Understanding US biodiesel industry growth using system dynamics modeling

被引:18
|
作者
Bantz, Steven G. [1 ]
Deaton, Michael L. [2 ]
机构
[1] James Madison Univ, Masters Degree Program Integrated Sci & Technol, Harrisonburg, VA 22807 USA
[2] James Madison Univ, Dept Integrate Sci & Technol, Harrisonburg, VA 22807 USA
关键词
D O I
10.1109/SIEDS.2006.278731
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
The production capacity of the biodiesel industry is experiencing exponential growth. Demand is driven by environmental, social, and economic factors and helped along by government mandates and incentives. Suppliers are having difficulty keeping up with demand. The U.S. production capacity has grown by a factor of ten in the past two years, and between thirty and forty new plants are currently in or near construction phase. Continued strong growth of biodiesel production capacity depends on producer/supplier profitability, which will be influenced by several factors such as biomass oil feedstock prices, product/co-product prices, production technologies, and government regulations/incentives. How, why, and to what extent will the growth of the biodiesel industry be influenced by these factors? To explore possible answers to these questions, we describe the formulation of a system dynamics model of the U.S. biodiesel marketplace. The construction and use of this model will provide a framework for understanding the causal-loop/feedback structure and dynamics of this industry and how changes in key variables (e.g. feedstock price or change in government incentives) impact growth. Using system dynamics modeling, we envision and put into perspective the possible growth behavior scenarios for this industry over the next decade.
引用
收藏
页码:156 / +
页数:3
相关论文
共 50 条
  • [21] Econometric modeling of the US restaurant industry
    Reynolds, Dennis
    Rahman, Imran
    Balinbin, William
    INTERNATIONAL JOURNAL OF HOSPITALITY MANAGEMENT, 2013, 34 : 317 - 323
  • [22] Understanding bicycling in cities using system dynamics modelling
    Macmillan, Alexandra
    Woodcock, James
    JOURNAL OF TRANSPORT & HEALTH, 2017, 7 : 269 - 279
  • [23] Gold Price Modeling Using System Dynamics
    Tharmmaphornphilas, Wipawee
    Lohasiriwat, Haruetai
    Vannasetta, Pathompol
    ENGINEERING JOURNAL-THAILAND, 2012, 16 (05): : 57 - 67
  • [24] Simplified modeling of butane dehydrogenation: deeper understanding of the system's dynamics
    Hamad, Honar J.
    Khoshnaw, Sarbaz H. A.
    Shahzad, Muhammad
    PHYSICA SCRIPTA, 2024, 99 (07)
  • [25] An overview of application of system dynamics Modeling for analysis of Indian sugar industry
    Javalagi, C. M.
    Bhushi, U. M.
    2007 IEEE INTERNATIONAL CONFERENCE ON INDUSTRIAL ENGINEERING AND ENGINEERING MANAGEMENT, VOLS 1-4, 2007, : 1828 - +
  • [26] Understanding The US Visa System
    Donahue, David T.
    CHEMICAL & ENGINEERING NEWS, 2011, 89 (01) : 21 - 22
  • [27] Understanding phototrophic growth: Modeling temporal resource allocation and diurnal dynamics in cyanobacterial
    Steuer, R.
    FEBS JOURNAL, 2015, 282 : 8 - 8
  • [28] Understanding Polarization Properties of InAs Quantum Dots by Atomistic Modeling of Growth Dynamics
    Tasco, Vittorianna
    Usman, Muhammad
    Todaro, Maria Teresa
    De Giorgi, Milena
    Passaseo, Adriana
    PHYSICS OF SEMICONDUCTORS, 2013, 1566 : 15 - +
  • [29] Modeling Influencing Factors for Passenger Flow Growth of Modern Trams Using System Dynamics Method
    Ye, Mae
    Yang, Ninghui
    Li, Zhibin
    Ma, Lingling
    Chen, Yajing
    JOURNAL OF ADVANCED TRANSPORTATION, 2019, 2019
  • [30] Modeling Human Immune System Using a System Dynamics Approach
    Knop, I. O.
    Pigozzo, A. B.
    Quintela, B. M.
    Macedo, G. C.
    Barbosa, C. B.
    dos Santos, R. W.
    Lobosco, M.
    5TH EUROPEAN CONFERENCE OF THE INTERNATIONAL FEDERATION FOR MEDICAL AND BIOLOGICAL ENGINEERING, PTS 1 AND 2, 2012, 37 : 363 - +