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Experimental Study on the Performance of ORC System Based on Ultra-Low Temperature Heat Sources
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作者 Tianyu Zhou Liang Hao +2 位作者 Xin Xu Meng Si Lian Zhang 《Energy Engineering》 EI 2024年第1期145-168,共24页
This paper discussed the experimental results of the performance of an organic Rankine cycle(ORC)system with an ultra-low temperature heat source.The low boiling point working medium R134a was adopted in the system.Th... This paper discussed the experimental results of the performance of an organic Rankine cycle(ORC)system with an ultra-low temperature heat source.The low boiling point working medium R134a was adopted in the system.The simulated heat source temperature(SHST)in this work was set from 39.51°C to 48.60°C by the simulated heat source module.The influence of load percentage of simulated heat source(LPSHS)between 50%and 70%,the rotary valve opening(RVO)between 20%and 100%,the resistive load between 36Ωand 180Ωor the no-load of the generator,as well as the autumn and winter ambient temperature on the system performance were studied.The results showed that the stability of the system was promoted when the generator had a resistive load.The power generation(PG)and generator speed(GS)of the system in autumn were better than in winter,but the expander pressure ratio(EPR)was lower than in winter.Keep RVO unchanged,the SHST,the mass flow rate(MFR)of the working medium,GS,and the PG of the system increased with the increasing of LPSHS for different generator resistance load values.When the RVO was 60%,LPSHS was 70%,the SHST was 44.15°C and the resistive load was 72Ω,the highest PG reached 15.11 W.Finally,a simulation formula was obtained for LPSHS,resistance load,and PG,and its correlation coefficient was between 0.9818 and 0.9901.The formula can accurately predict the PG.The experimental results showed that the standard deviation between the experimental and simulated values was below 0.0792,and the relative error was within±5%. 展开更多
关键词 ORC load percentage of simulated heat source resistive load rotary valve opening power generation
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Analysis on Regional Power Grid Load Characteristics and Rational Allocation of Capacity Load Ratio
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作者 Li Yaoxian Ma Chenwen 《International Journal of Technology Management》 2013年第1期49-52,共4页
The reasonability of the adopted capacity load ratio numerical value in urban power grid planning determines the economy of planning level yearly power grid.Too large capacity load ratio will result in the increasing ... The reasonability of the adopted capacity load ratio numerical value in urban power grid planning determines the economy of planning level yearly power grid.Too large capacity load ratio will result in the increasing investment in the early period of power grid construction, however, too small capacity load ratio will make the power grid have poor adaptability, affecting the power supply. Reasonably determining the adopted regional power grid capacity load ratio quantitative numerical value in planning has a strong guiding significance for constructing reliable and economic power grid and preventing power grid from excessive advance or lagging behind the load development. This paper, through the statistics and analysis of a certain regional power grid 2010-2012 three years' power grid daily load characteristics and the investment benefit evaluation of three years' 220KV power grid individual project, makes a preliminary analysis and puts forwards the specific advice on the reasonable values of power ~rid 35-220KV power transformation capacity load ratio. 展开更多
关键词 urban power grid planning power grid load capacity load ratio
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Study on Matching a 300 MVA Motor Generator with an Ohmic Heating Power Supply in HL-2M 被引量:6
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作者 彭建飞 宣伟民 +3 位作者 王海兵 李华俊 王英翘 王树锦 《Plasma Science and Technology》 SCIE EI CAS CSCD 2013年第3期300-302,共3页
A new 300 MVA/1350 MJ motor generator (MG) will be built to feed all of the poloidal field power supplies (PFPS) and auxiliary heating power supplies of the HL-2M tokamak. The MG has a vertical-shaft salient pole ... A new 300 MVA/1350 MJ motor generator (MG) will be built to feed all of the poloidal field power supplies (PFPS) and auxiliary heating power supplies of the HL-2M tokamak. The MG has a vertical-shaft salient pole 6-phase synchronous generator and a coaxial 8500 kW induction motor. The Ohmic heating power supply (OHPS) consisting of 4-quadrant DC pulsed convertor is the one with the highest parameters among the PFPS. Therefore, the match between the generator and the OHPS is very important. The matching study with Matlab/Simulink is described in this paper. The simulation results show that the subtransient reactance of the generator is closely related to the inversion operation of the OHPS. By setting various subtransient reactance in the simulation generator model and considering the cost reduction, the optimized parameters are obtained as xd" = 0.405 p.u. at 100 Hz for the generator. The models built in the simulation can be used as an important tool for studying the dynamic characteristics and the control strategy of other HL-2M PFPSes. 展开更多
关键词 motor generator ohmic heating power supply load matching six-phase gen-erator subtransient reactance
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Research on Energy-Saving Performance of Intermittent Heating for Rooms in Hot Summer&ColdWinter Zone
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作者 Guoqing Yu Nan Fang +1 位作者 Dingke Hu Wei Zhao 《Energy Engineering》 EI 2023年第7期1563-1582,共20页
In the hot summer&cold winter zone in China,intermittent heating space for rooms is widely used.However,in comparison with continuous space heating,the energy-saving performance of intermittent space heating has n... In the hot summer&cold winter zone in China,intermittent heating space for rooms is widely used.However,in comparison with continuous space heating,the energy-saving performance of intermittent space heating has not been sufficiently investigated.This paper studied the factors influencing the energy performance of intermittent heating for the representativeoffice inhot summer&coldwinter zone.Basedon theheatbalancemethod,adynamic thermalmodel of the intermittent heating roomwas built and tested by experiments.And then,it analyzed the total space heating load,the amount of energy saving and energy saving ratio of the intermittent heating under different preheating hours,occupation hours,required roomtemperatures,air change rates,overall heat transfer coefficients(U-value)of windows and wall materials.If the adjacent rooms were not heated,for a typical room occupied about 10 h a day,the energy-saving ratio of intermittent heating was about 30%compared with continuous heating.But the preheating power was higher than two times of continuous heating.The results also indicated that the occupation hours had a significant effect on energy saving amount and ratio,it should be noted that the energy saving ratio by intermittent heating was much lower than the unoccupied period ratio.Relative to other factors,the heating temperatures,room air change rates and U-value of windows,and room envelope materials had little effect on energy efficiency.If the adjacent rooms were heated in the same manner as the roomin question,the energy-saving ratio of the total load of intermittent heating was heavily reduced to 8.46%. 展开更多
关键词 Intermittent heating space heat load continuous heating hot summer&cold winter zone energy saving ratio
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Analysis and Economic Evaluation of Hourly Operation Strategy Based on MSW Classification and LNG Multi-Generation System
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作者 Xueqing Lu Yuetao Shi Jinsong Li 《Energy Engineering》 EI 2023年第6期1325-1352,共28页
In this study,a model of combined cooling,heating and power system with municipal solid waste(MSW)and liquefied natural gas(LNG)as energy sources was proposed and developed based on the energy demand of a large commun... In this study,a model of combined cooling,heating and power system with municipal solid waste(MSW)and liquefied natural gas(LNG)as energy sources was proposed and developed based on the energy demand of a large community,andMSW was classified and utilized.The systemoperated by determining power by heating load,and measures were taken to reduce operating costs by purchasing and selling LNG,natural gas(NG),cooling,heating,and power.Based on this system model,three operation strategies were proposed based on whether MSW was classified and the length of kitchen waste fermentation time,and each strategy was simulated hourly throughout the year.The results showed that the strategy of MSW classified and centralized fermentation of kitchen waste in summer(i.e.,strategy 3)required the least total amount of LNG for the whole year,which was 47701.77 t.In terms of total annual cost expenditure,strategy 3 had the best overall economy,with the lowest total annual expenditure of 2.7730×108 RMB at LNG and NG unit prices of 4 and 4.2 RMB/kg,respectively.The lower heating value of biogas produced by fermentation of kitchen waste from MSW being classified was higher than that of MSW before being classified,so the average annual thermal economy of the operating strategy of MSW being classified was better than that of MSW not being classified.Among the strategies in which MSW was classified and utilized,strategy 3 could better meet the load demand of users in the corresponding season,and thus this strategy had better thermal economy than the strategy of year-round fermentation of kitchen waste(i.e.,strategy 2).The hourly analysis data showed that the net electrical efficiency of the system varies in the same trend as the cooling,heating and power loads in all seasons,while the relationship between the energy utilization efficiency and load varied from season to season.This study can provide guidance for the practical application of MSW being classified in the system. 展开更多
关键词 Municipal solid waste liquefied natural gas energy recovery combined power heating and cooling determining power by heating load net electrical efficiency energy utilization efficiency
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Optimized scheduling of integrated energy systems for low carbon economy considering carbon transaction costs
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作者 Chao Liu Weiru Wang +2 位作者 Jing Li Xinyuan Liu Yongning Chi 《Global Energy Interconnection》 EI CSCD 2024年第4期377-390,共14页
With the introduction of the“dual carbon”goal and the continuous promotion of low-carbon development,the integrated energy system(IES)has gradually become an effective way to save energy and reduce emissions.This st... With the introduction of the“dual carbon”goal and the continuous promotion of low-carbon development,the integrated energy system(IES)has gradually become an effective way to save energy and reduce emissions.This study proposes a low-carbon economic optimization scheduling model for an IES that considers carbon trading costs.With the goal of minimizing the total operating cost of the IES and considering the transferable and curtailable characteristics of the electric and thermal flexible loads,an optimal scheduling model of the IES that considers the cost of carbon trading and flexible loads on the user side was established.The role of flexible loads in improving the economy of an energy system was investigated using examples,and the rationality and effectiveness of the study were verified through a comparative analysis of different scenarios.The results showed that the total cost of the system in different scenarios was reduced by 18.04%,9.1%,3.35%,and 7.03%,respectively,whereas the total carbon emissions of the system were reduced by 65.28%,20.63%,3.85%,and 18.03%,respectively,when the carbon trading cost and demand-side flexible electric and thermal load responses were considered simultaneously.Flexible electrical and thermal loads did not have the same impact on the system performance.In the analyzed case,the total cost and carbon emissions of the system when only the flexible electrical load response was considered were lower than those when only the flexible thermal load response was taken into account.Photovoltaics have an excess of carbon trading credits and can profit from selling them,whereas other devices have an excess of carbon trading and need to buy carbon credits. 展开更多
关键词 Demand response Combined cooling heating and power system Carbon transaction costs Flexible electric and thermal loads Optimal scheduling
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Value analysis of district heating system with gas-fired peak load boiler in secondary network
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作者 郑雪晶 穆振英 《Journal of Central South University》 SCIE EI CAS 2009年第S1期178-182,共5页
In district heating(DH) system with gas-fired peak load regulating boiler in the secondary network,by prolonging run time of base load plants under rated condition,the mean energy efficiency could be increased. The fu... In district heating(DH) system with gas-fired peak load regulating boiler in the secondary network,by prolonging run time of base load plants under rated condition,the mean energy efficiency could be increased. The fuels of the system,including coal and gas,would cause different environmental impacts. Meanwhile,the reliability of the heating networks would be changed because the peak load regulating boiler could work as a standby heat source. A model for assessment of heating system was established by value analysis to optimize this kind of system. Energy consumption,greenhouse gas emission,pollution emission and system reliability were selected as functional assessment indexes in the model. Weights of each function were determined by analytical hierarchy process (AHP) and experts consultation. Life cycle cost was used as the cost in the model. A real case as an example was discussed to obtain the optimal base load ratio. The result shows that the optimal base load ratio of the case is 0.77. 展开更多
关键词 DISTRICT heatING VALUE analysis base load ratio SECONDARY network
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Performance of Heat Pipe Utilized for Atmospheric Air Heating
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作者 Mohammed Mansur 《Journal of Applied Mathematics and Physics》 2015年第8期1015-1021,共7页
The objective of the present experimental work is to investigate the performance of a wrapped screen heat pipe for atmospheric air heating to compare with the limits of this pipe. The experiment was conducted using co... The objective of the present experimental work is to investigate the performance of a wrapped screen heat pipe for atmospheric air heating to compare with the limits of this pipe. The experiment was conducted using copper pipe material and acetone as working fluid at different vapor temperatures. The testing also consists of a heater, a blower for heat removal (condenser), temperature measuring device, a vapor temperature probe, acetone charging system, and a vacuum pump. The copper outside diameterof the pipe is 0.022 m, with a total length of 0.6 m. The results showed that the pipe wall temperature (Tw) for a wrapped screen heat pipe has a rapid increase and takes 50 min to reach steady state at (Q = 63 W). The vapour temperature of working fluid increases as the heat load increases at constant air velocity. It was also been found that the range of vapour temperature deceases as the filling ratio increases that means the increasing of the filling ratio results the decrease of the maximum vapour temperature and the variation in the vapour temperature. The best recorded filling ratio is 0.6 which has the lowest vapour temperature at highest heat load. The maximum heat transport limit for this pipe is 80 W and the maximum temperature difference for air is 5。C. 展开更多
关键词 PERFORMANCE Wrapped SCREEN heat Pipe ACEtoNE Air Velocity heat load FILLING ratio Temperature DIFFERENCE
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计及氢能高效利用和热电灵活输出的综合能源系统源荷灵活运行策略 被引量:1
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作者 李亚莎 张永蘅 +3 位作者 陈俊璋 晏欣悦 郭玉杰 王佳敏 《广东电力》 北大核心 2024年第4期49-61,共13页
为进一步发挥氢能高效利用优势,构建绿色低碳能源系统,提出一种计及氢能高效利用和热电联产灵活输出的综合能源系统源荷灵活运行策略。首先,对源侧供能模型进行两方面改进:一是引入含风电制氢、燃气混氢、多能用氢和储氢的氢能利用模型... 为进一步发挥氢能高效利用优势,构建绿色低碳能源系统,提出一种计及氢能高效利用和热电联产灵活输出的综合能源系统源荷灵活运行策略。首先,对源侧供能模型进行两方面改进:一是引入含风电制氢、燃气混氢、多能用氢和储氢的氢能利用模型,并考虑到电解水和甲烷化反应过程中的热量散失情况,引入热量回收装置,构建计及热量回收的氢能高效利用模型;二是针对常规热电联产灵活性不足的问题,构建含电锅炉和有机朗肯循环的热电灵活输出模型,以解耦常规热电联产“以热定电”和“以电定热”限制。其次,在荷侧引入含可转移、可削减和可平移的电、热柔性负荷,以缓解电、热负荷峰谷差,并与源侧相结合,形成源荷灵活运行模型。最后,综合考虑阶梯型碳交易成本、设备运行维护成本、弃风成本以及购能成本,建立综合能源系统源荷灵活优化运行模型。采用CPLEX求解器对所提综合能源系统源荷灵活运行模型进行求解,并设置不同场景进行对比。结果表明,相比常规氢能利用模型,考虑所提计及热量回收的氢能高效利用模型时,系统的总成本、碳排放量分别降低了1.92%、4.22%,并且引入热电联产改进模型后,其总成本、碳排放量可进一步降低4.08%、7.32%,实现系统低碳、经济和灵活运行。 展开更多
关键词 氢能高效利用 热电联产 灵活输出 电、热柔性负荷 有机朗肯循环 综合能源系统
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考虑富氧燃烧碳捕集技术和源荷双侧响应的综合能源系统优化调度
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作者 杨海柱 白亚楠 +1 位作者 张鹏 李忠文 《中国电力》 CSCD 北大核心 2024年第8期227-240,共14页
为降低燃气轮机的碳排放水平和提高灵活性,提出了计及富氧燃烧碳捕集技术和源荷双侧响应的综合能源系统低碳经济优化策略。首先,研究了富氧燃烧技术的运行原理及其能流特性,并构建空分制氧设备和碳捕集设备的耦合模型;其次,引入可调的... 为降低燃气轮机的碳排放水平和提高灵活性,提出了计及富氧燃烧碳捕集技术和源荷双侧响应的综合能源系统低碳经济优化策略。首先,研究了富氧燃烧技术的运行原理及其能流特性,并构建空分制氧设备和碳捕集设备的耦合模型;其次,引入可调的热电比作为供给侧响应策略,需求侧对于电力、热能以及气负荷的特性进行综合权衡,借助能源价格的引导,并考虑其相互之间的可替代属性形成需求侧响应机制;最后,通过计及气负荷碳排放的阶梯式碳交易约束碳排放,以系统运行成本为目标优化各时段机组出力。设置多场景进行仿真分析,结果表明富氧燃烧碳捕集技术能够有效减少系统的碳排放量,源荷双侧响应能够灵活调节供给侧与需求侧的供能关系,并有效减少系统运行成本。 展开更多
关键词 富氧燃烧 碳捕集 可变热电比 P2G两阶段 源荷双侧响应
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计及热负荷柔性的户用氢能系统运行优化研究
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作者 袁铁江 曾婧 张明扬 《太阳能学报》 EI CAS CSCD 北大核心 2024年第7期29-40,共12页
针对风电/光伏出力的随机性和间歇性给户用氢能系统热电联供可靠性带来的挑战,提出基于热负荷柔性松弛运行约束的户用氢能系统热电联供优化策略。首先,搭建包含不同模块的户用氢能系统基础架构,并详细说明该系统的运行原理;其次,建立系... 针对风电/光伏出力的随机性和间歇性给户用氢能系统热电联供可靠性带来的挑战,提出基于热负荷柔性松弛运行约束的户用氢能系统热电联供优化策略。首先,搭建包含不同模块的户用氢能系统基础架构,并详细说明该系统的运行原理;其次,建立系统中关键环节的数学模型,确定电解槽平均氢/热比和燃料电池在不同温度下电/热比的范围;然后,为了兼顾用户的舒适度和热负荷的灵活性,根据热感觉平均标度预测指标对户用氢能系统的热负荷需求进行调整;最后,综合考虑储氢罐的容量限制、氢能设备的电/热功率和用户侧柔性热能需求等约束条件,以总投资成本最少和新能源弃电率最低为目标,建立户用氢能系统优化运行模型。仿真结果表明:引入柔性热负荷进行运行调节时,不仅增强了可再生能源的消纳能力,还显著降低了系统的运行成本。 展开更多
关键词 氢能系统 氢燃料电池 柔性负荷 用户舒适度 运行优化 热电联供
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不带外置床的700 MW超超临界循环流化床锅炉失电后水冷壁安全计算分析 被引量:1
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作者 邓启刚 吕卓 +4 位作者 石友 鲁佳易 周旭 王奥宇 杨冬 《发电技术》 CSCD 2024年第2期240-249,共10页
通过对某660 MW电厂失电事故过程中烟气温度、蒸汽温度及工质流量的变化规律进行分析,得到了炉膛密相区、过渡区及稀相区热负荷随时间的变化规律。在此基础上,以某700MW超超临界循环流化床(circulating fluidized bed,CFB)锅炉为对象,... 通过对某660 MW电厂失电事故过程中烟气温度、蒸汽温度及工质流量的变化规律进行分析,得到了炉膛密相区、过渡区及稀相区热负荷随时间的变化规律。在此基础上,以某700MW超超临界循环流化床(circulating fluidized bed,CFB)锅炉为对象,建立了失电事故发生后水冷壁内的流动传热计算模型,开发了以Fortran语言为基础的水冷壁内瞬态特性计算程序。分别对密相区、过渡区及稀相区进行分析,通过计算得到了失电后的水冷壁壁温及出口工质温度等热力参数的变化规律。计算结果表明:失电后水冷壁密相区出口的最高壁温为558.6℃,稀相区出口的最高壁温为579.6℃,不需要配备紧急补水泵来保证失电后水冷壁的安全。研究结果可为电厂处理超超临界CFB锅炉失电事故提供指导。 展开更多
关键词 超超临界 循环流化床(CFB)锅炉 失电 热负荷 水冷壁
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基于风电分时电价的虚拟电厂参与清洁供暖运营优化方法 被引量:1
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作者 冯云辰 加鹤萍 +3 位作者 闫敏 李根柱 刘乐 刘敦楠 《中国电力》 CSCD 北大核心 2024年第1期51-60,共10页
随着“碳达峰、碳中和”目标的提出,迅速发展的风电由于其随机性与波动性,面临突出的风电消纳问题。蓄热式电采暖作为中国北方地区主要供暖设备,虚拟电厂作为需求侧资源的主要聚合技术手段,聚合蓄热式电采暖的虚拟电厂可为消纳风电、提... 随着“碳达峰、碳中和”目标的提出,迅速发展的风电由于其随机性与波动性,面临突出的风电消纳问题。蓄热式电采暖作为中国北方地区主要供暖设备,虚拟电厂作为需求侧资源的主要聚合技术手段,聚合蓄热式电采暖的虚拟电厂可为消纳风电、提高风电利用率提供解决途径。对此,提出一种基于风电功率的分时电价划分方法,实现虚拟电厂聚合蓄热式电采暖参与基于分时电价的清洁供暖交易优化运营。首先,阐述虚拟电厂聚合蓄热式电采暖用户参与风电供暖的交易模式;其次,考虑热惯性对蓄热式电采暖和房屋进行精细化建模,提出基于层次凝聚聚类算法的分时电价方法,建立基于Weber-Fechner定律的负荷模糊响应模型,并构建多方主体综合收益最大、弃风量最小和负荷波动最小的虚拟电厂多目标运营优化模型;最后,通过算例分析风电消纳效果和虚拟电厂收益,验证该方法能够有效促进风电消纳、提高多方主体积极性,并具有一定的规模经济性,以期为缓解弃风问题提供参考。 展开更多
关键词 虚拟电厂 分时电价 蓄热式电采暖 层次凝聚聚类算法 负荷模糊响应
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计及改进阶梯型碳交易和热电联产机组灵活输出的园区综合能源系统低碳调度 被引量:4
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作者 周伟 孙永辉 +2 位作者 谢东亮 殷晨旭 孟雲帆 《电网技术》 EI CSCD 北大核心 2024年第1期61-69,共9页
为了进一步降低园区综合能源系统(park-level integrated energy system,PIES)碳排放量,优化热电联产(combined heat and power,CHP)机组出力的灵活性,提出一种考虑改进阶梯型碳交易和CHP热电灵活输出的PIES低碳经济调度策略。首先,将... 为了进一步降低园区综合能源系统(park-level integrated energy system,PIES)碳排放量,优化热电联产(combined heat and power,CHP)机组出力的灵活性,提出一种考虑改进阶梯型碳交易和CHP热电灵活输出的PIES低碳经济调度策略。首先,将遗传算法与模糊控制相结合,设计一种遗传模糊碳交易参数优化器,从而对现有阶梯型碳交易机制进行改进,实现该机制参数的自适应变化;其次,在传统CHP中加入卡琳娜(Kalina)循环与电锅炉(electricboiler,EB),构造CHP热电灵活输出模型,以同时满足电、热负荷的不同需求;然后,提出一种柔性指标——电、热输出占比率,进而计算出电、热输出占比率区间,以衡量CHP运行灵活性;最后,将改进阶梯型碳交易机制和CHP热电灵活输出模型协同优化,以系统运行成本和碳交易成本之和最小为目标,构建PIES低碳经济优化模型。算例分析表明,所提策略可有效降低经济成本和碳排放量,同时还可扩展CHP灵活输出调节范围,能够为PIES低碳经济调度提供参考。 展开更多
关键词 园区综合能源系统 遗传模糊碳交易参数优化器 热电联产机组灵活输出 电、热输出占比率 低碳经济调度
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基于热功率的焊接热输入分配及稀释率预测
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作者 马一鸣 姜英龙 +3 位作者 郭枭 韩莹 谷宇 王岩 《焊接》 2024年第6期54-59,67,共7页
【目的】热输入Q_(HI)仅简单描述了焊接能量的来源与大小,没有阐明焊缝与母材吸收的热量如何分配的不足。【方法】该文利用基于填充金属量提出的热功率PPR概念,通过焊缝尺寸测量,JmatPro与公式计算等手段,实现了焊接热输入分配及稀释率... 【目的】热输入Q_(HI)仅简单描述了焊接能量的来源与大小,没有阐明焊缝与母材吸收的热量如何分配的不足。【方法】该文利用基于填充金属量提出的热功率PPR概念,通过焊缝尺寸测量,JmatPro与公式计算等手段,实现了焊接热输入分配及稀释率进行的预测。【结果】基于P_(PR)可实现对熔化母材面积A_(mb)的预测,其曲线变化可分为渐增区、快增区、缓增区3个阶段。结合JmatPro计算的材料体积比热容与A_(mb)预测公式,可将不同PPR下的有效焊接热输入Q_(e)进行细分,发现在可焊区形成焊缝的热输入只占其31.77%~34.69%。【结论】提出了基于P_(PR)的焊缝面积百分比稀释率δ预测公式,并给出可焊区的焊接热功率为12.69~47.88 kW/cm^(2),稀释率为48.28%~85.03%。 展开更多
关键词 热功率 焊缝尺寸 热输入 稀释率
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基于CLH-SOFC气转电技术的热电解耦IES优化调度 被引量:3
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作者 邱彬 门佳丽 +2 位作者 王凯 慕会宾 杨桢 《电力系统及其自动化学报》 CSCD 北大核心 2022年第9期88-95,共8页
针对热电联产机组热电比恒定导致其出力水平较低,以及电力负荷波动对上游电网产生的影响,本文提出一种基于化学链制氢与固体燃料电池相结合的气转电技术的热电解耦综合能源系统优化调度模型。首先在传统热电联产机组中加入有机朗肯循环... 针对热电联产机组热电比恒定导致其出力水平较低,以及电力负荷波动对上游电网产生的影响,本文提出一种基于化学链制氢与固体燃料电池相结合的气转电技术的热电解耦综合能源系统优化调度模型。首先在传统热电联产机组中加入有机朗肯循环余热发电装置,在电力负荷需求高峰时段将部分余热转化为电能,提高燃气轮机出力,同时加入化学链制氢与固体燃料电池相结合的集成系统增强电-气耦合,进一步起到平抑电负荷波动,达到削峰填谷的目的。根据算例分析,在3种场景下进行对比,结果表明,本文提出的热电解耦模型在提高系统运行经济性、减少负荷波动对上游电网影响等方面具有优越性,并进一步提高了能源利用效率。 展开更多
关键词 综合能源系统 热电联产热电解耦 余热发电 灵活热电比 优化调度
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热电联供电厂厂级供热集中智能管控系统开发及应用研究 被引量:2
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作者 曾海波 周传杰 +3 位作者 肖波 杨利 王明坤 温海涛 《中国电机工程学报》 EI CSCD 北大核心 2024年第4期1493-1500,I0020,共9页
为了解决多台机组供热负荷调节分散、供热系统压力波动大、供热经济性差的问题,首先提出基于MODBUS通信方式下多台机组供热单元互联控制的厂级供热集中智能管控系统;然后,结合机组实际性能试验数据建立机组性能仿真模型,获得不同电负荷... 为了解决多台机组供热负荷调节分散、供热系统压力波动大、供热经济性差的问题,首先提出基于MODBUS通信方式下多台机组供热单元互联控制的厂级供热集中智能管控系统;然后,结合机组实际性能试验数据建立机组性能仿真模型,获得不同电负荷下冷热再抽汽量与煤耗量的关系;最后,考虑机组安全运行边界,建立适用于多台机组热负荷经济分配的数学模型,以厂级总耗煤量最低寻优为目标,获得各机组热负荷分配方案,并成功在某装机6台、总容量3320 MW燃煤电厂实现了工程示范应用。结果表明:厂级供热集中智能管控系统可采用流量指令方式在机组安全运行边界内对各机组供热流量进行自动调节;全厂对外供热流量在50~400 t/h之间变化时,厂级供热集中智能管控系统可将供热母管压力控制在设定值的±0.03 MPa以内;通过对总供热负荷智能寻优分配,全厂总煤耗量可降低0.13~3.53 t/h。 展开更多
关键词 热电联供电厂 供热系统 集中控制 自动调节 智能寻优 热电负荷 安全性
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深度调峰背景下火电机组热电解耦技术路径对比分析
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作者 郑淇薇 王华霆 +2 位作者 陈衡 潘佩媛 徐钢 《发电技术》 CSCD 2024年第2期207-215,共9页
新能源发电在出力和发电负荷上具有波动大、不稳定的特点,为解决新能源机组上网后带来的上述问题,利用多种热电解耦方式对火电机组进行改造,并对不同技术路径进行对比分析,探究火电机组解耦潜力与调峰能力。采用EBSILON Professional软... 新能源发电在出力和发电负荷上具有波动大、不稳定的特点,为解决新能源机组上网后带来的上述问题,利用多种热电解耦方式对火电机组进行改造,并对不同技术路径进行对比分析,探究火电机组解耦潜力与调峰能力。采用EBSILON Professional软件进行模拟仿真,对不同热电解耦方案下调峰负荷空间进行评估和对比分析。计算结果表明,低压缸零出力热电解耦改造方案可以使机组的调峰能力得到最大的改善。在原最大供热负荷304.60 MW下,最小发电量下降172.21 MW,最低电负荷率下降32.70%。火电机组经过热电解耦改造可显著提高热电机组与新能源机组的协调调峰能力,提高发电单元整体发电的稳定性。 展开更多
关键词 火电机组 热电联产 热电解耦 抽汽供热 深度调峰
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准气体动力循环Power MEMS气体静压轴承 被引量:4
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作者 王婧 张力 +2 位作者 邓达强 陈卫军 徐宗俊 《重庆大学学报(自然科学版)》 EI CAS CSCD 北大核心 2007年第7期18-21,36,共5页
为追求微细尺度条件下超高能量密度的目标,提出了Power MEMS准气体动力循环发动机的概念。鉴于Power MEMS准气体动力循环发动机能够自行提供高压气源的结构特征以及气体静压轴承在性能上的优点,提出了将气体静压轴承应用于该Power MEMS... 为追求微细尺度条件下超高能量密度的目标,提出了Power MEMS准气体动力循环发动机的概念。鉴于Power MEMS准气体动力循环发动机能够自行提供高压气源的结构特征以及气体静压轴承在性能上的优点,提出了将气体静压轴承应用于该Power MEMS发动机的研究和Power MEMS准气体动力循环发动机中气体静压径向轴承和止推轴承的结构形式的选择,指出了微细尺度下气体静压轴承的设计要点;运用气体静压润滑的基本原理对气体轴承的结构及运行参数进行了分析,获取了径向轴承和止推轴承的参数设计;通过气体轴承静态性能的计算,从承载能力方面验证了将所设计的气体轴承应用于Power MEMS准气体动力循环发动机中的可行性。 展开更多
关键词 power MEMS 微型发动机 气体静压径向轴承 气体静压止推轴承 承载能力
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舰船脉冲功率负载Buck变换器自适应阻尼比控制方法
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作者 林周宏 黄文焘 +3 位作者 邰能灵 庞路 李智鹃 杨咏 《中国电机工程学报》 EI CSCD 北大核心 2024年第13期5246-5257,I0019,共13页
针对脉冲功率负载的周期性功率突变造成接口变换器输出电压瞬时跌落和持续扰动的问题,提出一种Buck变换器的自适应阻尼比控制方法,使得输出电压的响应性能能够直接通过阻尼比实现精确调节,不依赖于控制参数,且对输入电压扰动具有抑制作... 针对脉冲功率负载的周期性功率突变造成接口变换器输出电压瞬时跌落和持续扰动的问题,提出一种Buck变换器的自适应阻尼比控制方法,使得输出电压的响应性能能够直接通过阻尼比实现精确调节,不依赖于控制参数,且对输入电压扰动具有抑制作用。该方法通过引入类电压环消除了时变的输入和占空比的非线性饱和,建立输出电压与其参考值的单输入单输出二阶系统,将不确定负载扰动的控制问题转化为二阶系统的阻尼比控制问题。此外,在不影响电压调节性能的前提下,通过附加占空比调节实现并联变换器供电结构的均流控制。仿真和硬件在环实验结果表明,在脉冲功率负载的不同暂态过程,并联变换器均能够实现快速平滑的电压调节和输出电流均衡。 展开更多
关键词 BUCK变换器 脉冲功率负载 自适应阻尼比控制 电压调节 电流均衡 舰船电力系统
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