Tropical forests store more than half of the world's terrestrial carbon(C)pool and account for one-third of global net primary productivity(NPP).Many terrestrial biosphere models(TBMs)estimate increased productivi...Tropical forests store more than half of the world's terrestrial carbon(C)pool and account for one-third of global net primary productivity(NPP).Many terrestrial biosphere models(TBMs)estimate increased productivity in tropical forests throughout the 21st century due to CO_(2)fertilization.However,phosphorus(P)liaitations on vegetation photosynthesis and productivity could significantly reduce the CO_(2)fertilization effect.Here,we used a carbon-nitrogen-phosphorus coupled model(Dynamic Land Ecosystem Model;DLEM-CNP)with heterogeneous maximum carboxylation rates to examine how P limitation has affected C fluxes in tropical forests during1860-2018.Our model results showed that the inclusion of the P processes enhanced model performance in simulating ecosystem productivity.We further compared the simulations from DLEM-CNP,DLEM-CN,and DLEMC and the results showed that the inclusion of P processes reduced the CO_(2)fertilization effect on gross primary production(GPP)by 25%and 45%,and net ecosystem production(NEP)by 28%and 41%,respectively,relative to CN-only and C-on ly models.From the 1860s to the 2010s,the DLEM-CNP estimated that in tropical forests GPP increased by 17%,plant respiration(Ra)increased by 18%,ecosystem respiration(Rh)increased by 13%,NEP increased by 121%per unit area,respectively.Additionally,factorial experiments with DLEM-CNP showed that the enhanced NPP benefiting from the CO_(2) fertilization effect had been offset by 135%due to deforestation from the 1860s to the 2010s.Our study highlights the importance of P limitation on the C cycle and the weakened CO_(2)fertilization effect resulting from P limitation in tropical forests.展开更多
并网逆变器是分布式发电系统与电网之间的电能变换接口,然而,随着分布式电源的广泛分布,并网的公共耦合点(point of common coupling,PCC)和电网之间含有较长的输电线路、较多的隔离变压器,导致电网和发电系统之间联络变弱,电网等效阻...并网逆变器是分布式发电系统与电网之间的电能变换接口,然而,随着分布式电源的广泛分布,并网的公共耦合点(point of common coupling,PCC)和电网之间含有较长的输电线路、较多的隔离变压器,导致电网和发电系统之间联络变弱,电网等效阻抗增加,电网呈现弱电网特性.并网逆变器与电网弱联络时,并网逆变器的锁相环(phase-locked loop,PLL)、电流控制环的控制作用会在较广的频域内引入负阻尼,可能导致系统在广域范围内失稳.为了解决这一问题,本文建立了考虑PLL影响的并网逆变器广域阻抗模型,提出了基于阻抗分析的广域稳定性判据,并在此基础上通过在PCC点并联有源阻尼来稳定系统的方法设计了一个广域有源阻尼器,将其并联连接到PCC点,使其在PCC点合成一个并联阻尼电阻以抑制系统产生的谐振.当系统工况发生变化时,通过提取PCC点谐振电压并利用谐波含量限制的方法来自适应调节虚拟电阻值,实现广域范围内镇定系统的效果.最后在MATLAB/Simulink中搭建了并网逆变器等值系统模型,通过时域仿真验证了该广域有源阻尼器的正确性和有效性.仿真结果表明,并网逆变器与电网弱联络时,PLL、电流控制环控制作用等会引起广域谐振稳定性问题,所设计的广域有源阻尼器能有效抑制广域范围内的谐振,且当系统联络突然发生变化时,也可以有效实现系统的广域镇定.展开更多
基金partially supported by the US National Science Foundation(1903722,1243232)。
文摘Tropical forests store more than half of the world's terrestrial carbon(C)pool and account for one-third of global net primary productivity(NPP).Many terrestrial biosphere models(TBMs)estimate increased productivity in tropical forests throughout the 21st century due to CO_(2)fertilization.However,phosphorus(P)liaitations on vegetation photosynthesis and productivity could significantly reduce the CO_(2)fertilization effect.Here,we used a carbon-nitrogen-phosphorus coupled model(Dynamic Land Ecosystem Model;DLEM-CNP)with heterogeneous maximum carboxylation rates to examine how P limitation has affected C fluxes in tropical forests during1860-2018.Our model results showed that the inclusion of the P processes enhanced model performance in simulating ecosystem productivity.We further compared the simulations from DLEM-CNP,DLEM-CN,and DLEMC and the results showed that the inclusion of P processes reduced the CO_(2)fertilization effect on gross primary production(GPP)by 25%and 45%,and net ecosystem production(NEP)by 28%and 41%,respectively,relative to CN-only and C-on ly models.From the 1860s to the 2010s,the DLEM-CNP estimated that in tropical forests GPP increased by 17%,plant respiration(Ra)increased by 18%,ecosystem respiration(Rh)increased by 13%,NEP increased by 121%per unit area,respectively.Additionally,factorial experiments with DLEM-CNP showed that the enhanced NPP benefiting from the CO_(2) fertilization effect had been offset by 135%due to deforestation from the 1860s to the 2010s.Our study highlights the importance of P limitation on the C cycle and the weakened CO_(2)fertilization effect resulting from P limitation in tropical forests.
文摘并网逆变器是分布式发电系统与电网之间的电能变换接口,然而,随着分布式电源的广泛分布,并网的公共耦合点(point of common coupling,PCC)和电网之间含有较长的输电线路、较多的隔离变压器,导致电网和发电系统之间联络变弱,电网等效阻抗增加,电网呈现弱电网特性.并网逆变器与电网弱联络时,并网逆变器的锁相环(phase-locked loop,PLL)、电流控制环的控制作用会在较广的频域内引入负阻尼,可能导致系统在广域范围内失稳.为了解决这一问题,本文建立了考虑PLL影响的并网逆变器广域阻抗模型,提出了基于阻抗分析的广域稳定性判据,并在此基础上通过在PCC点并联有源阻尼来稳定系统的方法设计了一个广域有源阻尼器,将其并联连接到PCC点,使其在PCC点合成一个并联阻尼电阻以抑制系统产生的谐振.当系统工况发生变化时,通过提取PCC点谐振电压并利用谐波含量限制的方法来自适应调节虚拟电阻值,实现广域范围内镇定系统的效果.最后在MATLAB/Simulink中搭建了并网逆变器等值系统模型,通过时域仿真验证了该广域有源阻尼器的正确性和有效性.仿真结果表明,并网逆变器与电网弱联络时,PLL、电流控制环控制作用等会引起广域谐振稳定性问题,所设计的广域有源阻尼器能有效抑制广域范围内的谐振,且当系统联络突然发生变化时,也可以有效实现系统的广域镇定.