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首页> 外文期刊>Hydrology and Earth System Sciences >Modelling soil temperature and moisture and corresponding seasonality of photosynthesis and transpiration in a boreal spruce ecosystem
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Modelling soil temperature and moisture and corresponding seasonality of photosynthesis and transpiration in a boreal spruce ecosystem

机译:模拟北方云杉生态系统中的土壤温度和湿度以及相应的光合作用和蒸腾季节

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Recovery of photosynthesis and transpiration is strongly restricted by low temperatures in air and/or soil during the transition period from winter to spring in boreal zones. The extent to which air temperature (T_a) and soil temperature (T_s) influence the seasonality of photosynthesis and transpiration of a boreal spruce ecosystem was investigated using a process-based ecosystem model (CoupModel) together with eddy covariance (EC) data from one eddy flux tower and nearby soil measurements at Knott?sen, Sweden. A Monte Carlo-based uncertainty method (GLUE) provided prior and posterior distributions of simulations representing a wide range of soil conditions and performance indicators. The simulated results showed sufficient flexibility to predict the measured cold and warm T_s in the moist and dry plots around the eddy flux tower. Moreover, the model presented a general ability to describe both biotic and abiotic processes for the Norway spruce stand. The dynamics of sensible heat fluxes were well described by the corresponding latent heat fluxes and net ecosystem exchange of CO_2. The parameter ranges obtained are probably valid to represent regional characteristics of boreal conifer forests, but were not easy to constrain to a smaller range than that produced by the assumed prior distributions. Finally, neglecting the soil temperature response function resulted in fewer behavioural models and probably more compensatory errors in other response functions for regulating the seasonality of ecosystem fluxes.
机译:在北方地区从冬季到春季的过渡时期,空气和/或土壤的低温严重限制了光合作用和蒸腾作用的恢复。利用基于过程的生态系统模型(CoupModel)以及来自一个涡流的涡度协方差(EC)数据,研究了气温(T_a)和土壤温度(T_s)对北方云杉生态系统光合作用和蒸腾季节的影响程度瑞典诺特森的流量塔和附近的土壤测量。基于蒙特卡洛的不确定性方法(GLUE)提供了代表各种土壤条件和性能指标的模拟的前后分布。模拟结果显示出足够的灵活性来预测涡流塔周围潮湿和干燥地带的实测T_s和冷T_s。此外,该模型还具有描述挪威云杉林分生物和非生物过程的一般能力。相应的潜热通量和CO_2的净生态系统交换很好地描述了感热通量的动力学。获得的参数范围可能有效代表了北方针叶林的区域特征,但不容易限制在比假定的先验分布所产生的范围更小的范围内。最后,忽略土壤温度响应函数会导致更少的行为模型,并且可能会在其他响应函数中补偿更多的补偿误差,以调节生态系统通量的季节性。

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