Please wait a minute...
Frontiers of Engineering Management

ISSN 2095-7513

ISSN 2096-0255(Online)

CN 10-1205/N

Postal Subscription Code 80-905

Front. Eng    2016, Vol. 3 Issue (1) : 1-8    https://doi.org/10.15302/J-FEM-2016005
ENGINEERING MANAGEMENT TREATISES
Synergetic Management Theory for Coal-Based Energy Engineering and the Engineering Practice of Shenhua
Wen Ling()
Shenhua Group Corporation Limited, Beijing 100011, China
 Download: PDF(559 KB)   HTML
 Export: BibTeX | EndNote | Reference Manager | ProCite | RefWorks
Abstract

To deal with problems in synergetic development of coal-based energy engineering, this paper, guided by the philosophy of engineering, proposes the synergetic management philosophy of “factors coordination, systems synergy, dynamic optimization and three-dimension planning.” The paper also establishes the synergetic management system characterized by systems factor synergy, resource-environment synergy and systems boundary extension and supported by the “two-wheel driven” management innovation and technological innovation. In addition, the paper presents a multi-objective dynamic optimization model for energy engineering, designed based on Shenhua’s own engineering practice, to analyze Pareto optimal solution in three scenarios: best resource allocation, minimal environmental impact and maximal value creation. This provides important reference to synergetic development strategies and decision-making in engineering management.

Keywords coal-based energy      engineering synergetic management      two-wheel driven innovation      Shenhua engineering     
Corresponding Author(s): Wen Ling   
Online First Date: 16 March 2016    Issue Date: 26 May 2016
 Cite this article:   
Wen Ling. Synergetic Management Theory for Coal-Based Energy Engineering and the Engineering Practice of Shenhua[J]. Front. Eng, 2016, 3(1): 1-8.
 URL:  
https://academic.hep.com.cn/fem/EN/10.15302/J-FEM-2016005
https://academic.hep.com.cn/fem/EN/Y2016/V3/I1/1
Fig.1  Multi-objective dynamic optimization model for energy engineering.
Fig.2  Diagram of Shenhua engineering factors and their relations.
Fig.3  Optimal Pareto solution of Shenhua engineering system factors synergy.
Fig.4  Optimal Pareto solution of Shenhua resource-environment synergy.
Fig.5  Optimal Pareto solution of Shenhua boundary extension synergy.
Fig.6  Optimal Pareto solution of total environmental investment and total power generation of the coal-fired power business.
1 Liu, H. (1992). The theory of contradictory fractal: the relation between the rule of contradiction and systems science. Science Technology and Dialectics, 3, 1–8.
2 Shenhua Group Corporation Limited. (2014). The annual report of Shenhua Group Corporation Limited.Beijing: Shenhua Group Corporation Limited.
3 The National Bureau of Statistics of the People’s Republic of China. (2013). China Statistics Year Book.Beijing: China Statistics Press.
4 The National Bureau of Statistics of the People’s Republic of China. (2014). The third national economic survey main data bulletin (NO.2). Retrieved from.
5 Xie, K. (2014). A Study on Clean, Efficient and Sustainable Exploration and Utilization of Coal in China.Beijing: Science Press.
6 Yin, R., & Wang, Y. (2007). The Philosophy of Engineering.Beijing: Higher Education Press.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed