A CASE STUDY OF FUEL SAVING AND EMISSION DEDUCTION FOR COAL-FIRED THERMAL POWER PLANT
The paper presents a case study of fuel saving for coal-fired thermal power plant (CTPP) when a heat pump (HP) is installed in its thermal cycle for transferring the thermal energy from closed-circuit cooling water (CCCW) system to condensate line. The doing will make the feedwater temperature to increase. Besides, the water from cool side of HP will be used for cooling the closed-circuit cooling water (CCCW) leading to the extracted cooling pump need not to operate. Those advantages will be converted to fuel coal saving in compensation of extra power for heat pump. Finally, the CO2 emission deduction will be calculated.
energy saving, CO2 emission deduction, coal-fired thermal power plant, auxiliary power.
Received: March 29, 2021; Accepted: May 12, 2021; Published: July 31, 2021
How to cite this article: Cao Trung Do, A case study of fuel saving and emission deduction for coal-fired thermal power plant, JP Journal of Heat and Mass Transfer 23(2) (2021), 247-261. DOI: 10.17654/HM023020247
This Open Access Article is Licensed under Creative Commons Attribution 4.0 International License
References:
[1] https://en.wikiversity.org/wiki/Power_Generation/Steam_Power.[2] https://www.iea.org/reports/world-energy-outlook-2020#world-energy-model-and-special-reports.[3] Pha Lai Energy Audit, 2019.[4] M. L. Mittal, C. Sharma and R. Singh, Estimates of emissions from coal fired thermal power plants in India, 2012 International Emission Inventory Conference, 2012, pp. 13-16.[5] S. Nazari, O. Shahhoseini, A. Sohrabi-Kashani, S. Davari, R. Paydar and Z. Delavar-Moghadam, Experimental determination and analysis of CO2, SO2 and NOx emission factors in Iran’s thermal power plants, Energy 35(7) (2010), 2992-2998.[6] Xiao Wu, Jiong Shen, Yiguo Li and Kwang Y. Lee, Steam power plant configuration, design, and control, WIREs Energy Environ. 4(6) (2015), 537-563.doi:10.1002/wene.161.[7] L. Sun, D. Li, K. Y. Lee and Y. Xue, Control-oriented modeling and analysis of direct energy balance in coal-fired boiler-turbine unit, Control Engineering Practice 55 (2016), 38-55.[8] R. D. Bell and K. J. Astrom, Dynamic models for boiler-turbine alternator units: data logs and parameter estimation for a 160MW unit, Lund Institute of Technology, Sweden, Tech. Rep. TFRT-3192, 1987.[9] S. Li, H. Liu, W. J. Cai, Y. C. Soh and L. H. Xie, A new coordinated control strategy for boiler-turbine system of coal-fired power plant, IEEE Trans. Contr. Syst. Technol. 13 (2005), 943-954.[10] Johannes Michael Peter van der Looij, Dynamic modeling and control of coal fired fluidized bed boilers, Delft University of Technology, 1988.[11] K. J. Astrom and R. D. Bell, Drum-boiler dynamics, Automatica 36 (2000), 363-378.