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This valuable volume provides a broad understanding of the main computational techniques used for processing reclamation of fluid and solid mechanics. The aim of these computational techniques is to reduce and eliminate the risks of mechanical systems failure in hydraulic machines. Using many computational methods for mechanical engineering problems, the book presents not only a platform for solving problems but also provides a wealth of information to address various technical aspects of troubleshooting of mechanical system failure.The focus of the book is on practical and realistic fluids…mehr
This valuable volume provides a broad understanding of the main computational techniques used for processing reclamation of fluid and solid mechanics. The aim of these computational techniques is to reduce and eliminate the risks of mechanical systems failure in hydraulic machines. Using many computational methods for mechanical engineering problems, the book presents not only a platform for solving problems but also provides a wealth of information to address various technical aspects of troubleshooting of mechanical system failure.The focus of the book is on practical and realistic fluids engineering experiences. Many photographs and figures are included, especially to illustrate new design applications and new instruments.
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Inhaltsangabe
Controlling the Stability of Fluid Jet in the Electro Spinning of Fibers: Mathematical Modeling. Updates to Control Fluid Jet in Electro Spinning Process Using Taguchi's Experimental Design. Mechanical and Physical Properties of Electrospun Nano Fibers: An Engineering Insight. Numerical Modeling for Homogeneous and Stratified Flows: From Theory to Practice. Non-Revenue Water: Some Practical Hints. Three-Dimensional Heat Transfer and Water Flow Modeling. Nonlinear Modeling for Non-Revenue Water. Unaccounted for Water of Water System: Some Computational Aspects. Water Distribution Network Analysis: From Theory to Practice. Application of Reneker's Mathematical Model to Optimize Electro Spinning Process. Mixed-Mode Delamination in Layered Isotropic and Laminated Composite Beam Structures. Crack Parameter Identification in Elastic Plate Structures Based on Remote Strain Fields and Solution of Inverse Problems. Fracture Energy of Steel Fiber Reinforced High Strength Concrete Beams. Structural Characterization and Mechanical Behavior of Carbon Nanotubes Reinforced Aluminum Matrix Composite: A Review.
Controlling the Stability of Fluid Jet in the Electro Spinning of Fibers: Mathematical Modeling. Updates to Control Fluid Jet in Electro Spinning Process Using Taguchi's Experimental Design. Mechanical and Physical Properties of Electrospun Nano Fibers: An Engineering Insight. Numerical Modeling for Homogeneous and Stratified Flows: From Theory to Practice. Non-Revenue Water: Some Practical Hints. Three-Dimensional Heat Transfer and Water Flow Modeling. Nonlinear Modeling for Non-Revenue Water. Unaccounted for Water of Water System: Some Computational Aspects. Water Distribution Network Analysis: From Theory to Practice. Application of Reneker's Mathematical Model to Optimize Electro Spinning Process. Mixed-Mode Delamination in Layered Isotropic and Laminated Composite Beam Structures. Crack Parameter Identification in Elastic Plate Structures Based on Remote Strain Fields and Solution of Inverse Problems. Fracture Energy of Steel Fiber Reinforced High Strength Concrete Beams. Structural Characterization and Mechanical Behavior of Carbon Nanotubes Reinforced Aluminum Matrix Composite: A Review.
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