trident Submarines, Massachusetts Institute of Technology, Master thesis.
11.Abels, F., 1984, Die Aufstiegskugel als Rettungssystem fuer Unterseeboote, Jahrbuch der Schiffbautechnischen Gesellschaft 78, Schiffbautechnischen Gesellschaft.
12.Abels, F., Niessen, E., 1984, Das druckfeste Schott im U-Boot, Sonderdruck aus Schiff & Hafen, vol.36, no.3, pp. 32-37, Helften 1 bis, March.
13.Lei Zhang, Shiyao Lin, Chizhong Wang, De Xie, Jianglong Sun, 2017, A direct analysis approach for ejection problem of the independent escape capsule, Ocean Engineering 145, pp. 95-111, Elsevier, November.
14.黄祥兵、黄兴玲、董云飞,2013,潜艇集体逃生舱上浮水动力性能,海军工程大学学报, 25卷, 3期,頁216~219,海军工程大学,6月。
15.张元盛,2006,集体救生球技术研究,华中科技大学,硕士论文。
16.余小平,2006,逃生舱装艇技术之研究,武汉理工大学,硕士论文。
17.茅云生,2006,集体逃生舱總体性能之研究,武汉理工大学,硕士论文。
18.孙斌、黄祥兵,2020,潜艇大型集体逃生舱上浮速度控制仿真计算,中国舰船研究,15卷, S1期,頁43~51,海军工程大学舰船与海洋学院,12月。
19.Tadd T. Truscott, Brenden P. Epps, and Randy H. Munns, 2016, Water exit dynamics of buoyant spheres, Physical Review Fluids, vol. 1, American Physical Society, November.
20.H. K. Versteeg, W. Malalasekera, 2007, An introduction to computational fluid dynamics: the finite volume method, Pearson education, Harlow, England.
21.ANSYS, Inc., 2022, Ansys Fluent Theory Guide, Release 2022 R2.
22.A. Warey, T. Han, S. Kaushik, 2021, Inverstigation of Numerical Diffusion in Aerodynamic Flow Simulations with Physic Informed Neural Networks.
23.V.michalcová, K. Kotrasová, 2020, The numerical diffusion effect on the cfd simulation accuracy of velocity and temperature field for the application of sustainable architecture methodology, Sustainability, vol. 12, no. 23, pp. 10173, MDPI, December.
24.余健明,2016,應用計算流體力學方法探討潛體流體動力係數及操縱性能之研究,國立臺灣大學工程科學及海洋工程學系,碩士論文。25.Courant, R., Friedrichs, K., Lewy, H., 1928, Über die partiellen Differenzengleichungen der mathematischen Physik, Mathematische Annalen, vol. 100, no. 1, pp. 32-74, Springer New York, Germany, December.
26.孫幫成,李明高,2014,ANSYS FLUENT 14.0 仿真分析與優化設計,機械工業出版社,北京。
27.Sandoval, P., Cornejo, P., & Tinapp, F., 2015, Evaluating the longitudinal stability of an UAV using a CFD-6DOF model, Aerospace Science and Technology, vol. 43, pp. 463-470, Elsevier, June.
28.张杨,2019,Fluent 动网格05:6 DOF模型,安世亚太科技股份有限公司。
29.录十六,2016,3D中的平移和缩放变换,檢自http://blog.lu16.com/?id=25。
30.ANSYS, Inc., 2022, Ansys Fluent User’s Guide, Release 2022 R2.
31.Ansys, ANSYS in Action-Overset Mesh, Retrieved from https://www.youtube.com/watch?v=_Cryhe7L3uw&ab_channel=Ansys.
32.Cimbala, John M., Yunus A. Cengel, 2020, Fluid Mechanics: Fundamentals and Applications, McGraw-Hill Education, New York.
33.Darvish, Manoochehr, 2015, Numerical and experimental investigations of the noise and performance characteristics of a radial fan with forward-curved blades, Technische Universität Berlin, PhD dissertation.
34.Hirt, C.W., Nichols, B.D., 1981, Volume of fluid (VOF) method for the dynamics of free boundaries, Journal of Computational Physics, vol. 39, no. 1, pp. 201-225, Elsevier, January.
35.Patankar, S.V., Spalding, D.B., 1972, A Calculation Procedure for Heat, Mass and Momentum Transfer in Three-Dimensional Parabolic Flows, International Journal of Heat and Mass Transfer, vol. 15, no. 10, pp. 1787-1806, Elsevier, October.
36.P. J. Boache, 1994, Perspective: A Method for Uniform Reporting of Grid Refinement Studies, ASME Journal of Fluids Engineering, vol. 116, no 3, pp 405-413, The American Society of Mechanical Engineers, September.
37.ITTC, 2002, Recommended Procedures Resistance Uncertainty Analysis, Example for Resistance Test, 23th International Towing Tank Conference, Venice, Italia, September, pp. 2.
38.Stern F, Wilson R, Shao J., 2006, Quantitative V&V of CFD simulations and certification of CFD codes, International Journal for Numerical Method in Fluids, vol. 50, no. 11, pp. 1335-1355, John Wiley & Sons, Ltd., November.
39.ITTC, 2008, Recommended Procedures and Guidelines Uncertainty Analysis in CFD Verification and Validation Methodology and Procedures, 24th International Towing Tank Conference, Edinburgh, UK, September, pp. 1-13.
40.康振,國立編譯館,2013,實用造船學,大中國圖書公司,新北。