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turbulence    音标拼音: [t'ɚbjələns]
n. 喧嚣,狂暴,骚乱

喧嚣,狂暴,骚乱

turbulence
n 1: unstable flow of a liquid or gas [synonym: {turbulence},
{turbulency}]
2: instability in the atmosphere
3: a state of violent disturbance and disorder (as in politics
or social conditions generally); "the industrial revolution
was a period of great turbulence" [synonym: {turbulence},
{upheaval}, {Sturm und Drang}]

Turbulence \Tur"bu*lence\, n. [L. turbulentia: cf. F.
turbulence.]
The quality or state of being turbulent; a disturbed state;
tumult; disorder; agitation. --Shak.
[1913 Webster]

The years of . . . warfare and turbulence which ensued.
--Southey.
[1913 Webster]

Syn: Agitation; commotion; tumult; tumultuousness;
termagance; unruliness; insubordination; rioting.
[1913 Webster]

189 Moby Thesaurus words for "turbulence":
CAT, ado, aerospace, aerosphere, agitation, air flow, air hole,
air pocket, airspace, asperity, babel, bluster, bobbery, boil,
boiling, brawl, broil, brouhaha, bump, bumpiness, burble, bustle,
cacophony, ceiling, chaos, choppiness, churn, commotion, confusion,
conturbation, cragginess, crosswind, derangement, din,
disarrangement, disarray, disarticulation, discomfiture,
discomposure, disconcertedness, disharmony, dishevelment,
disintegration, disjunction, disorder, disorderliness,
disorganization, disproportion, disquiet, disquietude, disruption,
disturbance, dither, ebullience, ebullition, eddy, effervescence,
embroilment, empty space, entropy, excitement, fanaticism,
favorable wind, feery-fary, ferment, fermentation, fever,
feverishness, fidgets, fight, flap, flow, flurry, fluster,
flutteration, fog, foment, fomentation, foofaraw, fracas, frenzy,
front, fume, furor, furore, fury, fuss, granulation, haphazardness,
harshness, head wind, high-pressure area, hispidity, hole, hubbub,
hurly-burly, hurry, hurry-scurry, incoherence, indiscriminateness,
inequality, inharmonious harmony, inquietude, ionosphere,
irregularity, jaggedness, jetstream, jitters, joltiness, jumpiness,
lather, low-pressure area, maelstrom, malaise, moil,
most admired disorder, nerviness, nervosity, nervousness,
nonsymmetry, nonuniformity, overcast, pandemonium, passion,
pell-mell, perturbation, pocket, pother, promiscuity,
promiscuousness, racket, rage, raggedness, randomness,
restlessness, roil, rough air, roughness, rout, row, ruckus,
ruffle, ruggedness, rugosity, rumpus, scraggliness, seethe,
seething, soup, space, stew, stir, storminess, stratosphere,
substratosphere, swirl, swirling, tail wind, tempestuousness,
to-do, tooth, trepidation, trepidity, tropopause, troposphere,
trough, tumult, tumultuation, tumultuousness, turbidity, turmoil,
twitter, unease, unevenness, unrest, unruliness, unsmoothness,
unsymmetry, ununiformity, uproar, upset, visibility,
visibility zero, vortex, whirl, wildness, yeastiness, zeal,
zealousness


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  • What is the mystery of turbulence? - Physics Stack Exchange
    What is called turbulence are precisely those states where the flow is irregular However as this transition to turbulence depends on the constituents and parameters of the system and leads to very different states, there exists sofar no general physical theory of turbulence
  • Taylors hypothesis in turbulence - Physics Stack Exchange
    The "Taylor Hypothesis" is founded on the idea that the changes observed in any given measured in the propagate at speeds much much less than the bulk flow speed of the solar wind (well, this has been applied in other regions of space than just the solar wind, but it's most commonly assumed there) We start with the nonrelativistic relation (i e , assume V c 1) given by: where is the observed
  • What are the length and time scales in turbulence?
    I haven't been able to understand what are does someone mean by length and time scales, while talking about turbulence Can someone explain it?
  • turbulence - From Kolmogorov (1941) to $k^ {-5 3}$ - Physics Stack Exchange
    I think the dimensional analysis @2b-t linked to is the way it is derived The K41 paper outlines the hypotheses of turbulence, and then dimensional analysis is what determines the exponent That's consistent with how the K41 paper determines all the other relationships they lay out -- it's all based on dimensional analysis definitions Not sure you'll find "better" demonstrations than
  • What causes wind gusts? - Physics Stack Exchange
    In this Wikipedia article, Turbulence is caused by excessive kinetic energy in parts of a fluid flow, which overcomes the damping effect of the fluid's viscosity For this reason turbulence is commonly realized in low viscosity fluids You ask: It isn't clear to me what cause gusts, sudden increase in wind speed that lasts a few seconds at flat surfaces like sea, lake, desert, ice
  • Is there any method to apply statistical mechanics to turbulence?
    Turbulence is not predictable in the sense that from one instant in time to the next a region of water will behave unpredictable A von Karman vortex - flagpole vortex - for example is reoetitive, predictable and not turbulent Turbulence is statistical in the sense that over a short period of time there could be a certain probability of a vortex with a given size and energy in a region but
  • Whats the shear rate in a turbulent flow? - Physics Stack Exchange
    The explanation of shear rate in laminar flow is straightforward: We imagine small layers of fluid that glide on each other Now, in turbulent flow, this does not work as there are no layers I'm not
  • Turbulence after pipe constriction - Physics Stack Exchange
    Wikipedia [1] says after the constriction in the pipe, that we don't see the pressure return to p1 due to turbulence Am I right to believe that further downstream if the pipe has returned to its original diameter d1, that both the pressure will match p1 and the velocity will match v1?
  • What does “eddy” mean in turbulence? - Physics Stack Exchange
    a newbie in turbulence study, very confused about the concept of eddy, I feel the word quot;eddy quot; having two meanings in fluid-mechanics maybe more and i'm not sure if i understand correctly
  • general relativity - Turbulent spacetime from Einstein equation . . .
    1 Turbulence has many properties, like chaos, diffusivity, rotation, and dissipation In particular, energy tends to flow from large-scale patterns to ever smaller size scales in a cascade Obviously relativistic fluids can be turbulent, so they can make a "turbulent spacetime" if they are heavy





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