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关于“冷电循环”的探讨 被引量:2
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作者 墙新奇 《应用能源技术》 2012年第6期43-45,共3页
以能量转换和守恒定律为出发点,利用气体在透平膨胀机内进行绝热膨胀对外做功时,气体的能量减少的同时温度降低的原理,通过选择适当的循环工质和冷却工质,采用经济的技术措施,将透平膨胀机的终参数(温度参数)向下迁移,获得更大的焓降,... 以能量转换和守恒定律为出发点,利用气体在透平膨胀机内进行绝热膨胀对外做功时,气体的能量减少的同时温度降低的原理,通过选择适当的循环工质和冷却工质,采用经济的技术措施,将透平膨胀机的终参数(温度参数)向下迁移,获得更大的焓降,探讨建立冷电循环的可能性,探寻充分利用低温热能、兼顾发电和制冷的方法。 展开更多
关键词 能源与动力工程 低温热能 冷电循环 温度迁移
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冷电循环与海洋热能的开发利用
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作者 墙新奇 《低碳世界》 2017年第11期86-87,共2页
海洋热能是一种清洁、可再生能源,总量巨大,但未得到充分的重视和开发利用,存在较多的机会和潜力。本文着重介绍了冷电循环技术的基本原理。针对海洋热能,通过冷电循环发电与温差发电技术比较,对其优势和实现途径进行了论述。最后对冷... 海洋热能是一种清洁、可再生能源,总量巨大,但未得到充分的重视和开发利用,存在较多的机会和潜力。本文着重介绍了冷电循环技术的基本原理。针对海洋热能,通过冷电循环发电与温差发电技术比较,对其优势和实现途径进行了论述。最后对冷电循环技术和太阳能发电技术的结合的前景进行了预测。 展开更多
关键词 海洋热能 温差发电 冷电循环 太阳能发电
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喷射式冷电联供系统优化分析
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作者 王宇兴 赵彦杰 +2 位作者 杨湛晔 张虎润 林曼妮 《发电技术》 2022年第6期942-950,共9页
随着社会的发展,能源形势日益严峻,环境保护要求也越来越高,如何提高能源利用效率实现社会的可持续发展,成为越来越多学者的研究目标。基于能量品位进行梯级利用、多能互补的分布式能源系统是能源技术的重要发展方向,将正向有机朗肯循... 随着社会的发展,能源形势日益严峻,环境保护要求也越来越高,如何提高能源利用效率实现社会的可持续发展,成为越来越多学者的研究目标。基于能量品位进行梯级利用、多能互补的分布式能源系统是能源技术的重要发展方向,将正向有机朗肯循环和逆向制冷循环耦合的冷电联合循环是其中的一种形式。喷射器是冷电联合循环中的关键部件,应用一维等压混合模型对喷射器进行建模,并对循环进行热效率和㶲效率分析,包括冷凝温度、蒸发温度、蒸汽发生器出口温度和排气压力对循环性能的影响。对系统进行㶲分析发现,在蒸汽发生器、冷凝器和喷射器中㶲损失最大。 展开更多
关键词 冷电联合循环 喷射器 热力学分析 热效率 㶲效率
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外部参数扰动下CO_(2)冷电联合循环运行性能研究
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作者 张永浩 舒歌群 +4 位作者 石凌峰 李力耕 田华 王轩 孙孝存 《工程热物理学报》 EI CAS CSCD 北大核心 2023年第6期1439-1445,共7页
二氧化碳是优良的发电循环工质和制冷剂,通过二氧化碳冷电联合循环可实现电能和冷能并供,目前已有一些循环理论探索与分析,未见实验研究。为此,本文搭建了一套基于二氧化碳工质的冷电联合循环试验样机系统并开展了初步实验测试。结果表... 二氧化碳是优良的发电循环工质和制冷剂,通过二氧化碳冷电联合循环可实现电能和冷能并供,目前已有一些循环理论探索与分析,未见实验研究。为此,本文搭建了一套基于二氧化碳工质的冷电联合循环试验样机系统并开展了初步实验测试。结果表明,在动力子循环运行稳定后启动制冷子循环,系统关键运行参数仅在小幅度范围内发生变化,联合循环能平稳快速地实现从动力循环模式向冷电联合循环模式的切换。此外,本文探究了外部冷热源参数变化下循环系统的运行及性能响应规律,可为进一步优化二氧化碳冷电联合循环的结构和系统设计提供参考。 展开更多
关键词 二氧化碳 冷电联合循环 实验研究
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组分可调的冷电联合循环性能分析
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作者 孙孝存 舒歌群 +4 位作者 石凌峰 田华 王轩 张永浩 孙瑞 《工程热物理学报》 EI CAS CSCD 北大核心 2023年第1期1-7,共7页
针对并联型冷电联合循环混合工质充注组分无法同时匹配两子循环的问题,基于循环拆分法对其进行剖析,根据拆分所得子循环的性能变化规律,提出了组分调控方法以实现组分和子循环的匹配,并设计了一个理想的组分可调的冷电联合循环系统。计... 针对并联型冷电联合循环混合工质充注组分无法同时匹配两子循环的问题,基于循环拆分法对其进行剖析,根据拆分所得子循环的性能变化规律,提出了组分调控方法以实现组分和子循环的匹配,并设计了一个理想的组分可调的冷电联合循环系统。计算结果表明,当工质的两相冷凝温度滑移小于冷凝水温升时,适当的过冷可以提高冷凝段的温度匹配,提高循环性能。但受限于调控形式,本文所提出的调控方法仅在较大冷凝水温升和较高制冷量情况下,才能实现冷电联合循环性能的显著提升。 展开更多
关键词 冷电联合循环 组分调控 温度匹配 二氧化碳混合工质
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PR状态方程+基团贡献模型预测CO_(2)+HFC二元混合物的气液相平衡性质
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作者 吴子睿 石凌峰 +3 位作者 孙瑞 田华 王轩 舒歌群 《中国科学技术大学学报》 CAS CSCD 北大核心 2023年第10期52-59,I0008,共9页
由于良好的性能和环保性,CO_(2)+HFC二元混合物被认为是冷电联合循环系统中良好的替代工作流体。气液相平衡特性是计算混合物焓和熵的关键,这冷电联合循环系统的热力学分析至关重要。为了准确预测CO_(2)和HFC(R23,R32,R41,R125,R134a,R1... 由于良好的性能和环保性,CO_(2)+HFC二元混合物被认为是冷电联合循环系统中良好的替代工作流体。气液相平衡特性是计算混合物焓和熵的关键,这冷电联合循环系统的热力学分析至关重要。为了准确预测CO_(2)和HFC(R23,R32,R41,R125,R134a,R143a,R152a,R161,R227ea)二元混合物的气液平衡性质,本文建立了基于吉布斯自由能混合规则的群贡献模型(PR+MHV1+UNIFAC和PR+LCVM+UNIFAC)。通过CO_(2)和HFC制冷剂的气液相平衡实验获得了-CO_(2)、-烷烃、-CHF和-CHF3等基团之间的相互作用参数,这些基团参数对于预测其气液相平衡性质(压力和气相摩尔分数)至关重要。PR+LCVM+UNIFAC模型计算的AARDp值为5.53%,AADy1值为0.0132,PR+MHV1+UNIFAC模型的AARDp值和AADy1值分别为7.40%和0.0229。然而,对于CO_(2)+R32系统,PR+MHV+UNIFAC预测模型的预测精度较高,AARDp和AADy1的值分别为1.53%和0.0045。综上所述,对于CO_(2)+HFC二元混合物,PR+LCVM+UNIFAC预测模型预测精度较高,但对于CO_(2)+R32二元混合物,PR+MHV1+UNIFAC模型也具有独特的优势。根据基团贡献模型的预测结果,与之前系统使用的PR+MHV1+UNIFAC模型相比,PR+LCVM+UNIFAC模型的计算进度显著提高。 展开更多
关键词 冷电联合循环 CO_(2)+HFC二元混合物 气液相平衡 基团贡献模型 PR+MHV1+UNIFAC模型 PR+LCVM+UNIFAC模型
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CO_(2)混合工质冷电联合循环非设计最佳运行组分研究
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作者 孙孝存 石凌峰 +1 位作者 田华 舒歌群 《工程热物理学报》 EI CSCD 北大核心 2023年第11期2941-2947,共7页
本文针对耦合在冷藏车上的CO_(2)混合工质冷电联合循环系统,对其道路运行时的非设计性能进行分析。首先,根据道路运行参数,对内燃机的工况变化区间进行了归类划分;随后,依次建立了稳态设计模型和非设计计算模型。计算结果显示,对于整个... 本文针对耦合在冷藏车上的CO_(2)混合工质冷电联合循环系统,对其道路运行时的非设计性能进行分析。首先,根据道路运行参数,对内燃机的工况变化区间进行了归类划分;随后,依次建立了稳态设计模型和非设计计算模型。计算结果显示,对于整个道路工况下不同的发动机运行工况,最佳的混合工质CO_(2)充注比例不同;另一方面,对于整个道路运行工况下的综合性能表现,考虑非设计运行与只考虑稳态设计的系统最优混合工质CO_(2)充注比例相近。 展开更多
关键词 冷电联合循环 二氧化碳混合工质 非设计
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钢铁企业低温热能的回收利用 被引量:1
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作者 墙新奇 《新疆钢铁》 2015年第3期7-10,共4页
钢铁企业的低温热能种类较多,总量很大,并具有再生性,但这部分热能回收利用的很少。介绍了目前钢铁企业低温热能利用的技术和途径。以钢铁企业的热水低温热能的回收利用为例,展示了冷电循环的应用前景,认为钢铁企业低温热能的回收利用... 钢铁企业的低温热能种类较多,总量很大,并具有再生性,但这部分热能回收利用的很少。介绍了目前钢铁企业低温热能利用的技术和途径。以钢铁企业的热水低温热能的回收利用为例,展示了冷电循环的应用前景,认为钢铁企业低温热能的回收利用很有潜力。 展开更多
关键词 钢铁企业 低温热能 冷电循环
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Coupling effect of evaporation and condensation processes of organic Rankine cycle for geothermal power generation improvement 被引量:4
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作者 YANG Hua MENG Nan LI Tai-lu 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第12期3372-3387,共16页
Organic Rankine cycle(ORC)is widely used for the low grade geothermal power generation.However,a large amount of irreversible loss results in poor technical and economic performance due to its poor matching between th... Organic Rankine cycle(ORC)is widely used for the low grade geothermal power generation.However,a large amount of irreversible loss results in poor technical and economic performance due to its poor matching between the heat source/sink and the working medium in the condenser and the evaporator.The condensing temperature,cooling water temperature difference and pinch point temperature difference are often fixed according to engineering experience.In order to optimize the ORC system comprehensively,the coupling effect of evaporation and condensation process was proposed in this paper.Based on the laws of thermodynamics,the energy analysis,exergy analysis and entropy analysis were adopted to investigate the ORC performance including net output power,thermal efficiency,exergy efficiency,thermal conductivity,irreversible loss,etc.,using geothermal water at a temperature of 120℃as the heat source and isobutane as the working fluid.The results show that there exists a pair of optimal evaporating temperature and condensing temperatures to maximize the system performance.The net power output and the system comprehensive performance achieve their highest values at the same evaporating temperature,but the system comprehensive performance corresponds to a lower condensing temperature than the net power output. 展开更多
关键词 Organic Rankine cycle geothermal power generation coupling effect of evaporation and condensation exergy analysis
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Influence of thermal flow field of cooling tower on recirculation ratio of a direct air-cooled system for a power plant
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作者 Zhao Wanli Liu Peiqing 《Engineering Sciences》 EI 2008年第4期64-70,共7页
In order to get thermal flow field of direct air-cooled system,the hot water was supplied to the model of direct air-cooled condenser(ACC). The particle image velocimetery (PIV) experiments were carried out to get the... In order to get thermal flow field of direct air-cooled system,the hot water was supplied to the model of direct air-cooled condenser(ACC). The particle image velocimetery (PIV) experiments were carried out to get thermal flow field of a ACC under different conditions in low velocity wind tunnel,at the same time,the recirculation ratio at cooling tower was measured,so the relationship between flow field characteristics and recirculation ratio of cooling tower can be discussed. From the results we can see that the flow field configuration around cooling tower has great effects on average recirculation ratio under cooling tower. The eddy formed around cooling tower is a key reason that recirculation produces. The eddy intensity relates to velocity magnitude and direction angle,and the configuration of eddy lies on the geometry size of cooling tower. So changing the flow field configuration around cooling tower reasonably can decrease recirculation ratio under cooling tower,and heat dispel effect of ACC can also be improved. 展开更多
关键词 direct air-cooled condenser thermal flow field characteristics recirculation ratio PIV experiment
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Power generation and heat sink improvement characteristics of recooling cycle for thermal cracked hydrocarbon fueled scramjet 被引量:7
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作者 BAO Wen QIN Jiang +2 位作者 ZHOU WeiXing ZHANG Duo YU DaRen 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第4期955-963,共9页
In order to further investigate how much fuel heat sink could be increased and how much power generation could be obtained by using recooling cycle for a regeneratively cooled scramjet,the energy conversion from heat ... In order to further investigate how much fuel heat sink could be increased and how much power generation could be obtained by using recooling cycle for a regeneratively cooled scramjet,the energy conversion from heat to electricity and the fuel heat sink increase in recooling cycle are experimentally investigated for fuel conversion rate and components of gas cracked fuel products at different fuel temperatures.The results indicate that the total fuel heat sink(i.e.,physical+chemical+recooling) of a recooling cycle is obviously higher than the heat sink of fuel itself,and the maximum heat sink increment is as high as 0.4 MJ/kg throughout the recooling cycle.Furthermore,the cracked fuel mixture has a significant capacity of doing work.The thermodynamic power generation scheme,which adopts the cracked fuel gas mixture as the working fluid,is a potential power generation cycle,and the maximum specific power generation is about 500 kW/kg.Turbine-pump scheme using cracked fuel gas mixture is also a potential fuel feeding cycle. 展开更多
关键词 recooling cycle SCRAMJET heat sink power generation thermal cracking
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Numerical calculation for circulating current in stator transposition bars of large water-cooled turbo-generators
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作者 LIANG YanPing WU Lei +1 位作者 BIAN Xu YU HongHao 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第6期1053-1061,共9页
Accurate calculation of circulating current is one of the key problems for stator transposition bars in the design of turbo-generators. Aimed at limitation that analytical algorithm of circulating current could not re... Accurate calculation of circulating current is one of the key problems for stator transposition bars in the design of turbo-generators. Aimed at limitation that analytical algorithm of circulating current could not reflect the local electromagnetic field distribution and difficulty that overlaps easily exist in solid modeling process of stator transposition bars, a simplified physical model of transposition bars is established. A three-dimensional(3-D) numerical method for circulating current in stator transposition bars of large water-cooled turbo-generators is investigated, which is combined with field-circuit coupling method. Taking stator bars less than 540° transposition with void model of a 600-MW water-cooled turbo-generator as the research object, the magnetic flux density distribution, current density distribution and circulating current distribution of transposition strands are obtained by numerical calculation. Compared with calculation results of the improved analytical algorithm, the correctness of the numerical calculation for circulating current is demonstrated, the calculation value difference for the maximum current of strands is obtained. The numerical calculation for circulating current will provide an appropriate basis for the reasonable calculation of local overheating of stator transposition bars and the design of safety margin for turbo-generators. 展开更多
关键词 large water-cooled turbo-generators transposition bars magnetic field circulating current numerical calculation
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Analysis of an electricity-cooling cogeneration system for waste heat recovery of gaseous fuel engines 被引量:4
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作者 SHU GeQun WANG Xuan +3 位作者 TIAN Hua LIANG YouCai LIU Yu LIU Peng 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第1期37-46,共10页
Waste heat recovery(WHR)is one of the most useful ways to improve the efficiency of internal combustion engines,and an electricity-cooling cogeneration system(ECCS)based on Rankin-absorption refrigeration combined cyc... Waste heat recovery(WHR)is one of the most useful ways to improve the efficiency of internal combustion engines,and an electricity-cooling cogeneration system(ECCS)based on Rankin-absorption refrigeration combined cycle for the WHR of gaseous fuel engines is proposed in the paper.This system can avoid wasting the heat in condenser so that the efficiency of the whole WHR system improves,but the condensing temperature of Rankin cycle(RC)must increase in order to use absorption refrigeration system,which leads to the decrease of RC output power.Therefore,the relationship between the profit of absorption refrigeration system and the loss of RC in this combined system is the mainly studied content in the paper.Because the energy quality of cooling and electricity are different,cooling power in absorption refrigeration is converted to corresponding electrical power consumed by electric cooling system,which is defined as equivalent electrical power.With this method,the effects of some important operation parameters on the performance of the ECCS are researched,and the equivalent efficiency,exergy efficiency and primary energy rate are compared in the paper. 展开更多
关键词 gaseous fuel engines waste heat recovery electricity-cooling cogeneration Rankin cycle absorption refrigeration
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