Please use this identifier to cite or link to this item: http://dspace.dtu.ac.in:8080/jspui/handle/repository/16834
Title: EXERGETIC EVALUATION OF DOUBLE HRSG COMBINED CYCLE GAS POWER PLANT
Authors: KUMAR, NEERAJ
Keywords: COMBINED CYCLE
EXERGY
GAS TURBINE
THERMODYNAMIC OPTIMIZATION
HEAT RECOVERY STEAM GENERATOR
Issue Date: Jul-2019
Series/Report no.: TD-4647;
Abstract: The increasing demand for power has made the power plants of scientific interest, but most of the power plants are designed by the energetic performance criteria based on the 1st law of thermodynamics only. The really useful energy loss cannot be justified by the 1st law of thermodynamics, because it does not differentiate between the quality and quantity of energy. The exergy analysis (Second law analysis) is used for providing information about the losses qualitatively as well as quantitatively along with their locations. Exergetic (thermodynamic) optimization improves the performance of a system by reducing the exergetic inefficiencies (exergy dest. and exergy losses) and increasing exergetic efficiency. In this analysis shows exergy efficiency is less at each and every point of unit equipment. Also presents major losses of available energy at combustor, HRSG and gas turbine. The primary objectives of this work are to analyze the system components separately and to identify and quantify the sites having the largest energy and exergy losses at different load. Program code is established using EES software to perform the calculations required for the exergy plant analysis considering real variation ranges of the main operating parameters such as pressure ratio, AFR, and inlet temp. The effects of these parameters on the system performances are investigated.
URI: http://dspace.dtu.ac.in:8080/jspui/handle/repository/16834
Appears in Collections:M.E./M.Tech. Thermal Engineering

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