1. Heinloo, J. On the description of stochastic systems. Proc. Estonian Acad. Sci. Phys. Math., 2004, 53, 186–200.
2. Heinloo, J. Mekhanika Turbulentnosti [The Mechanics of Turbulence]. Estonian Academy of Sciences, Tallinn, 1999 (in Russian).
3. Heinloo, J. Setup of turbulence mechanics accounting for a preferred orientation of eddy rotation. Concepts Phys., 2008, 5, 205–219.
doi:10.2478/v10005-007-0033-8
4. Heinloo, J. Formulation of turbulence mechanics. Phys. Rev. E, 2004, 69, 056317.
doi:10.1103/PhysRevE.69.056317
5. Heinloo, J. The description of externally influenced turbulence accounting for a preferred orientation of eddy rotation. Eur. Phys. J. B., 2008, 62, 471–476.
doi:10.1140/epjb/e2008-00187-8
6. Sedov, L. I. A Course in Continuum Mechanics. Kluwer, 1987.
7. Monin, A. S. and Yaglom, A. M. Statistical Fluid Mechanics. Vol. 2. MIT Press, Cambridge, 1975.
8. Kuzmin, G. A. and Patashinskii, A. Z. Similarity hypothesis in hydrodynamic description of turbulence. Zh. Eksp. Teor. Fiz. (JETP), 1972, 62, 1157 (in Russian).
9. Frenkel, J. I. On conception of motion in relativistic quantum theory. Dokl. AN SSSR, 1949, 64, 507 (in Russian).
10. Reynolds, O. On the dynamical theory of turbulent incompressible viscous fluids and the determination of the criterion. Phil. Trans. Roy. Soc., 1894, 186, 123–161.
11. Richardson, L. F. Weather Prediction by Numerical Process. Cambridge Univ. Press, 1922.
12. Kolmogorov, A. N. The local structure of turbulence in incompressible viscous fluids for very large Reynolds numbers. Dokl. AN SSSR, 1941, 30, 299–303 (in Russian).