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Abstract. It is shown that collisionless orbit transformation of the
locally trapped particles to the locally passing ones and vice versa in the
Wendelstein-line optimized stellarators results in stochastic diffusion of
energetic ions. This diffusion can lead to the loss of an essential fraction
of energetic ion population from the region where the characteristic
diffusion time is small compared to the slowing down time. The loss region
and the magnitude of the loss can be minimized by shaping the plasma
temperature and density profiles so that they satisfy certain requirements.
The predictions of the developed theory are in agreement with the results of
numerical modelling of confinement of -particles in a Helias
reactor, which was carried out in this work with the use of the orbit
following code. The considered diffusion seems to represent the dominant
mechanism of classical losses of
-particles in a Helias reactor.
IAEA 2001