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Forward: There Are Still Plenty of Opportunities On the Boundaries

机译:前进:边界上仍有大量机会

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Abstract This is the second of the two special issues of Electronic Journal of Boundary Elements in honor of Professor Frank Rizzo. There are thirteen technical papers in this issue, contributed by Professor Rizzo?¢a??a?¢s colleagues, friends and former students. These papers cover a broad range of topics in the boundary integral equation and boundary element method (BIE/BEM), including Galerkin BEM for anisotropic elasticity (Gray, Griffith, et al.), evaluations of hypersingular integrals in Galerkin BEM (Bonnet and Guiggiani), Green?¢a??a?¢s function BEM for bimaterials (Denda), new 3-D Green?¢a??a?¢s functions for piezoelectric bimaterials (Pan), new formulations using local integral equations (Sladek and Sladek), BEM in sensitivity analysis with stress concentrations (Burczynski and Habarta), fracture of thermopiezoelectric materials (Qin), BEM for 3-D gradient elastodynamics (Polyzos, Tsepoura and Beskos), time-domain large-scale elastodynamic analysis (Yoshikawa and Nishimura), acoustic BEM for analyzing mufflers and silencers (Wu and Cheng), analysis of solids with randomly distributed inclusions (Yao, Kong and Zheng), thermal and stress analyses of thermal barrier coatings (Lu and Dong), and finally, modeling of carbon nanotube-based composites (Liu and Chen). These authors are gratefully acknowledged for their excellent contributions, and for their patience and cooperation in the process of preparing this special issue. It is interesting to note that the wide applications of the elasticity BIE/BEM in engineering all started with a simple idea. That is, boundary-value problems can be solved by boundary-only methods. The first result in this direction is also amazingly concise. During a recent trip to Urbana, Illinois, I checked out Professor Rizzo?¢a??a?¢s Ph.D. dissertation from the UIUC library. The thirty-page dissertation is without doubt a masterpiece that many current and future Ph.D. candidates may like to follow, for its originality and succinct writing. The dissertation laid a solid foundation for what is now called the BEM for elasticity and many other problems, and eventually led to the seminal paper of 1967. Behind this masterpiece are Professor Rizzo?¢a??a?¢s affection and conviction in the BIE/BEM and his willingness to explore a different route in research. This spirit of exploration and his serious attitude in research have inspired and influenced many of his former students and colleagues in the last forty years. Researchers in the pursuit of boundary-only methods can be described as explorers in a Flatland (see Professor Rizzo?¢a??a?¢s article in Issue No. 1). They can have different perspectives, but can also discover treasures that others could not uncover. As younger researchers come into this playground, new breakthroughs, just like the one made by Professor Rizzo in the 1960s, may not be far away. There will certainly be more innovative boundary-only methods emerging in the near future. More special numerical tools will be developed and more emerging problems will be solved by these new modeling tools. The fields of computational mechanics will be further diversified and thus prosperous. There are still plenty of opportunities on the boundaries!
机译:摘要这是为纪念弗兰克·里佐(Frank Rizzo)教授撰写的两本《边界元素电子杂志》的第二期。本期共有13篇技术论文,由Rizzo?a?a?a?的同事,朋友和以前的学生提供。这些论文涵盖了边界积分方程和边界元方法(BIE / BEM)的广泛主题,包括各向异性弹性的Galerkin BEM(Gray,Griffith等),Galerkin BEM中超奇异积分的评估(Bonnet和Guiggiani)。 ),用于双材料的Green?a?a?a函数BEM(Denda),用于压电双材料的新3-D Green?a?a?a?α函数(Pan),使用局部积分方程的新公式(Sladek和Sladek),具有应力集中的BEM(Burczynski和Habarta),热压电材料(Qin)的断裂,用于3-D梯度弹性动力学的BEM(Polyzos,Tsepoura和Beskos),时域大规模弹性动力学分析(Yoshikawa和Nishimura),用于消音器和消音器的声学BEM(Wu和Cheng),具有随机分布的夹杂物(Yao,Kong和Zheng)的固体分析,隔热层(Lu和Dong)的热应力分析,最后是建模碳纳米管基钴专家(刘和陈)。非常感谢这些作者的杰出贡献,以及他们在准备本期特刊过程中的耐心与合作。有趣的是,弹性BIE / BEM在工程中的广泛应用都是从一个简单的想法开始的。即,可以通过仅边界方法解决边界值问题。在这个方向上的第一个结果也非常简洁。在最近去伊利诺伊州厄巴纳的旅行中,我检查了里佐(Rizzo?a?a?a?)教授的博士学位。论文从UIUC库。三十页的论文无疑是许多当前和未来博士学位论文的杰作。候选人可能会喜欢它的新颖性和简洁性。这篇论文为现在所谓的弹性和许多其他问题的边界元法奠定了坚实的基础,并最终导致了1967年的开创性论文。在这部杰作的背后是里佐·阿扎阿教授(Rizzo?a?a?a?) BIE / BEM及其愿意探索另一条研究途径。在过去的四十年中,这种探索的精神和他认真的研究态度激励并影响了他的许多前学生和同事。追求纯边界方法的研究人员可谓是在平地地区的探索者(请参阅第1期Rizzo?a?a?a教授的文章)。他们可以有不同的观点,但也可以发现别人无法发现的宝藏。当年轻的研究人员进入这个操场时,就像里佐教授在1960年代所做的那样,新的突破可能并不遥远。在不久的将来,肯定会出现更多创新的仅边界方法。这些新的建模工具将开发更多特殊的数值工具,并解决更多新出现的问题。计算力学的领域将进一步多样化,从而繁荣起来。边界上仍然有很多机会!

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