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浅谈空分外包谈判
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作者 张伟 《绿色环保建材》 2016年第11期158-159,共2页
长久以来,国内的空分装置都是由生产企业自行建设并运行的,始终是生产企业的一部分,并未因其具有公用工程属性的特点而有所不同。近些年,随着外包模式在国内的普及应用以及气体产业在国内的迅速发展,空分装置正越来越多地以外包的形式... 长久以来,国内的空分装置都是由生产企业自行建设并运行的,始终是生产企业的一部分,并未因其具有公用工程属性的特点而有所不同。近些年,随着外包模式在国内的普及应用以及气体产业在国内的迅速发展,空分装置正越来越多地以外包的形式为企业所用。所谓外包,即企业出于整合资源、提升核心竞争力、规避风险等目的而采取的把部分非核心业务或生产环节委托给专业厂商或服务商的行为,在当前经济运作日益市场化的环境下,外包能够使企业专注于核心业务领域,把耗费企业有限资源的非核心的业务移交给市场上的专业厂商或服务商,在不影响非核心业务运营的前提下,将各类资源更加集中地投入到企业核心业务中,从而有效地提升企业核心竞争力。 展开更多
关键词 工程物料 公用工程消耗 气价调整 模式
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Parametric sensitivity analysis of precipitation and temperature based on multi-uncertainty quantification methods in the Weather Research and Forecasting model 被引量:3
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作者 DI ZhenHua 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第5期876-898,共23页
Sensitivity analysis(SA) has been widely used to screen out a small number of sensitive parameters for model outputs from all adjustable parameters in weather and climate models, helping to improve model predictions b... Sensitivity analysis(SA) has been widely used to screen out a small number of sensitive parameters for model outputs from all adjustable parameters in weather and climate models, helping to improve model predictions by tuning the parameters. However, most parametric SA studies have focused on a single SA method and a single model output evaluation function, which makes the screened sensitive parameters less comprehensive. In addition, qualitative SA methods are often used because simulations using complex weather and climate models are time-consuming. Unlike previous SA studies, this research has systematically evaluated the sensitivity of parameters that affect precipitation and temperature simulations in the Weather Research and Forecasting(WRF) model using both qualitative and quantitative global SA methods. In the SA studies, multiple model output evaluation functions were used to conduct various SA experiments for precipitation and temperature. The results showed that five parameters(P3, P5, P7, P10, and P16) had the greatest effect on precipitation simulation results and that two parameters(P7 and P10) had the greatest effect for temperature. Using quantitative SA, the two-way interactive effect between P7 and P10 was also found to be important, especially for precipitation. The microphysics scheme had more sensitive parameters for precipitation, and P10(the multiplier for saturated soil water content) was the most sensitive parameter for both precipitation and temperature. From the ensemble simulations, preliminary results indicated that the precipitation and temperature simulation accuracies could be improved by tuning the respective sensitive parameter values, especially for simulations of moderate and heavy rain. 展开更多
关键词 Multi-uncertainty quantification methods Qualitative parameters screening Quantitative sensitivity analysis Weather Research and Forecasting model
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