incompressible,英語單詞,主要用作為形容詞,用作形容詞譯為“不能壓縮的”。
基本介紹
- 外文名:incompressible
- 英式讀音:[,ɪnkəm'prɛsəbl]
- 美式讀音:[,ɪnkəm'prɛsəbl]
- 詞性:形容詞

incompressible,英語單詞,主要用作為形容詞,用作形容詞譯為“不能壓縮的”。
不可壓縮材料是一種理想的材料,實際上不存在。橡膠是比較接近不可壓縮的一種材料,其泊松比為0.47(空氣的泊松比為0,水的泊松比為0.5).1. 不可壓縮指變形以後總體積不變(incompressible),不是指不可變形(undeformable),且不可壓縮材料泊松比為0.5僅在微形變時成立,當形變繼續增大時泊松比下降。2. 可以簡單...
不可壓縮曲面 不可壓縮曲面(incompressible surface)是1993年發布的數學名詞。公布時間 1993年經全國科學技術名詞審定委員會審定發布。出處 《數學名詞》第一版。
不可壓縮流[動]不可壓縮流[動](incompressible flow)是1993年公布的力學名詞,出自《力學名詞》。公布時間 1993年經全國科學技術名詞審定委員會審定發布。出處 《力學名詞》
incongruent,英語單詞,主要用作為形容詞,用作形容詞譯為“ 不一致的;不協調的;不和諧的;不合適的”。網路釋義 incompressible 不可壓縮的 incongruent 不同餘的 inconsistency 不一致性 短語搭配 incongruent melting 異成分熔融 ; 不一致熔融 ; 分熔 ; 不整熔融 incongruent form 非一致式 incongruent nystagmus...
1.8 Leray''s Formulation of Incompressible Flows and Hodge''s Decomposition of Vector Fields 1.9 Appendix Notes for Chapter 1 References for Chapter 1 2 The Vorfidty-Stream Formulation of the Euier and the Navier. Stokes Equations 2.1 The Vorticity-Stream Formulation for 2D Flows 2.2 A ...
3 A general algorithm for compressible and incompressible flows - the characteristic-based split (CBS) algorithm 3.1 Introduction 3.2 Characteristic-based split (CBS) algorithm 3.3 Explicit, semi-implicit and nearly implicit forms 3.4 Circumventing the Babuska-Brezzi (BB) restrictions 3.5 A ...
3 The characteristic-based split (CBS) algorithm. A general procedure for compressible and incompressible flow 3.1 Introduction 3.2 Non-dimensional form of the governing equations 3.3 Characteristic-based split (CBS) algorithm 3.4 Explicit, semi-implicit and nearly implicit forms 3.5 Artificial ...
11.4 Three-field nearly incompressible elasticity (u-p- form)11.5 Reduced and selective integration and its equivalence to penalized mixed problems 11.6 A simple iterative solution process for mixed problems: Uzawa method 11.7 Stabilized methods for some mixed elements failing the incompressibility...
Reading Material B Compressible and Incompressible Fluids UNIT SIX Text Hydraulic Grade Line and Energy Line Reading Material A Eulerian and Lagrangian Flow Descriptions Reading Material B Static, Stagnation (total), and Dynamic Pressure UNIT SEVEN Text Incompressible, Steady and Uniform Turbulent Flow in...
1.2 Incompressible and isothermal bipolar non Newtonian fluids models 3 1.3 lsothermal compressible viscous fluids models 8 1.4 0ther related models 9 2 Global solutions to the equations of non Newtonian fluids 15 2.1 Global solutions to the periodic initial value problems for the incompressible...
3.7IncompressibleMaterialPointMethod88 3.7.1MomentumEquationofFluid89 3.7.2OperatorSplitting89 3.7.3PressurePoissonEquations90 3.7.4PressureBoundaryConditions91 3.7.5VelocityUpdate92 3.8ImplicitMaterialPointMethod93 3.8.1ImplicitTimeIntegration95 3.8.2SolutionofaSystemofNonlinearEquations95 3.8.3...
CHAPTER2 APPLICATION OF BERNOULLI's PRINCIPLE TO SOMEINCOMPRESSIBLE FLOWS 2.1 ACCELERATION OF THE FLOW TOWARD THE STEADY FLOW SOLUTION 2.2 FLOW THROUGH AN L-SHAPED TUBE OF CONSTANT AREA 2.3 DISCHARGE OF AN INCOMPRESSIBLE FLUID THROUGH A NOZZLE 2.4 QUASI-STEADY FLOW ANALYSIS ON FLOW PROBLEMS 2...
1.4 Incompressible Flow in Pipes and Channels 47 1.4.1 Shear Stress and Skin Friction in Pipes 47 1.4.2 Laminar Flow in Pipes and Channels 50 1.4.3 Turbulent Flow in Pipes and Channels 52 1.4.4 Friction from Changes in Velocity or Direction 56 1.5 Pipe Flow Systems...
2.8 Incompressible viscous conducting fluid approaching a permeable stretching surface 21 2.8.1 Exact solutions for some special cases 23 2.8.2 The case of G ≠ 0 25 2.8.3 The case of G = 0 29 2.8.4 Numerical solutions and discussion of the results 32 2.9 Hydromagnetic stagnation ...
Incompressible strings and randomness...267 Exercises, Problems, and Solutions...270 Part Three: Complexity Theory...273 7 Time Complexity...275 7.1 Measuring Complexity...275 Big-O and small-o notation...276 Analyzing algorithms...279 Complexity relationships among models...282 7.2 The Clas...
Incompressible Euler Equations:Mathematical Theory Interfaces and MulticomponcnL Fluids Intemittency in TurbuIence Inviscid Plows Korteweg de Vries Equation and Other Moduration Equations Lagrangian Dispersion(Passive Scalar)Magnohydrodynamics Newtonian Fuids and 2hermohydraulics Non-Newtonian Fluids Partial ...
10.Incompressible fluids 11.The drag force incpotential flow past a body 12.Gravity waves 13.Internal waves in an incompressible fluid 14.Waves in acrotating fluid Ⅱ.VISCOUS FLUIDS 15.The equations of motion of acviscous fluid 16.Energy dissipation in ancincompressible fluid 17.Flow in acpipe ...
6.3.2 aldm for the incompressible navier-stokes equations.6.3.3 aldm for the compressible navier-stokes equations 7 boundary conditions for large-eddy simulation of compressible flows 7.1 introduction 7.2 wall modeling for compressible les 7.2.1 statement of the problem 7.2.2 wall boundary...
1.7.1IncompressibleFlow 1.7.2Inviscid(Euler)Flow 1.7.3PotentialFlow 1.7.4Creeping(Stokes)Flow 1.7.5BoussinesqApproximation 1.7.6BoundaryLayerApproximation 1.7.7ModelingofComplexFlowPhenomena 1.8MathematicalClassificationofFlows 1.8.1HyperbolicPlows 1.8.2ParabolicFlows 1.8.3EllipticFlows 1.8...
1.4 Incompressible Flow in Pipes and Channels 1.4.1 Shear Stress and Skin Friction in Pipes 1.4.2 Laminar Flow in Pipes and Channels 1.4.3 Turbulent Flow in Pipes and Channels 1.4.4 Friction from Changes in Velocity or Direction 1.5 Pipe Flow Systems 1.5.1 Single Pipes 1.5.2 ...
Chapter 2 Steady state percolation of single-phase incompressible fluid 2.1 Three basic forms of percolation 2.2 Planar one-dimensional steady state percolation of single-phase incompressible fluid.2.3 Planar radial fluid flow of single-phase incompressible fluid 2.4 Imperfect well 2.5 Systematic ...
Preface1 Introduction and Overview 1.1 Lagrangian and Hamiltonian Formalisms 1.2 Tile Rigid Body 1.3 Lie-Poisson Brackets,Poisson Manifolds,Momentum Maps 1.4 The Heavy Top 1.5 Incompressible Fluids 1.6 The Maxwell-Vlasov System 1.7 Nonlinear Stability 1.8 Bifurcation 1.9 The Poincare-Melnikov...
[1](T. Y. Hou, Z. Q. Shi,王術)On singularity formation of a 3D model for incompressible Navier-Stokes equations. Advances in Math. (美國),230(2012), 607-641. SCI [2](T. Y. Hou, C. M. Li, Z. Q. Shi, 王術, X. W. Yu)On singularity formation of a nonlinear nonlocal...
Limits 11.1 A Formal Discussion 11.2 The Hilbert Expansion 11.3 The Entropy Approach to the Hydrodynamical Limit 11.4 The Hydrodynamical Limit for Short Times 11.5 Other Scalings and the Incompressible Navier-Stokes Equations 12 Open Problems and New Directions Author Index Subject Index ...
source terms Appendix D Limiter functions used in Chapter 5 Appendix E Derivation of one-dimensional governing equations for steady, incompressible flow through a planar nozzle Appendix F Alternative derivation for the term (n . grad Ai) in Chapter 11 Appendix G Some examples Bibliography Index ...
