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Economics of size-structured forestry with carbon storage

机译:碳储存尺寸结构林业经济学

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摘要

We study the economics of carbon storage using a model that includes forest size structure and determines the choice between rotation forestry and continuous cover forestry. Optimal harvests may rely solely on thinning, implying infinite rotation and continuous cover forestry, or both thinning and clearcuts, implying finite rotation periods. Given several carbon prices and interest rates, we optimize the timing and intensity of thinnings along with the choice of management regime. In addition to the carbon storage in living trees, we include the carbon dynamics of dead trees and timber products. Forest growth is specified by an empirically validated transition matrix model for Norway spruce (i>Picea abies/i> (L.) Karst.). The optimization problem is solved in its general dynamic form by applying bilevel optimization with gradient-based interior point methods and a genetic algorithm. Carbon pricing postpones thinnings, increases stand density by directing harvests to larger trees, and typically yields a regime shift from rotation forestry to continuous cover forestry. In continuous cover solutions, the steady-state harvesting interval and the diameter distribution of standing and harvested trees are sensitive to carbon price, implying that carbon pricing increases the sawlog ratio of timber yields. Additionally, we obtain relatively inexpensive stand-level marginal costs of carbon storage.
机译:我们使用包括森林尺寸结构的模型研究碳储存经济学,并决定旋转林业和连续覆盖林业的选择。最佳收集可以仅依赖于稀疏,暗示无限旋转和连续覆盖林业,或稀疏和清除窗口,暗示有限旋转周期。鉴于多种碳价格和利率,我们优化了薄薄的时机和强度以及管理制度的选择。除了生活树中的碳储存外,我们还包括死树木和木材产品的碳动力学。森林生长是由挪威云杉的经验验证的过渡矩阵模型指定的(& i> Picea& / i>(L.)喀斯特。)。通过用基于梯度的内部点方法和遗传算法应用双纤维优化来解决优化问题。碳定价推迟薄荷,通过将收获引导到较大的树木来增加支架密度,并且通常从旋转林中换到连续覆盖林业。在连续覆盖解决方案中,站立和收获树木的稳态收获间隔和直径分布对碳价格敏感,这意味着碳定价会增加木材产量的锯齿比。此外,我们获得了碳储存的相对便宜的支架边际成本。

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