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Modeling General Response to Silvicultural Treatments in Loblolly Pine Stands.

机译:模拟火炬松林分中对造林处理的一般反应。

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摘要

Basal area and dominant height growth and survival models incorporating general response to silvicultural treatments for loblolly pine stands were developed using data from various silvicultural experiments across Southern United States. Growth models for treated stands were developed by multiplying base-line growth models with modifier response functions/multipliers accounting for effects of thinning, fertilization, and control of competing vegetation. Chapman-Richards functions were used to model the base-line growth. Separate response functions to mid-rotation thinning and fertilization effects were developed. The thinning response function was based on duration and rate parameters and is sensitive to stand age at the time of thinning, time since thinning, and intensity of thinning. The fertilization response functions were based on Weibull distribution and the magnitude of responses varies with time since application of fertilizers, type of fertilizer elements applied, and rate of application. Response functions were integrated as a multiplier to base-line models. Response to early control of competing vegetation was incorporated into base-line models through multiplier factors. Multiplier factors were calculated based on growth difference between treated and untreated stands. A difference function, derived from differential equation with age, initial stand density, and site index served as the base-line survival model. The survival model was adjusted for thinning treatment by including an additional independent variable that represents thinning intensity. No adjustment was required for survival model in response to fertilization and competing vegetation control. All growth models were unbiased and had adequate performance in predicting basal area and dominant height following treatments. Models were developed to represent general growth trends in response to treatments. The response functions developed here can be viewed as general response functions.
机译:使用来自美国南部的各种造林实验数据,开发了结合了对火炬松林分进行造林处理的一般反应的基础面积和优势身高生长和生存模型。通过将基线生长模型与修饰因子响应函数/乘数相乘(考虑到间伐,施肥和竞争性植被的控制),来开发处理过的林分的生长模型。 Chapman-Richards函数用于模拟基线增长。开发了对中转稀疏和施肥效应的单独响应函数。稀疏响应函数基于持续时间和速率参数,并且对稀疏时的林分年龄,稀疏后的时间以及稀疏强度敏感。施肥响应函数基于威布尔分布,并且自施肥以来施肥响应,施肥量,施肥类型和施肥量随时间变化。响应功能已集成为基准模型的乘数。通过竞争因子将对竞争性植被早期控制的响应纳入基线模型。根据处理后和未处理林分之间的生长差异计算乘数因子。从年龄,初始林分密度和站点指数的微分方程得出的差异函数用作基线生存模型。通过包括代表稀疏强度的附加自变量来调整生存模型以进行稀疏处理。对于施肥和竞争性植被控制,无需对生存模型进行调整。所有生长模型均无偏倚,并且在预测治疗后的基础面积和显性身高方面具有足够的表现。开发了代表治疗反应的总体增长趋势的模型。此处开发的响应函数可以视为一般响应函数。

著录项

  • 作者

    Gyawali, Nabin.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Agriculture Forestry and Wildlife.;Natural Resource Management.;Statistics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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