| 查看: 114 | 回复: 2 | ||
| 【奖励】 本帖被评价2次,作者armea增加金币 1.5 个 | ||
| 当前主题已经存档。 | ||
[资源]
Entropy Based Design and Analysis of Fluids Engineering Systems
|
||
|
By Greg F. Naterer, Jose A. Camberos Publisher: CRC Number Of Pages: 344 Publication Date: 2008-02-27 ISBN-10 / ASIN: 0849372623 ISBN-13 / EAN: 9780849372629 Binding: Hardcover From engineering fluid mechanics to power systems, information coding theory and other fields, entropy is key to maximizing performance in engineering systems. It serves a vital role in achieving the upper limits of efficiency of industrial processes and quality of manufactured products. Entropy based design (EBD) can shed new light on various flow processes, ranging from optimized flow configurations in an aircraft engine to highly ordered crystal structures in a turbine blade. Entropy Based Design of Fluid Engineering Systems provides an overview of EBD as an emerging technology with applications to aerospace, microfluidics, heat transfer, and other disciplines. The text extends past analytical methods of Entropy Generation Minimization to numerical simulations involving more complex configurations and experimental measurement techniques. The book begins with an extensive development of basic concepts, including the mathematical properties of entropy and exergy, as well as statistical and numerical formulations of the second law. It then goes on to describe topics related to incompressible flows and the Second Law in microfluidic systems. The authors develop computational and experimental methods for identifying problem regions within a system through the local rates of entropy production. With these techniques, designers can use EBD to focus on particular regions where design modifications can be made to improve system performance. Numerous case studies illustrate the concepts in each chapter, and cover an array of applications including supersonic flows, condensation and turbulence. A one-of-a-kind reference, Entropy Based Design of Fluid Engineering Systems outlines new advances showing how local irreversibilities can be detected in complex configurations so that engineering devices can be re-designed locally to improve overall performance. http://www.mediafire.com/?msxwcdyggxm http://rapidshare.com/files/109425090/EntBasDeAnFluEnSycrvc.rar.html |
» 猜你喜欢
二苯甲酮亚胺的合成
已经有1人回复
聚左旋乳酸的作用与机制:从胶原再生到组织修复
已经有0人回复
有机高分子材料论文润色/翻译怎么收费?
已经有149人回复
可生物降解聚酯聚己内酯的性能分析与发展趋势
已经有0人回复
带膜支架的膜和支架之间的结合力如何测试
已经有2人回复
西交利物浦大学奖学金博士招生(生物传感或机器学习方向)
已经有1人回复
南方科技大学招收金属材料方向博士生
已经有23人回复
可降解聚酯材料在医疗器械中的应用趋势与创新方向
已经有0人回复
可降解微球如何提升药物精准治疗效果
已经有0人回复
静电纺丝膜分层问题
已经有0人回复
什么脱膜剂可以完全清洗干净啊?
已经有2人回复













回复此楼