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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Renormalization group and anomalous scaling in a simple model of passive scalar advection in compressible flow
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Renormalization group and anomalous scaling in a simple model of passive scalar advection in compressible flow

机译:可压缩流中被动标量对流的简单模型中的重归化群和异常缩放

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摘要

Field theoretical renormalization group (RG) methods are applied to a simple model of a passive scalar quantity advected by the Gaussian nonsolenoidal ("compressible") velocity field with the covariance proportional to delta(t - t')x - x'(epsilon). Convective-range anomalous scaling for the structure functions and various pair correlators is established, and the corresponding anomalous exponents are calculated to the order epsilon(2) Of the epsilon expansion. These exponents are nonuniversal, as a result of the degeneracy of the RG fixed point. In contrast to the case of a purely solenoidal velocity field (Obukhov-Kraichnan model), the correlation functions in the case at hand exhibit a nontrivial dependence on both the IR and UV characteristic scales, and the anomalous scaling appears already at the level of the pair correlator. The powers of the scalar field without derivatives, whose critical dimensions determine the anomalous exponents, exhibit multifractal behavior. The exact solution for the pair correlator is obtained; it is in agreement with the result obtained within the epsilon expansion. The anomalous exponents for passively advected magnetic fields are also presented in the first order of the epsilon expansion. [S1063-651X(98)06412-5]. [References: 46]
机译:场理论重归一化组(RG)方法应用于由高斯非电磁(“可压缩”)速度场平移的被动标量的简单模型,协方差与delta(t-t') x-x'( epsilon)。建立了结构函数和各种成对相关器的对流范围异常定标,并将对应的异常指数计算为ε展开的阶epsilon(2)。由于RG不动点的退化,这些指数是普遍的。与纯螺线管速度场(Obukhov-Kraichnan模型)的情况相反,手头情况下的相关函数对IR和UV特征量表表现出非平凡的依赖性,并且反比例量表已经出现在对相关器。没有导数的标量场的幂(其临界尺寸决定了异常指数)表现出多重分形行为。获得了对相关器的精确解;这与在epsilon扩展中获得的结果一致。被动平流磁场的异常指数也以ε展开的一阶表示。 [S1063-651X(98)06412-5]。 [参考:46]

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