DOI QR코드

DOI QR Code

B.C유 전소발전소에서 바이오중유 혼소·전소시 제어시스템 최적화 방안 고찰

Study on Optimization of Bioheavy Oil Combustion and Conversion Control System in a Heavy Generation Power Plant

  • 투고 : 2021.10.05
  • 심사 : 2022.01.28
  • 발행 : 2022.02.28

초록

Bioheavy oil, which is expanding its range of use as an alternative fuel to reduce environmental pollutant emissions, has a lot of difficulty in combustion due to its low emission of pollutants such as nitrogen oxide (NOx) and sulfur oxide (SOx), while its low dissipation and high oxygen content in fuel. many studies have been conducted on change in characteristics by mixing rate combustion characteristics and combustion reactions, but there have been no specific and effective studies on the composition of control system, optimization of control, development of logic for mixing and burning, minimizing environmental pollutantants discharge. In this study, we intend to consider systemmatic and empirical considerations on the composition, logic development, solve the problem of manual switching of bioler master due to excessive oxygen content and tuning of the control system for optimal combustion of bioheavy oil.

키워드

참고문헌

  1. S. Hong and H. Yoo, "Effect of Fuel Mixing Ratio on Fuel Consumption in a oil Fired Power Plant," Plant jourrnal, vol. 12, no. 3, pp. 39-45, Sep., 2016, [Online], http://www.koreascience.or.kr/article/JAKO201631641551109.page.
  2. S. Back, H. Park, Y. J. Kim, T. H. Kim, and S. H. Kim, "The Demonstration Test Result of 100% BiO Heavy Oil Combustion at The 75MWe Oil Fired Power Plant," Journal of the korean Society of Combustion, vol. 19, no. 2, pp. 28-36, 2014, DOI: 10.15231/jksc.2014.19.2.028.
  3. S. Lee, "A Study on the Bio Heavy Oil Alternation as Large Scale Oil Fired Power Plant Boiler," Ph.D. dissertation, Hoseo Univ., Cheonan, Korea, 2015, [Online], https://scienceon.kisti.re.kr/srch/selectPORSrchArticle.do?cn=DIKO0014152750.
  4. KIPHRD, "Thermal Power Plant Technology II," Jail Printing Company, pp. 317, 2019, [Online], www.kiphrd.co.kr/page/group_edu_list?mode=list.
  5. G.-P. Lim, D.-Y. Park, J.-A. Kim, and H.-H. Lee. "The Development of Boiler Control Algorithm and Distributed Control System for Coal-Fired Power Plant," KIEE. vol. 61, no. 3, pp. 442-450, 2013, DOI: 10.5370/kiee.2012.61.3.442.
  6. J.-A. Kim, "Control function in the digital turbine control systems," Korea Cogeneration Association, vol. 14, pp. 34-37, 2000, [Online], https://www.dbpia.co.kr/journal/articleDetail?nodeId=NODE09589756.
  7. G.-P. Lim and H.-H. Lee, "The Development of Boiler Combustion Air Control Algorithm for Coal-Fired Power Plant," KIEE, vol. 61, no. 4, pp. 153-160, 2012, DOI: 10.5370/kieep. 2012.61.4.153.
  8. S. Back, H. Kim, H. Park, Y. J. Kim, T. H. Kim, and S. H. Kim, "The Four Power Plants Field Demonstration Research on Combustion Characteristic of the Bio Oil for Fuel Switching," Journal of the korean Society of Combustion, vol. 21, no.1, pp. 15-23, 2015, DOI: 10.15231/jksc.2015.20.1.015.
  9. S. Lee, "A Study on the Bio Heavy Oil Alternation as Large Scale Oil Fired Power Plant Boiler," Ph.D. dissertation, Hoseo Univ., Cheonan, Korea, 2016, [Online], https://scienceon.kisti.re.kr/srch/selectPORSrchArticle.do?cn=DIKO0014152750.
  10. EWP Ulsan Power Plant, "Control Equipment Explanation Book," BLR Master Manual Change Condition, pp. 56, 2014, [Online], https://ewp.co.kr.
  11. Y.-O. Shin and C.-K. Jung, " The study of retrofit method for the used control system of power plant to improve its reliability," KIEE, pp. 737-739, 1999, [Online], http://www.koreascience.or.kr/article/CFKO199903977693891.page.
  12. K.-Y. Oh and H.-Y. Kim, "Unit Response Optimize mode Design of Ultra Super Critical Coal-Fired Power Plant based on Fuzzy logic & Mode Predictive Controller," KIEE. vol. 57, no. 12, pp. 2285-2290, Dec., 2008, [Online], http://www.koreascience.or.kr/article/JAKO200804050607885.page.
  13. J. H. Ha, C.-H. Jeon, and Y.-C. Kwon, "A Study on the Emission Characteristics for Blended Power Bio-Fuel Oil," Transactions of the korean hydrogen and energy society, vol. 26, no. 5, pp. 484-492, 2015, DOI: 10.736/khnes.2015.26.5.484.