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Fuzzy and Boolean operation based modelling for evaluation of ecological capability in the Hyrcanian Forests

Author

Listed:
  • Ali Ghomi-Avili

    (Faculty of Natural Resources, Tarbiat Modares University, Noor, Mazandaran, Iran)

  • Moslem Akbarinia

    (Faculty of Natural Resources, Tarbiat Modares University, Noor, Mazandaran, Iran)

  • Seyed-Mohsen Hosseini

    (Faculty of Natural Resources, Tarbiat Modares University, Noor, Mazandaran, Iran)

  • Mohammad-Hasan Talebian

    (Cultural Heritage Training Center, Tehran, Iran)

  • Hannes Dieter Knapp

    (Michael Succow Foundation, Berlin, Germany)

Abstract

Over the past four decades, management plan based on the Boolean Ecological Capability model has caused major problems in the management of the Hyrcanian Forests. The aim of this study is to evaluate ecological capability of five proposed sites including Golestan National Park, Afra Takhteh Yew Forest, Kojoor Forest, Cypress Woodland of Hassanabad-e Chalous, Lomer forest along the Hyrcanian region from east to west, using both Boolean and fuzzy logic and to compare these two models. A total of 10 important factors including slope, aspect, elevation, soil types, soil erosion, soil transformation, canopy cover, the value of species, distance to streams and climate were investigated in this study. The results show that elevation, slope and aspect have the most important role in the classification of the studied area. The results of model validation with field data indicate that the fuzzy gamma model shows the better assessment, accuracy and reliability compared to the Boolean model. Based on the obtained results we suggest the fuzzy-based operation model in sustainable protection planning in the Hyrcanian Forests.

Suggested Citation

  • Ali Ghomi-Avili & Moslem Akbarinia & Seyed-Mohsen Hosseini & Mohammad-Hasan Talebian & Hannes Dieter Knapp, 2020. "Fuzzy and Boolean operation based modelling for evaluation of ecological capability in the Hyrcanian Forests," Journal of Forest Science, Czech Academy of Agricultural Sciences, vol. 66(4), pages 170-184.
  • Handle: RePEc:caa:jnljfs:v:66:y:2020:i:4:id:130-2019-jfs
    DOI: 10.17221/130/2019-JFS
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    References listed on IDEAS

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    1. Rocchini, Duccio & Ricotta, Carlo, 2007. "Are landscapes as crisp as we may think?," Ecological Modelling, Elsevier, vol. 204(3), pages 535-539.
    2. Brent Sohngen & Robert Mendelsohn & Roger Sedjo, 1999. "Forest Management, Conservation, and Global Timber Markets," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 81(1), pages 1-13.
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