Purpose of Review <p>Quantifying the store and flux of carbon across space and time from trees to forest stands, and ultimately at a global scale, has become paramount for a broad range of applications, including individual tree based allometry, landscape scale forest carbon accounting as well as derivation of globally required climate change related variables. Despite this significant information need, the measurement of forest carbon using field methods remains laborious, expensive and logistically complex.</p> Recent Findings <p>Laser scanning technologies mounted on terrestrial, unmanned aerial vehicles or drones, aircraft or satellites have revolutionised the estimation of forest carbon at a variety of spatial and temporal scales with each providing detailed and often unique information about the distribution of biomass and carbon within a stand. In this review, we examined the use of laser scanning technologies for this purpose.&#xa0;</p> Summary <p>To do so we focus on the recently published (within 10 years) peer reviewed&#xa0;literature and consider studies across four information needs, individual tree,&#xa0;stand, regional / national, and global scales. We consider the type of laser&#xa0;scanning data that is typically acquired, data processing pipelines and the&#xa0;products that are produced. After reviewing these studies, we conclude with&#xa0;a discussion of remaining issues associated with the mapping of forest&#xa0;carbon using laser scanning technologies. We also highlight a number of&#xa0;future research directions to further expand the use of this technology for&#xa0;forest carbon mapping globally.&#xa0;&#xa0;</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Advances in Laser Scanning to Assess Carbon in Forests: From Ground-Based to Space-Based Sensors

  • Nicholas C. Coops,
  • Liam A.K. Irwin,
  • Harry S. Seely,
  • Spencer J. Hardy

摘要

Purpose of Review

Quantifying the store and flux of carbon across space and time from trees to forest stands, and ultimately at a global scale, has become paramount for a broad range of applications, including individual tree based allometry, landscape scale forest carbon accounting as well as derivation of globally required climate change related variables. Despite this significant information need, the measurement of forest carbon using field methods remains laborious, expensive and logistically complex.

Recent Findings

Laser scanning technologies mounted on terrestrial, unmanned aerial vehicles or drones, aircraft or satellites have revolutionised the estimation of forest carbon at a variety of spatial and temporal scales with each providing detailed and often unique information about the distribution of biomass and carbon within a stand. In this review, we examined the use of laser scanning technologies for this purpose. 

Summary

To do so we focus on the recently published (within 10 years) peer reviewed literature and consider studies across four information needs, individual tree, stand, regional / national, and global scales. We consider the type of laser scanning data that is typically acquired, data processing pipelines and the products that are produced. After reviewing these studies, we conclude with a discussion of remaining issues associated with the mapping of forest carbon using laser scanning technologies. We also highlight a number of future research directions to further expand the use of this technology for forest carbon mapping globally.