The present inventive subject matter is drawn to a hybrid ultra reliable
power generating system for supplying continuous reliable power at remote
locations comprising: a primary power unit producing electric power that
is supplied to a load. Also a secondary power unit is included in the
form of a closed cycle vapor turbine (CCVT) system that is capable of
producing 100% of the electric power that is produced by the primary
power unit and which is heated in hot standby by rejected heat of the
primary power unit, wherein the vaporizer of the CCVT is maintained
during hot standby at a temperature above its nominal operating
temperature and the vapor turbine of the CCVT is preferable maintained at
idle during hot standby at a rotating speed. Furthermore, the present
inventive subject matter is drawn to an apparatus that combines a fuel
efficient primary power generation unit system such as a high temperature
fuel cell with a secondary power unit that is a very high reliability
closed cycle vapor turbine (CCVT) which operates according to a Rankine
cycle using organic working fluid that is capable of producing
approximately 5-15% of the electric power that is produced by the primary
power unit and which is heated by rejected heat of the primary power
unit, wherein working fluid in the vaporizer of the CCVT is heated by the
heat rejected by the primary power unit.