Download e-book for kindle: Fluid Mechanics: Problems and Solutions by Joseph H. Spurk

By Joseph H. Spurk

ISBN-10: 3540616527

ISBN-13: 9783540616528

This choice of over two hundred distinct labored workouts provides to and enhances the textbook "Fluid Mechanics" via an identical writer, and, even as, illustrates the instructing fabric through examples. The routines revolve round utilizing the basic ideas of "Fluid Mechanics" to procure suggestions to different concrete difficulties, and, in so doing, the scholars' ability within the mathematical modelling of functional difficulties is built. moreover, 30 not easy questions with no certain ideas were incorporated. whereas academics will locate those questions appropriate for examinations and checks, scholars themselves can use them to envision their figuring out of the topic.

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Extra resources for Fluid Mechanics: Problems and Solutions

Sample text

84]), contacting and mixing in a serpentine channel, flow characteristics in bubbly flow, and separation by geometry and surface properties using capillary forces. Ehrfeld et al. [85] and Klemm et al. [69] describe the extraction process in microstructured equipment. The main problem in microstructured extraction devices is the phase separation as the final step of the process. Recently, Okubo et al. [86] presented the rapid extraction process on a chip. TeGrotenhuis et al. [87] developed micro devices for transport processes in solvent extraction.

3. Surface effects are treated in many circumstances within this book and play a major role in transport and systems behavior. With decreasing length, not only the material properties change, but also the operation and efficiency of unit operations is affected in various ways. The miniaturization of chemical equipment mostly emphasizes the length reduction of the main 14 1 Micro Process Engineering – An Interdisciplinary Approach Fig. 5. Typical length scales of material properties and behavior in gas, liquid, and solid phase as well as interfacial phenomena.

The viscosity influences linearly the pressure loss and is less important in short, curved channels with many internals. Within short microchannels, not only is the pressure loss low, but also precipitation or polymerization of various chemicals are possible. The latter is already introduced in industrial production [44] at Idemitsu Kosan C. , Chiba, Japan, with a capacity of 10 tons PMMA per year. Here, the emulsification and proper mixing of the immiscible reactants are the main issue in designing and operating the microstructured equipment.

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Fluid Mechanics: Problems and Solutions by Joseph H. Spurk

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