Power Augmentation in a Kalina Power Station for Medium Temperature Low Grade Heat

Author:

Shankar Ganesh N.1,Srinivas T.2

Affiliation:

1. Department of Mechanical Engineering, Kingston Engineering College, Vellore 632 059, Tamil Nadu, India

2. CO2 Research and Green Technologies Centre, Energy Division, School of Mechanical and Building Sciences, Vellore Institute of Technology (VIT) University, Vellore 632 014, Tamil Nadu, India e-mail:

Abstract

Kalina cycle system (KCS) has an efficient heat recovery especially at low and medium temperatures. The current work focuses on thermodynamic development and assessment of a new KCS configuration to augment the power from a heat recovery of solar thermal collectors. Since, the separator is located at low pressure side; there is no need of throttling device in the proposed plant layout. Nearly 130% of extra working fluid has been found in turbine for expansion against the decreased amount in regular design. Strong solution concentration, separator temperature and turbine inlet condition (pressure and concentration) have been identified as key parameters for the plant evaluation. The performance (specific power and efficiencies) is improving with an increase in strong solution concentration and turbine inlet pressure. But it is decreasing with an increase in separator temperature and turbine concentration. At the maximum value of strong solution concentration, turbine inlet pressure and at the minimum separator temperature and turbine concentration, cycle efficiency, plant efficiency and specific power have been found as 20%, 7.5%, and 270 kW, respectively.

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference18 articles.

1. The Kalina Cycle and Similar Cycles for Geothermal Power Production,1988

2. Exergy Study of the Kalina Cycle,1989

3. Parametric Analysis of Kalina Cycle;ASME J. Gas Turbines and Power,1990

4. Exergoeconomic Optimization of a Kalina Cycle for Power Generation;Int. J. Exergy,2004

5. Integration of Kalina Cycle in a Combined Heat and Power Plant, A Case Study;Appl. Therm. Eng.,2009

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