Managing for ecosystem services in northern Arizona ponderosa pine forests using a novel simulation-to-optimization methodology

Forest managers are faced with the difficulty of promoting multiple ecosystem services (ES) with an incomplete understanding of the complex ways these ES interact. We developed a quantitative model to help managers better understand the effect of different management options on eight ES over time. T...

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Main Authors: Bagdon, Benjamin A., Huang, Ching-Hsun, Dewhurst, Stephen
Format: Article in Journal/Newspaper
Language:unknown
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0304380015005803
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spelling ftrepec:oai:RePEc:eee:ecomod:v:324:y:2016:i:c:p:11-27 2024-04-14T08:00:06+00:00 Managing for ecosystem services in northern Arizona ponderosa pine forests using a novel simulation-to-optimization methodology Bagdon, Benjamin A. Huang, Ching-Hsun Dewhurst, Stephen http://www.sciencedirect.com/science/article/pii/S0304380015005803 unknown http://www.sciencedirect.com/science/article/pii/S0304380015005803 article ftrepec 2024-03-19T10:31:24Z Forest managers are faced with the difficulty of promoting multiple ecosystem services (ES) with an incomplete understanding of the complex ways these ES interact. We developed a quantitative model to help managers better understand the effect of different management options on eight ES over time. These ES were (1) Mexican spotted owl (Strix occidentalis lucida) habitat, (2) the harvest of merchantable timber, (3) the harvest of woody biomass for potential conversion to bioenergy, (4) northern goshawk (Accipiter gentilis) habitat, (5) scenic beauty, (6) fire hazard reduction, (7) carbon storage, and (8) restoration of pre-European settlement forest structure represented through larger quadratic mean diameters (QMD). We integrated production functions for these eight ES with a forest growth-and-yield model to simulate the effects of three management actions over a 45-year period in northern Arizona, USA. We scaled ES values based on their observed maximum and minimum values as a means to compare achievement levels between ES. These scaled ES values were input into a goal-programming model to identify the optimal management regimes given a corresponding set of five different management objectives. The combination of simulation modeling with goal-programming is a novel approach for evaluating ES responses to management and for optimizing ES attainment objectives. To illustrate the value of this novel approach, we designed management objectives to reflect the likely goals a forest manager may choose for each ES in this region. ES goals were distinguished at the forest- and stand-level spatial extents. Results demonstrate the flexibility of the ES optimization model to plan for a variety of situations and preferences. For instance, two ES management goals viewed as conflicting are the protection of Mexican Spotted Owl habitat and the reduction of fire hazard risk. One ES optimization scenario (Scenario 5) produces a plan that reduces area considered as having a high fire hazard from 56% to 7% of the study area in ... Article in Journal/Newspaper Accipiter gentilis Northern Goshawk RePEc (Research Papers in Economics)
institution Open Polar
collection RePEc (Research Papers in Economics)
op_collection_id ftrepec
language unknown
description Forest managers are faced with the difficulty of promoting multiple ecosystem services (ES) with an incomplete understanding of the complex ways these ES interact. We developed a quantitative model to help managers better understand the effect of different management options on eight ES over time. These ES were (1) Mexican spotted owl (Strix occidentalis lucida) habitat, (2) the harvest of merchantable timber, (3) the harvest of woody biomass for potential conversion to bioenergy, (4) northern goshawk (Accipiter gentilis) habitat, (5) scenic beauty, (6) fire hazard reduction, (7) carbon storage, and (8) restoration of pre-European settlement forest structure represented through larger quadratic mean diameters (QMD). We integrated production functions for these eight ES with a forest growth-and-yield model to simulate the effects of three management actions over a 45-year period in northern Arizona, USA. We scaled ES values based on their observed maximum and minimum values as a means to compare achievement levels between ES. These scaled ES values were input into a goal-programming model to identify the optimal management regimes given a corresponding set of five different management objectives. The combination of simulation modeling with goal-programming is a novel approach for evaluating ES responses to management and for optimizing ES attainment objectives. To illustrate the value of this novel approach, we designed management objectives to reflect the likely goals a forest manager may choose for each ES in this region. ES goals were distinguished at the forest- and stand-level spatial extents. Results demonstrate the flexibility of the ES optimization model to plan for a variety of situations and preferences. For instance, two ES management goals viewed as conflicting are the protection of Mexican Spotted Owl habitat and the reduction of fire hazard risk. One ES optimization scenario (Scenario 5) produces a plan that reduces area considered as having a high fire hazard from 56% to 7% of the study area in ...
format Article in Journal/Newspaper
author Bagdon, Benjamin A.
Huang, Ching-Hsun
Dewhurst, Stephen
spellingShingle Bagdon, Benjamin A.
Huang, Ching-Hsun
Dewhurst, Stephen
Managing for ecosystem services in northern Arizona ponderosa pine forests using a novel simulation-to-optimization methodology
author_facet Bagdon, Benjamin A.
Huang, Ching-Hsun
Dewhurst, Stephen
author_sort Bagdon, Benjamin A.
title Managing for ecosystem services in northern Arizona ponderosa pine forests using a novel simulation-to-optimization methodology
title_short Managing for ecosystem services in northern Arizona ponderosa pine forests using a novel simulation-to-optimization methodology
title_full Managing for ecosystem services in northern Arizona ponderosa pine forests using a novel simulation-to-optimization methodology
title_fullStr Managing for ecosystem services in northern Arizona ponderosa pine forests using a novel simulation-to-optimization methodology
title_full_unstemmed Managing for ecosystem services in northern Arizona ponderosa pine forests using a novel simulation-to-optimization methodology
title_sort managing for ecosystem services in northern arizona ponderosa pine forests using a novel simulation-to-optimization methodology
url http://www.sciencedirect.com/science/article/pii/S0304380015005803
genre Accipiter gentilis
Northern Goshawk
genre_facet Accipiter gentilis
Northern Goshawk
op_relation http://www.sciencedirect.com/science/article/pii/S0304380015005803
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