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远程协同故障诊断综述及研究 被引量:3
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作者 刘建辉 胡立红 刘琼 《继电器》 CSCD 北大核心 2006年第20期76-80,共5页
远程协同故障诊断技术随着分布式计算、远程信息处理技术、经典故障诊断理论等的学科发展正在受到越来越多关注;但是系统的总结该技术的应用及研究并不多见。在给出远程协同诊断定义基础上,从诊断方法(技术)协同和协同诊断支持构架两个... 远程协同故障诊断技术随着分布式计算、远程信息处理技术、经典故障诊断理论等的学科发展正在受到越来越多关注;但是系统的总结该技术的应用及研究并不多见。在给出远程协同诊断定义基础上,从诊断方法(技术)协同和协同诊断支持构架两个角度详细分析当前研究现状,并针对性地提出了一个通用远程协同诊断系统原型,给出了该原型的关键问题及其解决思路,包括远程协同诊断现场故障信息预处理、协同诊断中心的诊断任务分配及协作机制研究、远程诊断资源的结果融合。结论肯定了远程协同诊断的光明前景。 展开更多
关键词 RCFD 信息预处理 诊断任务分配 结果融合
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远程协同故障诊断综述及研究 被引量:7
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作者 刘建辉 秦现生 《制造技术与机床》 CSCD 北大核心 2006年第12期36-40,共5页
远程协同故障诊断技术随着分布式计算、远程信息处理技术、经典故障诊断理论等的学科发展正在受到越来越多关注。从诊断方法(技术)协同和协同诊断支持构架两个角度详细分析当前研究现状,并针对性地提出了一个通用远程协同诊断系统原型,... 远程协同故障诊断技术随着分布式计算、远程信息处理技术、经典故障诊断理论等的学科发展正在受到越来越多关注。从诊断方法(技术)协同和协同诊断支持构架两个角度详细分析当前研究现状,并针对性地提出了一个通用远程协同诊断系统原型,给出了该原型的关键问题及其解决思路。结论肯定了远程协同诊断的光明前景。 展开更多
关键词 RCFD 信息预处理 任务分配 结果融合
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Modeling of particle transport and combustion phenomena in a large-scale circulating fluidized bed boiler using a hybrid Euler-Lagrange approach 被引量:8
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作者 Wojciech P.Adamczyk Gabriel Wecel +3 位作者 Marcin Klajny Pawel Kozolub Adam Klimanek Ryszard A.Bialecki 《Particuology》 SCIE EI CAS CSCD 2014年第5期29-40,共12页
The constantly developing fiuidized combustion technology has become competitive with a conventional pulverized coal (PC) combustion. Circulating fluidized bed (CFB) boilers can be a good alternative to PC boilers... The constantly developing fiuidized combustion technology has become competitive with a conventional pulverized coal (PC) combustion. Circulating fluidized bed (CFB) boilers can be a good alternative to PC boilers due to their robustness and lower sensitivity to the fuel quality. However, appropriate engineering tools that can be used to model and optimize the construction and operating parameters of a CFB boiler still require development. This paper presents the application of a relatively novel hybrid Euler-Lagrange approach to model the dense gas-solid flow combined with a combustion process in a large-scale indus- trial CFB boiler. In this work, this complex flow has been resolved by applying the ANSYS FLUENT 14.0 commercial computational fluid dynamics (CFD) code. To accurately resolve the multiphase flow, the original CFD code has been extended by additional user-defined functions. These functions were used to control the boiler mass load, particle recirculation process (simplified boiler geometry), and interphase hydrodynamic properties. This work was split into two parts. In the first part, which is referred to as pseudo combustion, the combustion process was not directly simulated. Instead, the effect of the chemi- cal reactions was simulated by modifying the density of the continuous phase so that it corresponded to the mean temperature and composition of the flue gases, In this stage, the particle transport was simu- lated using the standard Euler-Euler and novel hybrid Euler-Lagrange approaches, The obtained results were compared against measured data, and both models were compared to each other. In the second part, the numerical model was enhanced by including the chemistry and physics of combustion. To the best of the authors' knowledge, the use of the hybrid Euler-Lagrange approach to model combustion is a new engineering application of this model, In this work, the combustion process was modeled for air-fuel combustion. The simulation results were compared with experimental data. The performed numerical simulations showed the applicability of the hybrid dense discrete phase model approach to model the combustion process in large-scale industrial CFB boilers. 展开更多
关键词 CFB Fluidization Combustion Particles Large boile rCFD
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