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results in an abrupt change of property, which is termed as shock in gas dynamics terminology. Shocks are characterized by discontinuous changes in flow properties
Shock_(fluid_dynamics)
Aspects of fluid mechanics involving fluid flow
physical chemistry, and engineering, fluid dynamics is a subdiscipline of fluid mechanics that describes the flow of fluids – liquids and gases. It has several
Fluid_dynamics
Branch of modern astronomy
Astrophysical fluid dynamics is a branch of modern astronomy which deals with the motion of fluids in outer space using fluid mechanics, such as those
Astrophysical_fluid_dynamics
Analysis and solving of problems that involve fluid flows
Computational fluid dynamics (CFD) is a branch of fluid mechanics that uses numerical analysis and data structures to analyze and solve problems that
Computational_fluid_dynamics
Controversial theory in terminal ballistics
cartridges that create enough hydrostatic shock to quickly bring animals down. Blast injury Shock (fluid dynamics) Stopping power Table of handgun and rifle
Hydrostatic_shock
Aspects of fluid mechanics involving flow of fluids (liquids and gases)
and topical guide to fluid dynamics: In physics, physical chemistry, and engineering, fluid dynamics is a subdiscipline of fluid mechanics that describes
Outline_of_fluid_dynamics
Set of quasilinear hyperbolic equations governing adiabatic and inviscid flow
In fluid dynamics, the Euler equations are a set of partial differential equations governing adiabatic and inviscid flow. They are named after Leonhard
Euler equations (fluid dynamics)
Euler_equations_(fluid_dynamics)
Propagating disturbance
to capture shock waves and to detect shock waves in both numerical computations and experimental observations. Computational fluid dynamics is commonly
Shock_wave
Dynamics of naturally occurring flows
Geophysical fluid dynamics, in its broadest meaning, is the application of fluid dynamics to naturally occurring flows, such as lava, oceans, and atmospheres
Geophysical_fluid_dynamics
Branch of fluid mechanics
Compressible flow (or gas dynamics) is the branch of fluid mechanics that deals with flows having significant changes in fluid density. While all flows
Compressible_flow
Topics referred to by the same term
around a cell Shock (mechanics), a sudden acceleration or deceleration Shock absorber Shock mount Shock wave Oblique shock Shock (fluid dynamics), an abrupt
Shock
In computational fluid dynamics, shock-capturing methods are a class of techniques for computing inviscid flows with shock waves. The computation of flow
Shock-capturing_method
compressible fluid dynamics (NICFD), or non ideal gas dynamics, is a branch of fluid mechanics studying the dynamic behavior of fluids not obeying ideal-gas
Non ideal compressible fluid dynamics
Non_ideal_compressible_fluid_dynamics
Retarding force on a body moving in a fluid
In fluid dynamics, drag, sometimes referred to as fluid resistance, and also known as viscous force, is a force acting opposite to the direction of motion
Drag_(physics)
Test for the accuracy of computational fluid codes
The Sod shock tube problem, named after Gary A. Sod, is a common test for the accuracy of computational fluid codes, like Riemann solvers, and was heavily
Sod_shock_tube
Type of fluid
A Newtonian fluid is a fluid in which the viscous stresses arising from its flow are at every point linearly correlated to the local strain rate—the rate
Newtonian_fluid
Curved propagating disturbance wave
redirect targets Moving shock – Shock wave travelling through a fluid Prandtl–Meyer expansion fan – Phenomenon in fluid dynamics Courant, R.; Friedrichs, K
Bow_shock_(aerodynamics)
Visible wave pattern in a supersonic exhaust plume
standing shock waves and expansion fans. The physicist Ernst Mach was the first to describe a strong shock perpendicular to the direction of fluid flow,
Shock_diamond
Dimensionless quantity in fluid dynamics
often only Mach (/mɑːk/; German: [max]), is a dimensionless quantity in fluid dynamics representing the ratio of flow velocity past a boundary to the local
Mach_number
Branch of dynamics concerned with studying the motion of air
airplane wing. It involves topics covered in the field of fluid dynamics and its subfield of gas dynamics, and is an important domain of study in aeronautics
Aerodynamics
Type of fluid
In physical chemistry and fluid mechanics, a non-Newtonian fluid is a fluid that does not follow Newton's law of viscosity; that is, it has variable viscosity
Non-Newtonian_fluid
Pressure surge when a fluid is forced to stop or change direction suddenly
Hydraulic shock (colloquial: water hammer; fluid hammer) is a pressure surge or wave caused when a fluid in motion is forced to stop or change direction
Hydraulic_shock
Principle relating to fluid dynamics
Bernoulli's principle is a concept in fluid dynamics that relates pressure, speed and height. For example, for a fluid flowing horizontally, Bernoulli's principle
Bernoulli's_principle
Medium to transfer power in hydraulic machinery
A hydraulic fluid or hydraulic liquid is the medium by which power is transferred in hydraulic machinery. Common hydraulic fluids are based on mineral
Hydraulic_fluid
Shock wave travelling through a fluid
In fluid dynamics, a moving shock is a shock wave that is travelling through a fluid (often gaseous) medium with a velocity relative to the velocity of
Moving_shock
Concept in physics
states on both sides of a shock wave or a combustion wave (deflagration or detonation) in a one-dimensional flow in fluids or a one-dimensional deformation
Rankine–Hugoniot_conditions
Type of highway congestion
itself can often be seen using techniques similar to those used in fluid dynamics. It is related to the accordion effect. A phantom traffic jam occurs
Traffic_wave
Shock wave that is inclined with respect to the incident upstream flow direction
^{2}\!\beta .} Gas dynamics Mach reflection – Supersonic flow phenomenon Moving shock – Shock wave travelling through a fluid Shock polar Hall, Nancy (13
Oblique_shock
Smart fluid whose viscosity increases in a magnetic field
A magnetorheological fluid (MR fluid, or MRF) is a type of smart fluid which, when subjected to a magnetic field, greatly increases in apparent viscosity
Magnetorheological_fluid
Supersonic flow phenomenon
reflection is a supersonic fluid dynamics effect, named for Ernst Mach, and is a shock wave reflection pattern involving three shocks. Mach reflection can exist
Mach_reflection
Vector field which is used to mathematically describe the motion of a continuum
In continuum mechanics the flow velocity in fluid dynamics, also macroscopic velocity in statistical mechanics, or drift velocity in electromagnetism,
Flow_velocity
Increased fluid pressure and flow from an explosion
In fluid dynamics, a blast wave is the increased pressure and flow resulting from the deposition of a large amount of energy in a small, very localised
Blast_wave
Model of electrically conducting fluids
Magnetohydrodynamics (MHD; also called magnetofluid dynamics or hydromagnetics) is a model of electrically conducting fluids that treats all types of charged particles
Magnetohydrodynamics
Study of the motion of gases
branch of fluid dynamics, concerned with the study of motion of gases and its effects on physical systems. Based on the principles of fluid mechanics
Gas_kinetics
Pressure wave
In fluid dynamics, a Mach wave, also known as a weak discontinuity, is a pressure wave traveling with the speed of sound caused by a slight change of pressure
Mach_wave
PowerFLOW, a lattice-boltzmann derived implementation of computational fluid dynamics (CFD), which can very accurately simulate internal and external flows
Exa_Corporation
Clear, colorless bodily fluid found in the brain and spinal cord
Cerebrospinal fluid (CSF) is a clear, colorless transcellular body fluid found within the meningeal tissue that surrounds the vertebrate brain and spinal
Cerebrospinal_fluid
Fluid which flows without losing kinetic energy
Condensed matter physics Fluid dynamics Macroscopic quantum phenomena Quantum hydrodynamics Slow light Supersolid Two-fluid model "The Nobel Prize in
Superfluidity
However, if the entire layer is viscous, it is called as merged shock layer. This Fluid dynamics problem can be solved by different Numerical Methods. However
Supersonic flow over a flat plate
Supersonic_flow_over_a_flat_plate
Phenomenon in fluid dynamics
(2013). Fluid Mechanics: Landau and Lifshitz: Course of Theoretical Physics, Volume 6 (Vol. 6). Elsevier. Gas dynamics Mach wave Oblique shock Shock wave
Prandtl–Meyer_expansion_fan
A high pressure jet is a stream of pressurized fluid that is released from an environment at a significantly higher pressure than ambient pressure from
High_pressure_jet
Concept in partial differential equations
In the study of partial differential equations, particularly in fluid dynamics, a self-similar solution is a form of solution which is similar to itself
Self-similar_solution
Suspension of fine solid particles or liquid droplets in a gas
approximately 80%, leading to an unexpected global geoengineering termination shock. Aerosol is defined as a suspension system of solid or liquid particles
Aerosol
Mathematical problem
one-dimensional Riemann problem in gas dynamics (Toro, Eleuterio F. (1999). Riemann Solvers and Numerical Methods for Fluid Dynamics, Pg 44, Example 2.5) The initial
Riemann_problem
instability (RMI) occurs when two fluids of different density are impulsively accelerated. Normally this is by the passage of a shock wave. The development of
Richtmyer–Meshkov_instability
hypervelocity shock tunnel, the John Lucas Adaptive-Wall Wind Tunnel, and a supersonic Ludwieg tube. He has made contributions in gas dynamics, notably Mach
Hans_G._Hornung
Measure of misalignment between the gradients of pressure and density in a fluid
In fluid dynamics, the baroclinity (often called baroclinicity) of a stratified fluid is a measure of how misaligned the gradient of pressure is from the
Baroclinity
Topics referred to by the same term
free dictionary. A shock wave is a type of propagating disturbance in a fluid, gas, or plasma medium. Shockwave may also refer to: Shock Wave (Brean Leisure
Shockwave_(disambiguation)
Type of aerodynamic surface
Drag". University of Colorado. Paper presented at the RTO AVT course on Fluid Dynamics Research on Supersonic Aircraft Anderson, John D. Jr. (21 March 2016)
Supersonic_airfoils
Indian academician
vibration condition monitoring, shock hardening, fluid-structure interaction, impact biodynamics, vehicle dynamics, and gun dynamics. Pratap obtained his B.Tech
Rudra_Pratap
Velocity field as the gradient of a scalar function
In fluid dynamics, potential flow or irrotational flow refers to the idealised, frictionless flow of a fluid. Flows of two kinds are visualised in this
Potential_flow
Equations of motion for viscous fluids
"The Boltzmann equation and fluid dynamics", in Friedlander, S.; Serre, D. (eds.), Handbook of mathematical fluid dynamics, vol. 1, Amsterdam: North-Holland
Navier–Stokes_equations
Abrupt increase in depth and decrease in speed of a stream
transition from supercritical to subcritical flow. In compressible-fluid dynamics, flow with speed greater than the speed of sound is termed supersonic
Hydraulic_jump
Material property relevant for characterizing fluid flow
variety of fluid phenomena, including sound attenuation in polyatomic gases (e.g. Stokes's law), propagation of shock waves, and dynamics of liquids containing
Volume_viscosity
In numerical analysis and computational fluid dynamics, Godunov's theorem — also known as Godunov's order barrier theorem — is a mathematical theorem important
Godunov's_theorem
Term in fluid dynamics
In fluid dynamics, a wake may either be: the region of recirculating flow immediately behind a moving or stationary blunt body, caused by viscosity, which
Wake_(physics)
Result of a liquid droplet striking a solid or liquid surface
In fluid dynamics, drop impact occurs when a drop of liquid strikes a solid or liquid surface. The resulting outcome depends on the properties of the drop
Drop_impact
flow Flow separation Vortices Fluid instability Fluid turbulence Free-surface flow Natural convection Subsonic flow Shock waves Supersonic flow The book
An_Album_of_Fluid_Motion
Low-Density Gases
Rarefied gas dynamics is a branch of fluid mechanics where the continuum assumption is no longer accurate, as a characteristic length scale in the gas
Rarefied_gas_dynamics
In fluid dynamics and elasticity, hydroelasticity or flexible fluid-structure interaction (FSI), is a branch of science which is concerned with the motion
Hydroelasticity
Passage of an object through the gases of an atmosphere from outer space
"Planetary-Entry Gas Dynamics". Annual Review of Fluid Mechanics. 31: 459–494. Bibcode:1999AnRFM..31..459G. doi:10.1146/annurev.fluid.31.1.459. ISSN 0066-4189
Atmospheric_entry
British engineering scientist (1967–2019)
systems in which the molecular or discrete nature of the fluid determines the overall fluid dynamics. A winner of the Philip Leverhulme Prize for Engineering
Jason_Reese
Destruction of objects by self-collapsing
known as radiation implosion. Cavitation (bubble formation/collapse in a fluid) involves an implosion process. When a cavitation bubble forms in a liquid
Implosion (mechanical process)
Implosion_(mechanical_process)
Low-pressure voids formed in liquids
propellers, and eliminating cavitation is a major field in the study of fluid dynamics. However, it is sometimes useful and does not cause damage when the
Cavitation
Havlin Shock (fluid dynamics) Shock (mechanics) Shock capturing methods Shock diamond Shock metamorphism Shock stall Shock tube Shock wave Shock waves
Index_of_physics_articles_(S)
Numerical technique for solving hyperbolic equations
2010-07-08 at the Wayback Machine Computational fluid dynamics Computational magnetohydrodynamics Shock capturing methods Volume of fluid method v t e v t e
Flux-corrected_transport
Vehicle propulsion using electromagnetic fields
non-isentropic analysis. Anti-shock criterion, and shock tube simulations for isentropic flows" (PDF). European Journal of Mechanics B. B/Fluids. 8 (4): 307–326. Bibcode:1989EuJMB
Magnetohydrodynamic_drive
Fluid flow through a constant-area duct with friction
In fluid dynamics, Fanno flow (after Italian engineer Gino Girolamo Fanno) is the adiabatic flow through a constant area duct where the effect of friction
Fanno_flow
Canadian-American physicist and engineer
Canadian-born physicist and engineer who made fundamental contributions to fluid dynamics and the study of turbulence. He was the Theodore von Kármán Professor
Anatol_Roshko
Mathematical function
schemes used to solve problems in science and engineering, particularly fluid dynamics, described by partial differential equations (PDEs). They are used in
Flux_limiter
Self-similar solution describing the fluid dynamics of explosions
the blast pressure following laser ablation at a solid–fluid interface using shock waves dynamics in air and in water". Applied Surface Science. 574 151592
Taylor–von Neumann–Sedov blast wave
Taylor–von_Neumann–Sedov_blast_wave
Conservation law for two-phase flow in porous media
In fluid dynamics, the Buckley–Leverett equation is a conservation equation used to model two-phase flow in porous media. The Buckley–Leverett equation
Buckley–Leverett_equation
American engineer
member of the National Academy of Engineering. He is the recipient of Fluid Dynamics Prize of APS in 1996. In 2010 he was elected a Fellow of the American
Parviz_Moin
Artifact in computational fluid dynamics
system being simulated and the type of discretization that is used. Most fluid dynamics or magnetohydrodynamic simulations seek to reduce numerical diffusion
Numerical_diffusion
Region around an astronomical object
bow shock, the stellar wind plasma gains a substantial anisotropy, leading to various plasma instabilities upstream and downstream of the bow shock. The
Magnetosphere
costly), particularly for stratified rotating flows. Computational fluid dynamics (CFD) is an additional tool in the arsenal of scientists. In its early
Numerical methods in fluid mechanics
Numerical_methods_in_fluid_mechanics
points of incompressible fluid flows. In the case of normal shock, flow is assumed to be in a steady state and thickness of shock is very small. It is further
Prandtl_condition
flow Turbomachinery Chapter 4,5,6 In Fluid dynamics and Heat Transfer by Budugur Lakshminarayana Fluid dynamics and Heat Transfer by James George Knudsen
Three-dimensional losses and correlation in turbomachinery
Three-dimensional_losses_and_correlation_in_turbomachinery
Sudden transient acceleration
hammer – Pressure surge when a fluid is forced to stop or change direction suddenly MIL-S-901 – US military standard for shock resistance of shipboard equipment
Shock_(mechanics)
Property of certain numerical methods
equations. The most notable application of this method is in computational fluid dynamics. The concept of TVD was introduced by Ami Harten. In systems described
Total_variation_diminishing
Numerical method used to solve a Riemann problem
corresponding Riemann problem. They are heavily used in computational fluid dynamics and computational magnetohydrodynamics. Generally speaking, Riemann
Riemann_solver
Scheme used in the numerical solution of partial differential equations
Toro, Eleuterio F. (1999). Riemann Solvers and Numerical Methods for Fluid Dynamics: A Practical Introduction (2nd ed.). Springer. ISBN 978-3-662-03915-1
High-resolution_scheme
advection equation in computational fluid dynamics. It is particularly useful for simulating compressible flows with shocks and discontinuities. The AUSM is
Advection upstream splitting method
Advection_upstream_splitting_method
Resistance of a fluid to shear deformation
viscosity is a property of a fluid that quantifies the resistance force acting on fluids when there is relative motion between fluid parcels. This resistance
Viscosity
Cloud-based computer-aided engineering (CAE) and simulation platform"
SimScale was developed by SimScale GmbH and integrates computational fluid dynamics, finite element analysis, thermal, and electromagnetic simulations with
SimScale
oblique shock. The shock polar was first introduced by Adolf Busemann in 1929. The minimum angle, θ {\displaystyle \theta } , which an oblique shock can have
Shock_polar
American mechanical engineer
geology. Keanini's research is focused on molecular hydrodynamics, fluid dynamics, applied math, and statistical mechanics, with a primary interest in
Russell_Keanini
Partial differential equation
in various areas of applied mathematics, such as fluid mechanics, nonlinear acoustics, gas dynamics, traffic flow, and mathematical physics. The equation
Burgers'_equation
application of computational fluid dynamics, particularly spectral methods, to problems in transition, compressible turbulence, shock-turbulence interaction
M._Yousuff_Hussaini
Form of damping resulting from an object moving through a viscous fluid
by fluid flow or motion of magnetic structures. The intended effect is to bring the damping ratio closer to 1. Practical examples include: Shock absorbers
Viscous_damping
what loads it can withstand. Simulation modeling can also help to predict fluid flow and heat transfer patterns. It analyses the approximate working conditions
Simulation_modeling
Wave that forms at the bow of a ship moving through water
waves. Bow wave patterns are studied in the field of computational fluid dynamics. The bow wave carries energy away from the ship at the expense of its
Bow_wave
Model of fluid flow through a frictionless constant-area duct with heat transfer
In fluid dynamics, Rayleigh flow (after English physicist Lord Rayleigh) refers to frictionless, non-adiabatic fluid flow through a constant-area duct
Rayleigh_flow
Vorticity confinement (VC), a physics-based computational fluid dynamics model analogous to shock capturing methods, was invented by Dr. John Steinhoff,
Vorticity_confinement
Region of turbulence within a fluid
in fluid dynamics, automotive gear shifting, and meteorology. It is a region of commotion or turbulence within a fluid, caused by movement. In fluid dynamics
Rooster_tail
mechanics of compressible fluids. Durand, Aerodynamic theory, 3. Zel'Dovich, Y. B., & Raizer, Y. P. (2002). Physics of shock waves and high-temperature
Becker–Morduchow–Libby solution
Becker–Morduchow–Libby_solution
shock waves and high-temperature hydrodynamic phenomena. At LANL Darryl also wrote his PhD dissertation entitled "Symmetry breaking in fluid dynamics:
Darryl_Holm
Noise caused by jets
mixing sound is created by the turbulent mixing of a jet with the ambient fluid, in most cases, air. The mixing initially occurs in an annular shear layer
Jet_noise
Characterized by some of the outputs or internal states growing without bounds
instability Fluid instabilities occur in liquids, gases and plasmas, and are often characterized by the shape that form; they are studied in fluid dynamics and
Instability
Dutch physicist (1895–1981)
interest in fluid dynamics while at the University of Maryland, and was recognized for his studies in gas dynamics, plasma physics, shock waves, and related
Jan_Burgers
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