English

Asymptotic self-similar solutions with a characteristic time-scale

High Energy Astrophysical Phenomena 2015-05-18 v2 Fluid Dynamics

Abstract

For a wide variety of initial and boundary conditions, adiabatic one dimensional flows of an ideal gas approach self-similar behavior when the characteristic length scale over which the flow takes place, RR, diverges or tends to zero. It is commonly assumed that self-similarity is approached since in the R(0)R\to\infty(0) limit the flow becomes independent of any characteristic length or time scales. In this case the flow fields f(r,t)f(r,t) must be of the form f(r,t)=tαfF(r/R)f(r,t)=t^{\alpha_f}F(r/R) with R(±t)αR\propto(\pm t)^\alpha. We show that requiring the asymptotic flow to be independent only of characteristic length scales imply a more general form of self-similar solutions, f(r,t)=RδfF(r/R)f(r,t)=R^{\delta_f}F(r/R) with R˙Rδ\dot{R}\propto R^\delta, which includes the exponential (δ=1\delta=1) solutions, Ret/τR\propto e^{t/\tau}. We demonstrate that the latter, less restrictive, requirement is the physically relevant one by showing that the asymptotic behavior of accelerating blast-waves, driven by the release of energy at the center of a cold gas sphere of initial density ρrω\rho\propto r^{-\omega}, changes its character at large ω\omega: The flow is described by 0δ<10\le\delta<1, Rt1/(1δ)R\propto t^{1/(1-\delta)}, solutions for ω<ωc\omega<\omega_c, by δ>1\delta>1 solutions with R(t)1/(δ1)R\propto (-t)^{1/(\delta-1)} diverging at finite time (t=0t=0) for ω>ωc\omega>\omega_c, and by exponential solutions for ω=ωc\omega=\omega_c (ωc\omega_c depends on the adiabatic index of the gas, ωc8\omega_c\sim8 for 4/3<γ<5/34/3<\gamma<5/3). The properties of the new solutions obtained here for ωωc\omega\ge\omega_c are analyzed, and self-similar solutions describing the t>0t>0 behavior for ω>ωc\omega>\omega_c are also derived.

Keywords

Cite

@article{arxiv.1002.3872,
  title  = {Asymptotic self-similar solutions with a characteristic time-scale},
  author = {Eli Waxman and Dov Shvarts},
  journal= {arXiv preprint arXiv:1002.3872},
  year   = {2015}
}

Comments

Minor corrections, Accepted to ApJ

R2 v1 2026-06-21T14:49:13.780Z