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不同规范组合梁抗火设计方法的比较和分析 被引量:8
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作者 陈玲珠 蒋首超 +1 位作者 李国强 gianluca ranzi 《防灾减灾工程学报》 CSCD 北大核心 2015年第1期69-78,共10页
首先介绍了中国规范、欧洲规范和英国规范中的组合梁抗火设计方法,并通过算例对比了根据各国规范预测的临界温度和耐火极限。对比发现:对于常温下按完全剪力连接设计的组合梁,各国规范计算出的临界温度相差不是很大,其中欧洲规范的计算... 首先介绍了中国规范、欧洲规范和英国规范中的组合梁抗火设计方法,并通过算例对比了根据各国规范预测的临界温度和耐火极限。对比发现:对于常温下按完全剪力连接设计的组合梁,各国规范计算出的临界温度相差不是很大,其中欧洲规范的计算值最高,而英国规范的计算值最低。对于常温下按部分剪力连接设计的组合梁,以中国规范中承载力法得到的临界温度可能不安全,建议增加对高温下剪力连接件抗剪承载力的验算;而以中国规范中临界温度法得到的临界温度过于保守,建议将中国规范中临界温度法推荐的表格适用范围局限于常温下按完全剪力连接设计的组合梁。 展开更多
关键词 部分剪力连接组合梁 抗火设计 抗火规范
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方形钢管和钢管混凝土的性能研究
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作者 Wha-Jung Kim gianluca ranzi 《钢结构》 2008年第7期75-75,共1页
对方钢管和钢管混凝土的局部屈曲进行研究,主要分析不同的深厚比对钢构件的影响。通过对24个深厚比数值为50~125的构件进行试验发现,混凝土的存在会影响已有的屈曲模式,并显著增加钢管混凝土的屈曲承载力。采用ABAQUS软件建立数值... 对方钢管和钢管混凝土的局部屈曲进行研究,主要分析不同的深厚比对钢构件的影响。通过对24个深厚比数值为50~125的构件进行试验发现,混凝土的存在会影响已有的屈曲模式,并显著增加钢管混凝土的屈曲承载力。采用ABAQUS软件建立数值模型,并与试验结果进行有效对比。从设计角度来看,当构件深厚比高于50时,计算钢构件对钢管混凝土承载力贡献的同时应包含局部屈曲效应。例如,对深厚比超过120的细长板,其后屈曲效应能明显增加其承载能力,所以在计算钢构件对承载能力的贡献时应考虑这一效应。最后,提出计算包括短粗和细长钢结构复合截面的承载力计算公式,并通过了大量试验结果的验证。 展开更多
关键词 方形钢管截面(SHS) 填充混凝土 局部屈曲 局部后屈曲
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A day-ahead scheduling framework for thermostatically controlled loads with thermal inertia and thermal comfort model 被引量:6
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作者 Yingying CHEN Fengji LUO +3 位作者 Zhaoyang DONG Ke MENG gianluca ranzi Kit Po WONG 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2019年第3期568-578,共11页
This paper proposes a day-ahead dispatch framework of thermostatically controlled loads(TCLs) for system peak load reduction. The proposed day-ahead scheduling framework estimates the user’s indoor thermal comfort de... This paper proposes a day-ahead dispatch framework of thermostatically controlled loads(TCLs) for system peak load reduction. The proposed day-ahead scheduling framework estimates the user’s indoor thermal comfort degree through the building thermal inertia modelling. Based on the thermal comfort estimation, a dayahead TCL scheduling model is formulated, which consists of 3 stages: TCL aggregator estimates maximal controllable TCL capacities at each scheduling time interval by solving a optimization model;[ the system operator performs the day-ahead system dispatch to determine the load shedding instruction for each aggregator;and ′the TCL aggregator schedules the ON/OFFcontrol actions of the TCL groups based on the instruction from the system operator. A heuristic based optimization method, history driven differential evolution(HDDE)algorithm, is employed to solve the day-ahead dispatch model of the TCL aggregator side. Simulations are conducted to validate the proposed model. 展开更多
关键词 Thermostatically controlled LOAD DEMAND side management Thermal COMFORT model DEMAND response (DR) Direct LOAD control(DLC)
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Rolling horizon optimization for real-time operation of thermostatically controlled load aggregator 被引量:4
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作者 Fengji LUO gianluca ranzi Zhaoyang DONG 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2017年第6期947-958,共12页
Thermostatically controlled loads(TCLs)have great potentials to participate in the demand response programs due to their flexibility in storing thermal energy.The two-way communication infrastructure of smart grids pr... Thermostatically controlled loads(TCLs)have great potentials to participate in the demand response programs due to their flexibility in storing thermal energy.The two-way communication infrastructure of smart grids provides opportunities for the smart buildings/houses equipped with TCLs to be aggregated in their participation in the electricity markets.This paper focuses on the realtime scheduling of TCL aggregators in the power market using the structure of the Nordic electricity markets a case study.An International Organization of Standardization(ISO)thermal comfort model is employed to well control the occupants’thermal comfort,while a rolling horizon optimization(RHO)strategy is proposed for the TCL aggregator to maximize its profit in the regulation market and to mitigate the impacts of system uncertainties.The simulations are performed by means of a metaheuristic optimization algorithm,i.e.,natural aggregation algorithm(NAA).A series of simulations are conducted to validate the effectiveness of proposed method. 展开更多
关键词 Thermostatically controlled load Demand side management Rolling horizon optimization Thermal comfort model Demand response
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