Free Download G. Dresen, Ove Stephansson, "Rock Damage and Fluid Transport, Part I" English | 2006 | pages: 275 | ISBN: 3764377119 | PDF | 7,0 mb Mechanical properties and fluid transport in rocks are intimately linked as deformation of a solid rock matrix immediately affects the pore space and permeability. This may result in transient or permanent changes of pore pressures and effective pressures causing rock strength to vary in space and time. Fluid circulation and deformation processes in crustal rocks are coupled, producing significant complexity of mechanical and fluid transport behavior. This often poses severe technical and economic problems for reservoir and geotechnical engineering projects involved in oil and gas production, CO2 sequestration, mining and underground waste disposal. For example, the depletion of hydrocarbon and water reservoirs leading to compaction may have adverse effects on well production. Solution/precipitation processes modify porosity and affect permeability of aquifers and reservoir rocks. Fracture damage from underground excavation will critically influence the long-term stability and performance of waste storage. Free Download Proceedings of 16th Asian Congress of Fluid Mechanics by L. Venkatakrishnan English | EPUB | 2021 | 555 Pages | ISBN : 9811551820 | 158.4 MB Free Download Building Fluid Solvers For Computer Graphics Part 2 Published 4/2024 Created by Anas Alaa MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch Genre: eLearning | Language: English | Duration: 44 Lectures ( 7h 44m ) | Size: 3 GB Free Download Building Fluid Solvers For Computer Graphics Part 1 Published 4/2024 MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz Language: English | Size: 1.89 GB | Duration: 7h 3m Learn how fluid solvers are built from scratch without prior knowledge. This first course covers all the math needed. Free Download Michael Torzewski, Karl J. Lackner, Jürgen Bohl, "Integrated Cytology of Cerebrospinal Fluid" English | 2010 | pages: 92 | ISBN: 364209502X, 3540758844 | PDF | 3,7 mb Cytologic examination of the cerebrospinal fluid is a technically simple, yet productive, diagnostic procedure. Here is a practical guide to this method, as used in the diagnosis of different pathologies. High-quality slides depict the common cerebrospinal fluid cell types, cell anomalies in inflammatory conditions and neoplastic and non-neoplastic disorders, and cases with contaminants. It's required reading for pathologists, as well as neurologists and neurosurgeons. Free Download Rashid Hasan, "Fluid Flow and Heat Transfer in Wellbores, 2nd Edition: Textbook 16" English | ISBN: 1613995458 | 2020 | 416 pages | EPUB | 19 MB Addressing both steady and unsteady-state fluid flow and related heat-transfer problems, the Second Edition of Fluid Flow and Heat Transfer in Wellboresstrikes the perfect balance between theory and practice to aid understanding. Three new chapters on application of theory have been added and include probing pressure traverse in various wellbore multiphase fluid-flow situations, estimating flow rates from temperature data, translating off-bottom transient-pressure data to that at the datum depth, and a detailed discussion around newly discovered wellbore safety and integrity issues. Fundamental aspects of drilling, fluid circulation, and production operations form the foundation of this update of the 2002 original publication. Free Download Smart Systems with Shear Thickening Fluid English | 2024 | ISBN: 3031535693 | 116 Pages | PDF EPUB (True) | 41 MB Shear thickening fluid (STF) is a smart material that has been widely used in engineering applications over the last two decades. Its smart behavior, including adaptive viscosity, has found use in many engineering fields. This book provides an introduction to STF and smart systems, presenting cutting-edge technology and offering various case studies and research. It examines how conventional structures or systems can gain smart properties with the integration of STF, such as in magnetorheological materials, energy harvesting applications, battery electrolytes, vibration-damping systems, and surface polishing operations. Free Download New Results in Numerical and Experimental Fluid Mechanics XII: Contributions to the 21st STAB/DGLR Symposium, Darmstadt, Germany, 2018 by Andreas Dillmann English | PDF | 2020 | 862 Pages | ISBN : 3030252523 | 170.41 MB This book gathers contributions to the 21st biannual symposium of the German Aerospace Aerodynamics Association (STAB) and the German Society for Aeronautics and Astronautics (DGLR). The individual chapters reflect ongoing research conducted by the STAB members in the field of numerical and experimental fluid mechanics and aerodynamics, mainly for (but not limited to) aerospace applications, and cover both nationally and EC-funded projects. Free Download Introduction to Nonlinear Fluid-Plasma Waves by Bhimsen K. Shivamoggi English | PDF | 1988 | 213 Pages | ISBN : 9024736625 | 11.8 MB A variety of nonlinear effects occur in a plasma. First, there are the wave steepening effects which can occur in any fluid in which the propagation speed depends upon the wave-amplitude. In a dispersive medium this can lead to classes of nonlinear waves which may have stationary solutions like solitons and shocks. Because the plasma also acts like an inherently nonlinear dielectric resonant interactions among waves lead to exchange of energy among them. Further, an electromagnetic wave interacting with a plasma may parametrically excite other waves in the plasma. A large-amplitude Langmuir wave undergoes a modulational instability which arises through local depressions in plasma density and the corresponding increases in the energy density of the wave electric field. Whereas a field collapse occurs in two and three dimensions, in a one-dimensional case, spatially localized stationary field structures called Langmuir solitons can result. Many other plasma waves like upper-hybrid waves, lower-hybrid waves etc. can also undergo a modulational instability and produce localized field structures. A new type of nonlinear effect comes into play when an electromagnetic wave propagating through a plasma is strong enough to drive the electrons to relativistic speeds. This leads to a propagation of an electromagnetic wave in a normally overdense plasma, and the coupling of the electromagnetic wave to a Langmuir wave in the plasma. The relativistic mass variation of the electrons moving in an intense electromagnetic wave can also lead to a modulational instability of the latter. 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