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This monograph contains expert knowledge on complex fluid-flows in microfluidic devices. The topical spectrum includes, but is not limited to, aspects such as the analysis, experimental characterization, numerical simulations and numerical optimization. The target audience primarily comprises researchers who intend to embark on activities in microfluidics. The book can also be beneficial as supplementary reading in graduate courses.
This book presents the proceedings of IBEREO 2019. This conference addresses the most recent trends in rheology with a special emphasis on both basic science and industrial applications. Papers presented cover different perspectives, like experimental, theoretical and numerical. Topics include Microfluidics and microrheology, Food, Cosmetics and Pharmaceutical Products; Suspensions and Colloids; Rheometry and Experimental Methods; and Polymers and Biopolymers.
Shear Thickening Fluid: Case Studies in Engineering provides a set of case studies and research data on the cutting-edge technology of shear thickening fluid (STF) to assist readers with understanding the adaptive behavior of STF in different engineering applications. Various engineering designs are adapted by including STF to take advantage of this smart material in the areas of protective structures, energy-absorbing systems, vibration-damping devices, and surface finishing operations. A companion volume to the book Shear Thickening Fluid: Theory and Applications, this volume will be a valuable reference for practicing engineers, researchers, and scientists working in advanced materials, smart structures, and intelligent engineering applications.
Microfluidics represent great potential for chemical processes design, development, optimization, and chemical engineering bolsters the project design of industrial processes often found in large chemical plants. Together, microfluidics and chemical engineering can lead to a more complete and comprehensive process. Process Analysis, Design, and Intensification in Microfluidics and Chemical Engineering provides emerging research exploring the theoretical and practical aspects of microfluidics and its application in chemical engineering with the intention of building pathways for new processes and product developments in industrial areas. Featuring coverage on a broad range of topics such as design techniques, hydrodynamics, and numerical modelling, this book is ideally designed for engineers, chemists, microfluidics and chemical engineering companies, academicians, researchers, and students.
What Is Microfluidics Microfluidics refers to the behavior, precise control, and manipulation of fluids that are geometrically constrained to a small scale at which surface forces dominate volumetric forces. It is a multidisciplinary field that involves engineering, physics, chemistry, biochemistry, nanotechnology, and biotechnology. It has practical applications in the design of systems that process low volumes of fluids to achieve multiplexing, automation, and high-throughput screening. Microfluidics emerged in the beginning of the 1980s and is used in the development of inkjet printheads, DNA chips, lab-on-a-chip technology, micro-propulsion, and micro-thermal technologies. How You Will B...
O que é microfluídica Microfluídica refere-se ao comportamento, controle preciso e manipulação de fluidos que são geometricamente restritos a uma pequena escala na qual as forças de superfície dominam as forças volumétricas. É um campo multidisciplinar que envolve engenharia, física, química, bioquímica, nanotecnologia e biotecnologia. Tem aplicações práticas no projeto de sistemas que processam baixos volumes de fluidos para obter multiplexação, automação e triagem de alto rendimento. A microfluídica surgiu no início da década de 1980 e é usada no desenvolvimento de cabeçotes de impressão a jato de tinta, chips de DNA, tecnologia lab-on-a-chip, micropropulsão e t...
マイクロフルイディクスとは マイクロフルイディクスとは、表面力が体積力を支配する小規模に幾何学的に拘束された流体の動作、正確な制御、および操作を指します。それは、工学、物理学、化学、生化学、ナノテクノロジー、およびバイオテクノロジーを含む学際的な分野です。少量の流体を処理して多重化、自動化、およびハイスループットスクリーニングを実現するシステムの設計に実用的なアプリケーションがあります。マイクロフルイディクスは1980年代の初めに登場し、インクジェットプリントヘッド、DN...