Conceptualizing Forest Operations Planning and Management Using Principles of Functional Complex Systems Science to Increase the Forest’s Ability to Withstand Climate Change

Author:

Tampekis Stergios1ORCID,Kantartzis Apostolos2ORCID,Arabatzis Garyfallos2,Sakellariou Stavros3ORCID,Kolkos Georgios4ORCID,Malesios Chrisovalantis5ORCID

Affiliation:

1. Department of Forestry and Natural Environment Management, Agricultural University of Athens, 3 Dimokratias St., 36100 Karpenisi, Greece

2. Department of Forestry and Management of the Environment and Natural Resources, Democritus University of Thrace, 193 Pantazidou St., 68200 Orestiada, Greece

3. Department of Environmental Sciences, University of Thessaly, 41500 Larisa, Greece

4. Department of Forestry and Natural Environment, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece

5. Department of Agricultural Economics and Rural Development, Agricultural University of Athens, 75 Iera Odos St., 11855 Athens, Greece

Abstract

The sustainable management of forest resources is greatly influenced by forest operations (FO). Interactions between humans and nature describe how people engage with and are impacted by the natural world. As we enter the Anthropocene epoch, we are being compelled to reevaluate our past and present methods of managing and planning our forest operations in order to find new ones that are more adaptable and successful at addressing the growing unpredictability resulting from accelerating global change. We briefly discuss the goals and constraints of the prior and current management and planning principles for forest operations in this study, focusing on how these principles have evolved on a worldwide scale. We then propose a promising idea, such as managing forest operations as complex adaptive systems and approaches based on resilience and sustainable use of forest resources, in order to achieve the necessary economic, social, and ecological goals. An in-depth understanding of the ecological, economic, and social factors that influence forest resilience is necessary for planning and managing forest operations efficiently. The proposed strategy combines the effectiveness of forest operations with a functional, complex network approach in order to manage forests for the Anthropocene.

Publisher

MDPI AG

Reference121 articles.

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3. Dynamics of complex systems: Scaling laws for the period of Boolean networks;Albert;Phys. Rev. Lett.,2000

4. Kalman, R.E., Falb, P.L., and Arbib, M.A. (1969). Topics in Mathematical System Theory, McGraw-Hill.

5. Viewing forests through the lens of complex systems science;Filotas;Ecosphere,2014

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