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Adaptation of the Integrated Nitrogen Model for Catchments (INCA) to seasonally snow-covered catchments

机译:集水区综合氮模型(INCA)适应季节性积雪的集水区

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Testing of the Integrated Nitrogen model for Catchments (INCA) in a wide range of ecosystem types across Europe has shown that the model underestimates N transformation processes to a large extent in northern catchments of Finland and Norway in winter and spring. It is found, and generally assumed, that microbial activity in soils proceeds at low rates at northern latitudes during winter, even at sub-zero temperatures. The INCA model was modified to improve the simulation of N transformation rates in northern catchments, characterised by cold climates and extensive snow accumulation and insulation in winter, by introducing an empirical function to simulate soil temperatures below the seasonal snow pack, and a degree-day model to calculate the depth of the snow pack. The proposed snow-correction factor improved the simulation of soil temperatures at Finnish and Norwegian field sites in winter, although soil temperature was still underestimated during periods with a thin snow cover. Finally, a comparison between the modified INCA version (v.1.7) and the former version (v.1.6) was made at the Simojoki river basin in northern Finland and at Dalelva Brook in northern Norway. The new modules did not imply any significant changes in simulated NO3- concentration levels in the streams but improved the timing of simulated higher concentrations. The inclusion of a modified temperature response function and an empirical snow-correction factor improved the flexibility and applicability of the model for climate effect studies. style="line-height: 20px;">Keywords: inorganic N leaching, degree-day snow model, snow pack, catchment scale model
机译:在欧洲范围内的各种生态系统中,对流域综合氮模型(INCA)的测试表明,该模型在冬季和春季大大低估了芬兰和挪威北部流域的氮转化过程。已经发现并且通常认为,冬季,即使在零下温度下,土壤中微生物的活动在北纬低速进行。通过引入经验函数来模拟季节性积雪以下的土壤温度和度数天数,对INCA模型进行了修改,以改善北部流域氮素转化率的模拟,其特征是寒冷的气候以及冬季广泛的积雪和绝热,其特征在于模型以计算积雪的深度。尽管在薄雪覆盖的时期土壤温度仍被低估,但拟议的降雪因子改善了芬兰和挪威野外冬季土壤温度的模拟。最后,在芬兰北部的Simojoki流域和挪威北部的Dalelva Brook进行了修改后的INCA版本(v.1.7)和旧版本(v.1.6)的比较。新的模块并没有暗示流中模拟NO 3 -浓度水平的任何显着变化,但改善了模拟较高浓度的时间。修改后的温度响应函数和经验雪校正因子的加入提高了该模型在气候效应研究中的灵活性和适用性。 style =“ line-height:20px;”> 关键字: 无机氮淋滤,度日积雪模型,积雪,集水规模模型

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