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A Computer Code for Modeling Physiological Flows

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Author :
Release : 2002
Genre : Blood flow
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis A Computer Code for Modeling Physiological Flows by : Byron Lavon Hansen

Download or read book A Computer Code for Modeling Physiological Flows written by Byron Lavon Hansen. This book was released on 2002. Available in PDF, EPUB and Kindle. Book excerpt:

Modeling Physiology of Crop Development, Growth and Yield

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Author :
Release : 2012
Genre : Technology & Engineering
Kind : eBook
Book Rating : 700/5 ( reviews)

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Book Synopsis Modeling Physiology of Crop Development, Growth and Yield by : Afshin Soltani

Download or read book Modeling Physiology of Crop Development, Growth and Yield written by Afshin Soltani. This book was released on 2012. Available in PDF, EPUB and Kindle. Book excerpt: Model studies focus experimental investigations to improve our understanding and performance of systems. Concentrating on crop modelling, this book provides an introduction to the concepts of crop development, growth, and yield, with step-by-step outlines to each topic, suggested exercises and simple equations. A valuable text for students and researchers of crop development alike, this book is written in five parts that allow the reader to develop a solid foundation and coverage of production models including water- and nitrogen-limited systems.

Simulation of Physiological Flows

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Author :
Release : 2008
Genre :
Kind : eBook
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Book Synopsis Simulation of Physiological Flows by : Alejandro Roldán-Alzate

Download or read book Simulation of Physiological Flows written by Alejandro Roldán-Alzate. This book was released on 2008. Available in PDF, EPUB and Kindle. Book excerpt:

Three-dimensional Physiological Flow Simulation on Multi-box Computational Domains

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Author :
Release : 2003
Genre :
Kind : eBook
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Book Synopsis Three-dimensional Physiological Flow Simulation on Multi-box Computational Domains by :

Download or read book Three-dimensional Physiological Flow Simulation on Multi-box Computational Domains written by . This book was released on 2003. Available in PDF, EPUB and Kindle. Book excerpt: The fluid flow phenomena in biological systems are typically complex. The complexity is originated from, for example, non-Newtonian behavior of body fluids, complicated geometry, as well as the interaction of muscle and fluid. With the advent of modern computational technology, both in hardware and software, gradually these problems can be resolved. The present research illustrates two such examples. Grid generation is a branch of applied mathematics that is essential for conducting numerical simulation of fluid flow. In this research, a new grid generation technique is developed and implemented in a flow solver. This technique enables one to perform grid generation for complex geometry using only a single computational zone. Fluid flow can then be analyzed without iteration between zones. The scheme is based on the composite transformation of an algebraic mapping and a mapping governed by the Laplace equation. The governing equations for the grid generation are derived first and then solved numerically. The scheme used for solving the grid generating equations is an extension of the traditional three-dimensional Douglass-Gunn scheme. Areas of extension include the inclusion of mixed derivative terms as well as first-order derivative terms. A unique feature of the proposed grid generation scheme is the concept of multi-box computational domains. In this scheme, the physical domain is mapped onto a geometry composed of many boxes in the computational space, rather than a single box as the traditional method does. The numerical solution routine is adjusted accordingly to accommodate this new feature. Grids were generated for two model geometries using the proposed grid generation software. The graft model features one inflow conduit and two outflow conduits, while the left atrium (LA) model has four inflow conduits and one outflow conduit. Flow simulation was performed using the research code INS3D, which employs the method of artificial compressibility. This method transforms the Navier-Stokes equations into a hyperbolic-parabolic set by adding to them pseudo-pressure gradient terms. The scheme is then marched along the pseudo-time axis, until the velocity field becomes divergence-free. For the flow simulation in side the graft, the effect of Reynolds number and flow-division ratio is examined ... In summary, the present research demonstrates applications of computational fluid dynamics technique in the analysis of flow in biological system. A new grid generation technique is realized, and proved to be very useful in simulating these flows. Flow simulation results provide insights into the system and may be of use for clinic reference.

Applied Mathematical Models in Human Physiology

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Author :
Release : 2004-02-01
Genre : Medical
Kind : eBook
Book Rating : 393/5 ( reviews)

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Book Synopsis Applied Mathematical Models in Human Physiology by : Johnny T. Ottesen

Download or read book Applied Mathematical Models in Human Physiology written by Johnny T. Ottesen. This book was released on 2004-02-01. Available in PDF, EPUB and Kindle. Book excerpt: This book introduces mathematicians to real applications from physiology. Using mathematics to analyze physiological systems, the authors discuss models reflecting current research in cardiovascular and pulmonary physiology. In particular, they present models describing blood flow in the heart and the cardiovascular system, as well as the transport of oxygen and carbon dioxide through the respiratory system and a model for baroreceptor regulation. This is the only book available that analyzes up-to-date models of the physiological system at several levels of detail; both simple 'real-time' models that can be directly used in larger systems, and more detailed 'reference' models that show the underlying physiological mechanisms and provide parameters for and validation of simpler models. The book also covers two-dimensional modeling of the fluid dynamics in the heart and its ability to pump, and includes a discussion of modeling wave-propagation throughout the systemic arteries.

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