PubMed Health⌕ Search

Biomedical subjects

Poul Olesen

Publications and source records attributed to Poul Olesen.

2 recordsLinked to original sources

Diffusion, fragmentation, and coagulation processes: analytical and numerical results.

We formulate dynamical rate equations for physical processes driven by a combination of diffusive growth, size fragmentation, and fragment coagulation. Initially, we consider processes where coagulation is absent. In this case we solve the rate equation exactly leading to size distributions of Bessel type which fall off as exp(-x(3/2)) for large x values. Moreover, we provide explicit formulas for the expansion coefficients in terms of Airy functions. Introducing the coagulation term, the full nonlinear model is mapped exactly onto a Riccati equation that enables us to derive various asymptotic solutions for the distribution function. In particular, we find a standard exponential decay exp(-x) for large x and observe a crossover from the Bessel function for intermediate values of x . These findings are checked by numerical simulations, and we find perfect agreement between the theoretical predictions and numerical results.

Journal Article↗

Competition between diffusion and fragmentation: an important evolutionary process of nature.

We investigate systems of nature where the common physical processes diffusion and fragmentation compete. We derive a rate equation for the size distribution of fragments. The equation leads to a third order differential equation which we solve exactly in terms of Bessel functions. The stationary state is a universal Bessel distribution described by one parameter, which fits perfectly experimental data from two very different systems of nature, namely, the distribution of ice-crystal sizes from the Greenland ice sheet and the length distribution of alpha helices in proteins.

Crystallization↗