Scheme & comprehensive evaluation of waste heat recovery for a steel rolling furnace

被引:0
|
作者
机构
[1] Xu, Wen-Dong
[2] Yang, Mo
[3] Yong, Qing-Qing
[4] Lü, Jin
来源
Xu, W.-D. | 1600年 / Science Press卷 / 34期
关键词
Waste heat - Waste heat utilization - Carbon dioxide - Efficiency - Parameter estimation - Furnaces - Investments;
D O I
暂无
中图分类号
学科分类号
摘要
By re-arrangement of the equipment of steel rolling furnace, the vapor parameters of waste heat recovery based power generation system could be improved. The thermal efficiency of the steel rolling furnace was also improved. In this article, four schemes have been proposed. Evaluation of waste heat recovery based power generation system is complex. Payback period of investment, thermal efficiency of system, emission reductions of CO2 and convenience of maintenance should be considered. In this paper, the comprehensive evaluation of the waste heat recovery based power generation system with different vapor parameters has been carried out by using the mixed analytic hierarchy process (MAHP). Payback period of investment, thermal efficiency of system, emission reductions of CO2 and convenience of maintenance are four weight indexes in MAHP. Then the evaluation matrix is determined. At last, the comprehensive evaluation is completed through weighted summarization.
引用
收藏
相关论文
共 50 条
  • [21] STUDY ON WASTE HEAT-RECOVERY OF BLAST-FURNACE SLAG .3. PILOT-PLANT EXPERIMENT FOR WASTE HEAT-RECOVERY OF BLAST-FURNACE SLAG
    IWAMI, K
    TAKAHASHI, T
    NARITA, H
    TAKANO, M
    YOSHIMOTO, H
    NAKAGAWA, T
    ATSUMI, T
    TRANSACTIONS OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1986, 26 (12) : B358 - B358
  • [22] WASTE HEAT RECOVERY SYSTEM WITH HEAT PIPE THROUGH PHASE CHANGE IN SMALL BIOMASS FURNACE
    Durcansky, Peter
    Hrabovsky, Peter
    Malcho, Milan
    ENERGY AND CLEAN TECHNOLOGIES CONFERENCE PROCEEDINGS, SGEM 2016, VOL III, 2016, : 351 - 356
  • [23] Comprehensive evaluation of marine waste heat recovery technologies based on Hierarchy-Grey correlation analysis
    Ju-Yong, Jong
    Chang-Hyon, Rim
    Myong-Sin, Choi
    Hyon-Chol, Om
    JOURNAL OF OCEAN ENGINEERING AND SCIENCE, 2019, 4 (04) : 308 - 316
  • [24] Optimization Analysis of Waste Heat Recovery in Blast Furnace Slag Fluidized Bed
    Qiu, Lin
    Sang, Da-Wei
    Feng, Yan-Hui
    Gong, Yi-Hui
    Zhang, Xin-Xin
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2019, 40 (05): : 1086 - 1094
  • [25] Investigation of the waste heat recovery and pollutant emission reduction potential in graphitization furnace
    Lan, Yuncheng
    Zhao, Xudong
    Zhang, Wei
    Mu, Lianbo
    Wang, Suilin
    ENERGY, 2022, 245
  • [26] Test bench for radiative waste heat recovery in steel mills
    Mesonero, I.
    Arroiabe, P. F.
    Iturralde, J.
    Lopez, S.
    Martinez-Agirre, M.
    de Arteche, M. Gomez
    Herrero, S.
    Bou-Ali, M. Mounir
    THERMAL SCIENCE AND ENGINEERING PROGRESS, 2025, 60
  • [27] WASTE HEAT RECOVERY AND USE IN THE BRITISH STEEL CORPORATION.
    Dugwell, D.R.
    1600, (205):
  • [28] EVALUATION OF WASTE HEAT RECOVERY SYSTEMS FOR INDUSTRIAL DECARBONIZATION
    Vesely, Ladislav
    Rapp, Logan
    Kapat, Jayanta
    International Journal of Energy for a Clean Environment, 2024, 25 (08) : 1 - 14
  • [29] Evaluation of waste heat recovery technologies for the cement industry
    Fierro J.J.
    Escudero-Atehortua A.
    Nieto-Londoño C.
    Giraldo M.
    Jouhara H.
    Wrobel L.C.
    International Journal of Thermofluids, 2020, 7-8
  • [30] Furnace Heat Recovery System
    Gmbtt, J.
    South African Mechanical Engineer, 45 (06):