The 12 th Meeting of Japan CF - Research Society

نویسندگان

  • H. Sakoh
  • A. Taniike
  • A. Kitamura
  • T. Tahara
چکیده

During long-term electrolysis for well annealed thick Pd rod (9.0 mm Φ) in 0.1MLiOD, vortex pattern was observed . The morphology of the postelectrolysis electrodesrevealed the two long faults without any cracks on the surface. N-cycle model was proposed ,where the vortex threads move underbeneath of the surface to understand the CF phenomenon.Further the vortex threads were realized as the continuous flow of hypothetical particles massfrom a vessel to a neighboring one in the Scavenger process. So far, we have succeeded inobtaining, though not precise a vortex pattern and their cascade . Mean while we noted that themagnetic configuration underbeneath of the surface layer plays an important role in thesimulation of the motion of the hypothetical particles mass flow.From a different viewpoint, we should focus the physical rules which were found in naturalphenomena and apply these ideas to advance our model in PC computer simulation works (3Dmotion of the hypothetical particles mass). Of particular interest is ‘cyclonic vorticiy’ , namelyvortices shown in Fig.1. This view is rather schematic diagram of the fluid stream line appearedin the solar convective zone. It is noted that the solar dynamo (above mentioned research area) isnot well investigated solar flare or corona mass explosion but laminar or turbulent flow dynamicsof the convective zone existing more inside in the solar rotating system. The rotating sphericalentity such as Sun possesses different two magnetic fields, which determine the dynamics ofcompressive fluid. In this study, we understand solar convection and hydrodynamic dynamoaction in terms of the dynamics coupled with the magnetic fields evolved. A comparison betweenthis numerical simulation model and that presented in our study helps us in shedding a new lighton the numerical simulation of the motion of the hypothetical particles mass. References1) H. Numata et al.: Proc. Conf. Science of Cold Fusion, Vol.33, pp.71, T.BRESSANI et al. eds.,SIF, Bologna, Italy (1991)2) R. Takagi et al.: Fusion Technol., 19 (1991)21353) H. Numata: Proc. Conf. 3rd New Hydrogen Energy Basic Research, (1996)554) H. Numata and I. Ohno: ICCF6, Toya Japan, vol.1, pp.213 (1997)5) H. Numata and M. Ban: Proc.JCF6, pp.32, JCF8, pp.67, JCF10, pp.68 and JCF11, pp.706) M. Miesch et al.: Astrophysical Journal, 532 (2000) 593

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تاریخ انتشار 2011