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Priestley-Taylor模型在江西省适用性研究 被引量:3
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作者 燕辉 吴立峰 +2 位作者 鲁向晖 董建华 戴盼伟 《节水灌溉》 北大核心 2019年第12期88-94,101,共8页
为了提高Prietley-Taylor(P-T)模型在江西省的适用性和精度,提高区域作物需水量估算精度和水资源优化配置水平,使用了江西省26个气象站1961-2010年逐日气象数据,以FAO Penman-Monteith(P-M)模型为标准,使用对P-T模型参数进行了全年率定(... 为了提高Prietley-Taylor(P-T)模型在江西省的适用性和精度,提高区域作物需水量估算精度和水资源优化配置水平,使用了江西省26个气象站1961-2010年逐日气象数据,以FAO Penman-Monteith(P-M)模型为标准,使用对P-T模型参数进行了全年率定(PT1)和分季率定(PT2),并对P-T模型模拟结果进行了评价和精度分析,并使用周边省份17个站点气象数据建立模型,对模型参数进行了空间插值。结果显示:全年率定参数α介于1.05~1.18之间,且参数呈现北部平原最高,西部山区较低的趋势。分季率定模式下,春季和夏季参数值较小,冬季最大,并呈现一定程度的高估。P-T模型两种率定方法在年尺度和月尺度上均呈现出了较好适用性,但t检验结果显示,分季率定模式数据一致性更高。PT2对P-T模型随季节变化的响应能力得到了增强,精度和适应性得到了提高,可用于在气象资料缺乏条件下江西省ET0的简化计算。 展开更多
关键词 参考作物蒸发蒸腾量 江西 Priestley-Taylor 参数方法 分季率定
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The effects of an experimental drought on the ecophysiology and fruiting phenology of a tropical rainforest palm
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作者 Nara O.Vogado Michael J.Liddell +6 位作者 Susan G.W.Laurance Mason J.Campbell Alexander W.Cheesman Jayden E.Engert Ana C.Palma Françoise Y.Ishida Lucas A.Cernusak 《Journal of Plant Ecology》 SCIE CSCD 2020年第6期744-753,共10页
Aims Anthropogenic climate change is predicted to increase mean temperatures and rainfall seasonality.How tropical rainforest species will respond to this climate change remains uncertain.Here,we analysed the effects ... Aims Anthropogenic climate change is predicted to increase mean temperatures and rainfall seasonality.How tropical rainforest species will respond to this climate change remains uncertain.Here,we analysed the effects of a 4-year experimental throughfall exclusion(TFE)on an Australian endemic palm(Normambya normanbyi)in the Daintree rainforest of North Queensland,Australia.We aimed to understand the impact of a simulated reduction in rainfall on the species’physiological processes and fruiting phenology.Methods We examined the fruiting phenology and ecophysiology of this locally abundant palm to determine the ecological responses of the species to drought.Soil water availability was reduced overall by~30%under a TFE experiment,established in May 2015.We monitored monthly fruiting activity for 8 years in total(2009–2018),including 4 years prior to the onset of the TFE.In the most recent year of the study,we measured physiological parameters including photosynthetic rate,stomatal conductance and carbon stable isotopes(δ13C,an integrated measure of water use efficiency)from young and mature leaves in both the dry and wet seasons.Important Findings We determined that the monthly fruiting activity of all palms was primarily driven by photoperiod,mean solar radiation and mean temperature.However,individuals exposed to lower soil moisture in the TFE decreased significantly in fruiting activity,photosynthetic rate and stomatal conductance.We found that these measures of physiological performance were affected by the TFE,season and the interaction of the two.Recovery of fruiting activity in the TFE palms was observed in 2018,when there was an increase in shallow soil moisture compared with previous years in the treatment.Our findings suggest that palms,such as the N.normanbyi,will be sensitive to future climate change with long-term monitoring recommended to determine population-scale impacts. 展开更多
关键词 climate change water use efficiency stable isotopes SEASONALITY reproductive phenology
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