Title of article :
A novel power block for CSP systems
Author/Authors :
Gur Mittelman، نويسنده , , Michael Epstein، نويسنده , , *، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2010
Abstract :
Concentrating Solar Thermal Power (CSP) and in particular parabolic trough, is a proven large-scale solar power technology. However,
CSP cost is not yet competitive with conventional alternatives unless subsidized. Current CSP plants typically include a condensing
steam cycle power block which was preferably designed for a continuous operation and higher operating conditions and therefore, limits
the overall plant cost effectiveness and deployment. The drawbacks of this power block are as follows: (i) no power generation during low
insolation periods (ii) expensive, large condenser (typically water cooled) due to the poor extracted steam properties (high specific volume,
sub-atmospheric pressure) and (iii) high installation and operation costs.
In the current study, a different power block scheme is proposed to eliminate these obstacles. This power block includes a top Rankine
cycle with a back pressure steam turbine and a bottoming Kalina cycle comprising another back pressure turbine and using ammonia–
water mixture as a working fluid. The bottoming (moderate temperature) cycle allows power production during low insolation periods.
Because of the superior ammonia–water vapor properties, the condensing system requirements are much less demanding and the operation
costs are lowered. Accordingly, air cooled condensers can be used with lower economical penalty. Another advantage is that back
pressure steam turbines have a less complex design than condensing steam turbines which make their costs lower. All of these improvements
could make the combined cycle unit more cost effective. This unit can be applicable in both parabolic trough and central receiver
(solar tower) plants.
The potential advantage of the new power block is illustrated by a detailed techno-economical analysis of two 50 MW parabolic
trough power plants, comparing between the standard and the novel power block. The results indicate that the proposed plant suggests
a 4–11% electricity cost saving.
2010 Elsevier Ltd. All rights reserved.
Keywords :
CSP , Parabolic trough , Condensing steam cycle , Kalina cycle , Combined cycle
Journal title :
Solar Energy
Journal title :
Solar Energy