Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear

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Release : 2012-10-02
Genre : Science
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Book Rating : 767/5 ( reviews)

Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear write by Timm Krüger. This book was released on 2012-10-02. Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear available in PDF, EPUB and Kindle. The rheology of dense red blood cell suspensions is investigated via computer simulations based on the lattice Boltzmann, the immersed boundary, and the finite element methods. The red blood cells are treated as extended and deformable particles immersed in the ambient fluid. In the first part of the work, the numerical model and strategies for stress evaluation are discussed. In the second part, the behavior of the suspensions in simple shear flow is studied for different volume fractions, particle deformabilities, and shear rates. Shear thinning behavior is recovered. The existence of a shear-induced transition from a tumbling to a tank-treading motion is demonstrated. The transition can be parameterized by a single quantity, namely the effective capillary number. It is the ratio of the suspension stress and the characteristic particle membrane stress. At the transition point, a strong increase in the orientational order of the red blood cells and a significant decrease of the particle diffusivity are observed. However, the average cell deformation shows no signature of the transition.

Computational Blood Cell Mechanics

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Release : 2018-09-06
Genre : Mathematics
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Book Rating : 66X/5 ( reviews)

Computational Blood Cell Mechanics - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Computational Blood Cell Mechanics write by Ivan Cimrak. This book was released on 2018-09-06. Computational Blood Cell Mechanics available in PDF, EPUB and Kindle. Simulating blood cells for biomedical applications is a challenging goal. Whether you want to investigate blood flow behavior on the cell scale, or use a blood cell model for fast computational prototyping in microfluidics, Computational Blood Cell Mechanics will help you get started, and show you the path forward. The text presents a step-by-step approach to cell model building that can be adopted when developing and validating models for biomedical applications, such as filtering and sorting cells, or examining flow and deformations of individual cells under various conditions. It starts with basic building-blocks that, together, model the red blood cell membrane according to its physical properties, before moving on to discuss several issues that may pose problems along the way, and finally leads to suggestions on how to set up computational experiments. More details available at www.compbloodcell.eu

Computational Science – ICCS 2019

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Release : 2019-06-07
Genre : Computers
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Book Rating : 340/5 ( reviews)

Computational Science – ICCS 2019 - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Computational Science – ICCS 2019 write by João M. F. Rodrigues. This book was released on 2019-06-07. Computational Science – ICCS 2019 available in PDF, EPUB and Kindle. The five-volume set LNCS 11536, 11537, 11538, 11539, and 11540 constitutes the proceedings of the 19th International Conference on Computational Science, ICCS 2019, held in Faro, Portugal, in June 2019. The total of 65 full papers and 168 workshop papers presented in this book set were carefully reviewed and selected from 573 submissions (228 submissions to the main track and 345 submissions to the workshops). The papers were organized in topical sections named: Part I: ICCS Main Track Part II: ICCS Main Track; Track of Advances in High-Performance Computational Earth Sciences: Applications and Frameworks; Track of Agent-Based Simulations, Adaptive Algorithms and Solvers; Track of Applications of Matrix Methods in Artificial Intelligence and Machine Learning; Track of Architecture, Languages, Compilation and Hardware Support for Emerging and Heterogeneous Systems Part III: Track of Biomedical and Bioinformatics Challenges for Computer Science; Track of Classifier Learning from Difficult Data; Track of Computational Finance and Business Intelligence; Track of Computational Optimization, Modelling and Simulation; Track of Computational Science in IoT and Smart Systems Part IV: Track of Data-Driven Computational Sciences; Track of Machine Learning and Data Assimilation for Dynamical Systems; Track of Marine Computing in the Interconnected World for the Benefit of the Society; Track of Multiscale Modelling and Simulation; Track of Simulations of Flow and Transport: Modeling, Algorithms and Computation Part V: Track of Smart Systems: Computer Vision, Sensor Networks and Machine Learning; Track of Solving Problems with Uncertainties; Track of Teaching Computational Science; Poster Track ICCS 2019 Chapter “Comparing Domain-decomposition Methods for the Parallelization of Distributed Land Surface Models” is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com.

High Performance Computing in Science and Engineering ' 17

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Release : 2018-02-16
Genre : Computers
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Book Rating : 942/5 ( reviews)

High Performance Computing in Science and Engineering ' 17 - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook High Performance Computing in Science and Engineering ' 17 write by Wolfgang E. Nagel. This book was released on 2018-02-16. High Performance Computing in Science and Engineering ' 17 available in PDF, EPUB and Kindle. This book presents the state-of-the-art in supercomputer simulation. It includes the latest findings from leading researchers using systems from the High Performance Computing Center Stuttgart (HLRS) in 2017. The reports cover all fields of computational science and engineering ranging from CFD to computational physics and from chemistry to computer science with a special emphasis on industrially relevant applications. Presenting findings of one of Europe’s leading systems, this volume covers a wide variety of applications that deliver a high level of sustained performance.The book covers the main methods in high-performance computing. Its outstanding results in achieving the best performance for production codes are of particular interest for both scientists and engineers. The book comes with a wealth of color illustrations and tables of results.

Multiscale Modeling of Vascular Dynamics of Micro- and Nano-particles

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Release : 2020-01-02
Genre : Science
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Book Rating : 928/5 ( reviews)

Multiscale Modeling of Vascular Dynamics of Micro- and Nano-particles - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Multiscale Modeling of Vascular Dynamics of Micro- and Nano-particles write by Huilin Ye. This book was released on 2020-01-02. Multiscale Modeling of Vascular Dynamics of Micro- and Nano-particles available in PDF, EPUB and Kindle. Recent advances witness the potential to employ nanomedicine and game-changing methods to deliver drug molecules directly to diseased sites. To optimize and then enhance the efficacy and specificity, the control and guidance of drug carriers in vasculature has become crucial. Current bottlenecks in the optimal design of drug carrying particles are the lack of knowledge about the transport of particles, adhesion on endothelium wall and subsequent internalization into diseased cells. To study the transport and adhesion of particle in vasculature, the authors have made great efforts to numerically investigate the dynamic and adhesive motions of particles in the blood flow. This book discusses the recent achievements from the establishment of fundamental physical problem to development of multiscale model, and finally large scale simulations for understanding transport of particle-based drug carriers in blood flow.