Study of the work and efficiency improvement of combined-cycle gas turbine plants

Author:

Mendeleev D.I.,Galitskii Yu Ya,Marin G.E.,Akhmetshin A.R.

Abstract

The purpose of the paper is to study and analyze the possibility of increasing the power output of a combined-cycle gas turbine (CCGT) unit during the period of positive ambient temperatures. The first task is to analyze the operation of a 110 MW combined-cycle power unit at various ambient temperatures and to obtain alterations in the main CCGT characteristics when the ambient temperature changes. The other task is to study the usage of an absorption refrigeration machine in a CCGT cycle to increase its energy efficiency. Calculations of the thermal scheme of a gas turbine were carried out using mathematical modeling, the steam turbine was calculated based on guidelines. The conducted studies allow to conclude that the use of an absorption refrigeration machine in the cycle of a combined-cycle plant can improve the efficiency of the unit, increasing profits from power generation, and reducing penalties for non-compliance with the load schedule.

Publisher

EDP Sciences

Reference17 articles.

1. The energy strategy of Russia for the period up to 2030 (approved by the Order of the Government of the Russian Federation No. 1715-p dated November 13, 2009) [Electronic resource], Reference Legal System Consultant Plus.

2. Optimisation of Combined Cycle Gas Turbine Power Plant in Intraday Market: Riga CHP-2 Example

3. Government Decree dated October 24, 2003 N 643 “On the rules of the wholesale electricity market (power) during the transition period” [Electronic resource], Reference Legal System Consultant Plus.

4. Mendeleev D.I., Marin G.E., Eds. Safronov S.V., Factors affecting the ability of the CCGT unit to generate a given power and the fulfillment of a given electrical load curve, Modern technology in the energy sector. All-Russian Specialized Scientific and Practical Conference of Young Specialists, 36–40 (2018)

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