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基于土壤有机碳密度变化率的畜禽粪便农田承载力估算
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作者 李一鸣 陈晨晨 +6 位作者 赵智强 蒲胜海 马红红 吴湘琳 钱海峰 楚天舒 李晓红 《中国农业大学学报》 CAS CSCD 北大核心 2024年第6期240-248,共9页
为完善面向土壤固碳的畜禽粪便承载力估算方法研究,以北大荒集团和新疆生产建设兵团种养业生产系统为研究对象,根据种养业生产现状与农田土壤固碳机制,以静稳态模型为基础,构建基于土壤有机碳密度变化率的畜禽粪便农田承载力模型;设定... 为完善面向土壤固碳的畜禽粪便承载力估算方法研究,以北大荒集团和新疆生产建设兵团种养业生产系统为研究对象,根据种养业生产现状与农田土壤固碳机制,以静稳态模型为基础,构建基于土壤有机碳密度变化率的畜禽粪便农田承载力模型;设定土壤有机碳密度变化率目标值,估算每hm^(2)农田适宜施用畜禽粪便有机肥量与畜禽承载量。结果表明:1)当农田土壤有机碳密度维持当前水平,北大荒集团和新疆生产建设兵团农田可承载的畜禽养殖量以猪当量计分别为180.5~832.1和14.7~327.6头/hm^(2)。2)考虑土壤固碳需求,两地畜禽养殖业未来发展潜力大。本研究成果可为区域种养结合与绿色低碳发展提供参考资料。 展开更多
关键词 畜禽粪便农田承载力 静稳态模型 土壤有机碳密度变化率 土壤固碳
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Probabilistic total transfer capability analysis based on static voltage stability region integrated with a modified distributed-level nodal-loading model 被引量:2
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作者 WANG Dan ZHOU Yue +3 位作者 JIA HongJie WANG ChengShan LU Ning FAN MengHua 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第12期2072-2084,共13页
In this paper, a new evaluation method of probabilistic TTC based on SVSR calculation is developed through a hierarchical simulation. A smooth technology based on the non-parametric kernel estimator is adapted to obta... In this paper, a new evaluation method of probabilistic TTC based on SVSR calculation is developed through a hierarchical simulation. A smooth technology based on the non-parametric kernel estimator is adapted to obtain the time-dependent probabilistic density function of the feeder-head load data. In order to describe possible operating change directions of the operating point, the original hyper-cone-like(HCL) model is constructed to consider the probabilistic distribution function(PDF) extracted from feeder-head load data to replace the simple Normal Distribution model and the uncertain generator outputs. To realize the fast TTC calculation of the current operating point in random conditions, a sub-hyper-cone-like(SHCL) model in full power injections space is proposed, which is a similarity transformation of the original one. 展开更多
关键词 voltage stability enhancement demand response demand-side management indirect load control heat pump regulation service
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