Deriving Stand Structural Complexity from Airborne Laser Scanning Data—What Does It Tell Us about a Forest?

Author:

Seidel DominikORCID,Annighöfer Peter,Ehbrecht Martin,Magdon Paul,Wöllauer StephanORCID,Ammer ChristianORCID

Abstract

The three-dimensional forest structure is an important driver of several ecosystem functions and services. Recent advancements in laser scanning technologies have set the path to measuring structural complexity directly from 3D point clouds. Here, we show that the box-dimension (Db) from fractal analysis, a measure of structural complexity, can be obtained from airborne laser scanning data. Based on 66 plots across different forest types in Germany, each 1 ha in size, we tested the performance of the Db by evaluating it against conventional ground-based measures of forest structure and commonly used stand characteristics. We found that the Db was related (0.34 < R < 0.51) to stand age, management intensity, microclimatic stability, and several measures characterizing the overall stand structural complexity. For the basal area, we could not find a significant relationship, indicating that structural complexity is not tied to the basal area of a forest. We also showed that Db derived from airborne data holds the potential to distinguish forest types, management types, and the developmental phases of forests. We conclude that the box-dimension is a promising measure to describe the structural complexity of forests in an ecologically meaningful way.

Funder

Deutsche Forschungsgemeinschaft

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference62 articles.

1. Integrating selected ecological effects of mixed European beech–Norway spruce stands in bioeconomic modelling

2. Managing Forests as Complex Adaptive Systems: Building Resilience to the Challenge of Global Change;Messier,2013

3. Silviculture in an uncertain world. Utilizing multi-aged management systems to integrate disturbance;O’Hara;Forestry,2013

4. Approaches to quantifying forest structures

5. Silvicultural Challenges and Options in the Context of Global Change. “Simple” Fixes and Opportunities for New Management Approaches;Puettmann;J. For.,2011

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