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Topology Optimization Theory for Laminar Flow: Applications in Inverse Design of

Description: Topology Optimization Theory for Laminar Flow by Zhenyu Liu, Yongbo Deng, Yihui Wu Estimated delivery 3-12 business days Format Hardcover Condition Brand New Description This book presents the topology optimization theory for laminar flows with low and moderate Reynolds numbers, based on the density method and level-set method, respectively. Publisher Description This book presents the topology optimization theory for laminar flows with low and moderate Reynolds numbers, based on the density method and level-set method, respectively. The density-method-based theory offers efficient convergence, while the level-set-method-based theory can provide anaccurate mathematical expression of the structural boundary. Unsteady, body-force-driven and two-phase properties are basic characteristics of the laminar flows. The book discusses these properties, which are typical of microfluidics and one of the research hotspots in the area of Micro-Electro-Mechanical Systems (MEMS), providing an efficient inverse design approach for microfluidic structures. To demonstrate the applications of this topology optimization theory in the context of microfluidics, it also investigates inverse design for the micromixer, microvalve and micropump, which are key elements in lab-on-chip devices. Author Biography Yongbo Deng received the Ph.D. degree in mechanical engineering from University of Chinese Academy of Sciences, in June of 2012. From July of 2012, he began his Assistant Professor position, in State Key Laboratory of Applied Optics (SKLAO), Changchun Institute of Optics, Fine Mechanics and Physics (CIOMP), Chinese Academy of Sciences. In September of 2014, he derived his Associate Professor position in the same laboratory. During this period, he ever worked in IMTEK, University of Freiburg, for his research collaboration on electromagnetic metamaterial. In May of 2016, he derived the Guest Professor Fellowship from Karlsruhe Institute of Technology (KIT) for his outstanding research on topology optimization-based inverse design methodology. His research interests are topology optimization-based inverse design method with applications in the areas of microfluidics and photonics, and the fabrication processes of MEMS devices. Area of work: Simulation and optimization in hydrodynamics and mechanics Partial differential equation constrained optimization problem and inverse problem, especially topology optimization, shape optimization and optimal control methods, design and manufacture of MEMS devices, especially the microstructure, microfluidics and photonic devices Finite element method (Galerkin finite element, mixed finite element, multiscale finite element, vector finite element) Yihui Wu received her PhD degree from Changchun Institute of Optics, Fine Mechanics and Physics (CIOMP), Chinese Academy of Sciences (CAS) in 1996. She has been a professor of CIOMP since 1999 and now she is a distinguished professor of CAS. She is the group leader of Micro/Nano research in CIOMP. Her research interests are high speed flywheel, spectrometer, Lab-on-a-chip and label-free photonic/phononic biosensors and super resolution imaging. Zhenyu Liu received the Ph.D. degree in mechanical engineering from Dalian University of Technology, Dalian, China, in 2000, and Habilitation and Privatdozent from Department of Microsystems Engineering, University of Freiburg, Freiburg, Germany in 2009. From 2000 to 2009, he was a research assistant and a group leader in the Department of Microsystems Engineering, University of Freiburg, Freiburg, Germany. Since 2009, he has served for Changchun Institute of Optics, Fine Mechanics and Physics (CIOMP), Chinese Academy of Sciences, Changchun, China. His research interests are the simulation and optimization of devices in MEMS. Details ISBN 9811046867 ISBN-13 9789811046865 Title Topology Optimization Theory for Laminar Flow Author Zhenyu Liu, Yongbo Deng, Yihui Wu Format Hardcover Year 2017 Pages 250 Edition 1st Publisher Springer Verlag, Singapore GE_Item_ID:137562091; About Us Grand Eagle Retail is the ideal place for all your shopping needs! With fast shipping, low prices, friendly service and over 1,000,000 in stock items - you're bound to find what you want, at a price you'll love! Shipping & Delivery Times Shipping is FREE to any address in USA. Please view eBay estimated delivery times at the top of the listing. Deliveries are made by either USPS or Courier. We are unable to deliver faster than stated. International deliveries will take 1-6 weeks. NOTE: We are unable to offer combined shipping for multiple items purchased. This is because our items are shipped from different locations. Returns If you wish to return an item, please consult our Returns Policy as below: Please contact Customer Services and request "Return Authorisation" before you send your item back to us. Unauthorised returns will not be accepted. Returns must be postmarked within 4 business days of authorisation and must be in resellable condition. Returns are shipped at the customer's risk. We cannot take responsibility for items which are lost or damaged in transit. For purchases where a shipping charge was paid, there will be no refund of the original shipping charge. Additional Questions If you have any questions please feel free to Contact Us. Categories Baby Books Electronics Fashion Games Health & Beauty Home, Garden & Pets Movies Music Sports & Outdoors Toys

Price: 197.03 USD

Location: Fairfield, Ohio

End Time: 2024-10-26T02:17:34.000Z

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Topology Optimization Theory for Laminar Flow: Applications in Inverse Design of

Item Specifics

Restocking Fee: No

Return shipping will be paid by: Buyer

All returns accepted: Returns Accepted

Item must be returned within: 30 Days

Refund will be given as: Money Back

ISBN-13: 9789811046865

Type: NA

Publication Name: NA

Book Title: Topology Optimization Theory for Laminar Flow : Applications in Inverse Design of Microfluidics

Number of Pages: Xi, 250 Pages

Language: English

Publisher: Springer

Publication Year: 2017

Topic: Mechanics / Fluids, Mechanics / General, Mechanical, Topology, Applied, Optimization

Illustrator: Yes

Genre: Mathematics, Technology & Engineering, Science

Item Weight: 183.7 Oz

Author: Yongbo Deng, Zhenyu Liu, Yihui Wu

Item Length: 9.3 in

Item Width: 6.1 in

Format: Hardcover

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