Processes development for high temperature solar thermal Kalina power station
Kalina cycle system (KCS) operates at a heat source temperature up to 600?C with an improved heat recovery. The current work focuses on thermodynamic processes development and assessment of a KCS configuration to augment the power from a heat recovery of solar thermal collectors operating from 250?C...
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Veröffentlicht in: | Thermal science 2014-01, Vol.18 (suppl.2), p.S393-404 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Kalina cycle system (KCS) operates at a heat source temperature up to 600?C
with an improved heat recovery. The current work focuses on thermodynamic
processes development and assessment of a KCS configuration to augment the
power from a heat recovery of solar thermal collectors operating from 250?C
to 600?C. There are three pressure levels in current cycle i.e. high
pressure (HP), intermediate pressure (IP) and low pressure (LP). The
superheated vapor expands from HP to LP and the separator is located at IP.
The current work develops a new methodology for thermodynamic evaluation with
more flexibility compared to the reported method in literature. Separator
inlet condition (temperature and concentration), turbine inlet condition
(pressure, temperature and concentration) and solar radiation have been
identified as key parameters for the plant evaluation. The performance is
improving with an increase in separator temperature, turbine inlet pressure,
source temperature and solar radiation. But it is decreasing with an increase
in separator and turbine inlet concentrations. The cycle efficiency, plant
efficiency and specific power have been found as 23.5%, 7.5% and 675 kW at
0.3 separator concentration and 0.5 turbine concentration.
nema |
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ISSN: | 0354-9836 2334-7163 |
DOI: | 10.2298/TSCI120623020G |