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Updated: Jun 14, 2025

Simulating Impacts of Ice Storms on Forest Ecosystems
Published on: June 30, 2020
[Response of branch attributes of Larix kaempferi to climate variables]
Wei-Wei Jia1, Min Fan1, Dong-Sheng Chen2
11 Ministry of Education Key Laboratory of Sustainable Forest Ecosystem Management/College of Forestry, Northeast Forestry University, Harbin 150040, China.
Abstract:
We established a mixed-effects model incorporating climatic factors for the base diameter and length of the primary branches of Larix kaempferi using stepwise regression, based on climatic data from a total of 40 standard plots located in Xiaolongshan, Gansu Province, Changlinggang Forest Farm in Jianshi County, Hubei Province, and Dagujia Forest Farm in Qingyuan County, Liaoning Province, as well as the data from 120 L. kaempferi sample trees. Additionally, we created prediction charts for the fixed effects portion of the optimal mixed model to determine the relationship between climatic factors and base diameter and branch length, to explore the differential response of L. kaempferi branches to climatic variables. The results showed that the base diameter mixing model with annual mean temperature and water vapor deficit and the branch length mixing model with annual mean temperature had the best fitting effect, with R2 of 0.6152 and 0.6823, respectively. Based on the fixed effects prediction chart of the mixed model, the overall basal diameter showed an increasing trend with the increases of relative branch depth. The average basal diameter size was in an order of young-aged plantation
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