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Author:
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Category : Fire management
Languages : en
Pages : 326
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Author:
Publisher:
ISBN:
Category : Fire management
Languages : en
Pages : 326
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Author: Daniel Zarin
Publisher: Columbia University Press
ISBN: 9780231129077
Category : Nature
Languages : en
Pages : 476
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-- Thomas Lovejoy, The H. John Heinz III Center for Science, Economics and the Environment.
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Category : Biodiversity
Languages : en
Pages : 666
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Author:
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Category : Forest fires
Languages : en
Pages : 488
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Author:
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Category : Forests and forestry
Languages : en
Pages : 138
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Author: Greg J. Arthaud
Publisher: Springer Science & Business Media
ISBN: 9401703078
Category : Technology & Engineering
Languages : en
Pages : 317
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Book Description
Systems analysis in forestry has continued to advance in sophistication and diversity of application over the last few decades. The papers in this volume were presented at the eighth symposium in the foremost conference series worldwide in this subject area. Techniques presented include optimization and simulation modelling, decision support systems, alternative planning techniques, and spatial analysis. Over 30 papers and extended abstracts are grouped into the topical areas of (1) fire and fuels; (2) networks and transportation; (3) forest and landscape planning; (4) ecological modeling, biodiversity, and wildlife; and (5) forest resource applications. This collection will be of interest to forest planners and researchers who work in quantitative methods in forestry.
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Category : Sedimentation and deposition
Languages : en
Pages : 664
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Author:
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Category : Forest landscape management
Languages : en
Pages : 228
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Book Description
The Interior Northwest Landscape Analysis System (INLAS) links a number of resource, disturbance, and landscape simulations models to examine the interactions of vegetative succession, management, and disturbance with policy goals. The effects of natural disturbance like wildfire, herbivory, forest insects and diseases, as well as specific management actions are included. The outputs from simulations illustrate potential changes in aquatic conditions and terrestrial habitat, potential for wood utilization, and socioeconomic opportunities. The 14 chapters of this document outline the current state of knowledge in each of the areas covered by the INLAS project and describe the objectives and organization of the project. The project explores ways to integrate the effects of natural disturbances and management into planning and policy analyses; illustrate potential conflicts among current policies, natural distrubances, and management activities; and explore the policy, economics, and ecological constraints associated with the application of effective fuel treatments on midscale landscapes in the interior Northwest.
Author:
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Category : Forests and forestry
Languages : en
Pages : 700
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Author: Robert A. Monserud
Publisher: Springer Science & Business Media
ISBN: 9401703094
Category : Technology & Engineering
Languages : en
Pages : 532
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Book Description
Public debate has stimulated interest in finding greater compatibility among forest management regimes. The debate has often portrayed management choices as tradeoffs between biophysical and socioeconomic components of ecosystems. Here we focus on specific management strategies and emphasize broad goals such as biodiversity, wood production and habitat conservation while maintaining other values from forestlands desired by the public. We examine the following proposition: Commodity production (timber, nontimber forest products) and the other forest values (biodiversity, fish and wildlife habitat) can be simultaneously produced from the same area in a socially acceptable manner. Based on recent research in the Pacific Northwest, we show there are alternatives for managing forest ecosystems that avoid the divisive arena of 'either-or' choices. Much of the work discussed in this book addresses two aspects of the compatibility issue. First, how are various forest management practices related to an array of associated goods and services? Second, how do different approaches to forest management affect relatively large and complex ecosystems?