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ISBN: 0-8493-1606-5; s( O! S e3 s. p, q5 d2 a4 ^5 }
Title: Viscous Fluid Flow
% q: b! U- c' i) J: MAuthor: TC Papanastasiou, GC Georgiou4 }" n& ~3 }( m5 ?& |
Publisher: CRC
1 x, k. U) M, d8 c7 YNumber Of Pages: 413
3 i) I$ K# K. F- |% X2个压缩卷,解压后3.98M无封面
* L3 n% q) U" \简介& U* M+ E! [5 b, y V
This book contains information obtained from authentic and highly regarded sources. Reprinted material is quoted with permission, and sources are indicated. A wide variety of references are listed. Reasonable efforts have been made to publish reliable data and information, but the author and the publisher cannot assume responsibility for the validity of all materials or for the consequences of their use.( ? j# m# i* e$ T/ s6 t
目录
9 J4 k& k( G3 p; ^' n/ a) i1 VECTOR ANDTENSOR CALCULUS2 f" f( N" F" t0 B( E
1.1 Systems of Coordinates; f* N8 S# A' Q7 A! d
1.2 Vectors3 p2 A% E0 r3 A3 T! V" F, ~/ D+ i
1.2.1 Vectors in Fluid Mechanics3 @) n, N1 B8 M& }/ p1 L4 {4 ?. _
1.2.2 Unit Tangent and Normal Vectors
5 U4 H+ ~7 U( n' j1.3 Tensors
. n* q4 Q: {! l1.3.1 Principal Directions and Invariants
\& f7 a) q0 s, q1.3.2 Index Notation and Summation Convention
& i: E% ^, u* y' Q7 C: ]0 F1.3.3 Tensors in Fluid Mechanics
# Y2 a) t% j3 ]5 {8 C+ _3 k/ ~. K1.4 Di?erential Operators& K. R: v3 D" x/ j g" E; X( @
1.4.1 The Substantial Derivative( z( U. R( o# M
1.5 Integral Theorems
0 R v9 ^6 D. @9 s1.6 Problems
3 k& ]( V3 L4 O( g# E8 s1.7 References& X" ]/ E# k6 d @
2 INTRODUCTION TO THE CONTINUUM FLUID. l1 G0 [+ F: w$ N- A
2.1 Properties of the Continuum Fluid
/ }5 N5 j6 _) E2.2 Macroscopic and Microscopic Balances( ?* P/ m3 G1 l3 b$ A
2.3 Local Fluid Kinematics
% \2 ~; X% X4 c2 |8 H& `6 c( T2.4 Elementary Fluid Motions
5 |) G9 k9 G) S$ a! |1 N2.5 Problems
( C6 W4 n+ [% {* y* S. j2.6 References
& j. w8 k) b l1 R3 CONSERVATION LAWS
) G4 H# P$ A0 a; e3.1 Control Volume and Surroundings0 d2 U$ g& d, K8 p
3.2 The General Equations of Conservation. o1 }0 M1 Q) F3 ?8 J
3.3 The Di?erential Forms of the Conservation Equations2 ~ y$ u/ ?( ?' [
3.4 Problems
1 Q1 f1 b" }; t! u4 @/ _3.5 References- L7 L7 y4 n, c% E! F
4 STATIC EQUILIBRIUM OF FLUIDS AND INTERFACES6 J, y: k6 @0 ^3 T% x. V; y/ W' }% w
4.1 Mechanics of Static Equilibrium; R) T6 d; q1 D% A6 a
4.2 Mechanics of Fluid Interfaces
& Z2 f9 U, {& x3 ]9 D% z, U0 K$ T4.2.1 Interfaces in Static Equilibrium' ~ U; d' s5 ^7 j7 p: |( R
4.3 Problems1 M& B' o8 T, ]2 e- d; J
4.4 References# q0 ]+ {9 |. E
5 THE NAVIER-STOKES EQUATIONS
; H0 t$ o$ T( T; b5.1 The Newtonian Liquid
9 h5 G7 i* f; ~' b# ?4 d5.2 Alternative Forms of the Navier-Stokes Equations. z. ]) c' Z3 N: W# H) o
5.3 Boundary Conditions, ? y& O0 S9 c) I1 C5 V5 F7 y/ y
5.4 Problems2 G! @- Y4 a: e6 G( l
5.5 References
: i' l8 ~+ ]& W6 UNIDIRECTIONAL FLOWS
# L5 K& c8 y7 j3 k" N6.1 Steady, One-Dimensional Rectilinear Flows0 A: H0 [7 p* T6 M; m2 W
6.2 Steady, Axisymmetric Rectilinear Flows' ^! ~5 W- p) j7 _- D. V6 {
6.3 Steady, Axisymmetric Torsional Flows+ U4 R- m" G9 \
6.4 Steady, Axisymmetric Radial Flows9 S7 l9 ]) X3 S( l. B
6.5 Steady, Spherically Symmetric Radial Flows# Y+ |! u$ {: p; r
6.6 Transient One-Dimensional Unidirectional Flows
) W) u% I4 i) z& m: k3 }6.7 Steady Two-Dimensional Rectilinear Flows
% n: U1 ~0 o% I5 O6.8 Problems) F4 G2 H0 A1 y8 } [
6.9 References
* E. p2 m! H0 k& N........................ |
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