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可再生能源多能互补热电气联产系统评价方法综述 被引量:14
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作者 王庆刚 杨谋存 +3 位作者 朱跃钊 周钰婕 雷建宏 龚涛 《电网技术》 EI CSCD 北大核心 2021年第3期937-950,共14页
可再生能源多能互补热电气联产(combined heating,power and biogas system coupled with renewable energy,RCHPB)系统已成为应对全球能源危机的重要技术手段。RCHPB系统的能源多源异质和源网荷储深度融合特性给系统评价带来巨大挑战,... 可再生能源多能互补热电气联产(combined heating,power and biogas system coupled with renewable energy,RCHPB)系统已成为应对全球能源危机的重要技术手段。RCHPB系统的能源多源异质和源网荷储深度融合特性给系统评价带来巨大挑战,而合理评价其系统综合性能是推动多能互补系统发展的首要前提。针对国内外既有研究成果,从RCHPB系统能效定义、评价指标体系、评价方法等方面进行文献综述。综述结果表明,由于风能/太阳能具有不确定性和波动性以及能量转换的高耦合性等特点,常规的评价方法不能较好地评价RCHPB系统。因此,有必要考虑气候、资源禀赋、储能容量、能源转换关联性对其他评价指标的影响,以构建RCHPB系统评价指标体系及综合评价方法,从而为RCHPB系统的应用与发展提供有力支撑。最后对RCHPB系统评价方法、评价指标等进行总结与展望。 展开更多
关键词 可再生能源 多能互补 电气联产 评价指标体系 评价方法
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基于热电气联产机组的压缩空气吹渣系统性能研究
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作者 龚俊 李凯 +2 位作者 章平衡 王嵩耸 孙坚 《中国设备工程》 2021年第20期110-112,共3页
为解决落渣管堵渣问题,设计了成本低廉、系统简单以及运行安全的新型落渣管吹渣系统,通过数值模拟分析了初始压力与流通管径对吹渣性能的影响规律。计算结果表明,堵灰将在极短时间内受到压缩空气的强大冲击,随后将持续受到小幅波动的高... 为解决落渣管堵渣问题,设计了成本低廉、系统简单以及运行安全的新型落渣管吹渣系统,通过数值模拟分析了初始压力与流通管径对吹渣性能的影响规律。计算结果表明,堵灰将在极短时间内受到压缩空气的强大冲击,随后将持续受到小幅波动的高压强空气推力。初始压力越大,系统吹渣能力越强;但是,压缩空气的压力损失也越大。初始压力为0.8MPa时,最大吹渣压强可达0.37MPa。在50~90mm范围内,流通管径对吹渣压强的影响很小。 展开更多
关键词 堵渣 压缩空气 落渣管 电气联产
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循环流化床热电气三联产装置在钟管热电厂的应用探讨 被引量:1
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作者 方梦祥 周光华 +1 位作者 潘增祥 张芳根 《浙江电力》 1996年第1期32-36,共5页
介绍了以现有循环流化床技术为基础,能同时产生民用煤气、蒸汽、电力的循环流化床热、电、气三联产工艺,并在小型热态试验台架上进行了试验,获得了成功,同时对德清钟管热电厂35t/h三联产装还进行了可行性分析和设计.
关键词 循环流化床 电气联产 热电厂 应用
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12兆瓦热电气多联产装置的开发 被引量:26
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作者 王勤辉 骆仲泱 +2 位作者 方梦祥 倪明江 岑可法 《燃料化学学报》 EI CAS CSCD 北大核心 2002年第2期141-146,共6页
介绍了为解决某钢铁企业的中热值煤气、蒸汽和电的短缺而开发的一台 12MW热电气多联产装置。在该系统中 ,把一台流化床气化炉和一台 75t/h循环流化床锅炉结合在一起 ,从而实现煤气和蒸汽联产。在详细介绍了该装置的设计思想和结构特点... 介绍了为解决某钢铁企业的中热值煤气、蒸汽和电的短缺而开发的一台 12MW热电气多联产装置。在该系统中 ,把一台流化床气化炉和一台 75t/h循环流化床锅炉结合在一起 ,从而实现煤气和蒸汽联产。在详细介绍了该装置的设计思想和结构特点的同时 ,用所建的热电气多联产模型对该装置包括煤气产量、煤气成分、煤气热值和系统运行温度等在内的性能参数进行了预测。 展开更多
关键词 电气 循环流化床锅炉 气化
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以循环灰热载体热解为基础的热电气多联产技术的开发与进展 被引量:14
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作者 王俊琪 方梦祥 +3 位作者 刘耀鑫 黄军军 骆仲泱 岑可法 《能源工程》 2004年第2期39-43,共5页
针对目前城市化进程中,集中供热、供冷和燃气管道化这一趋势,详细介绍了国内外几种典型的以循环灰热载体热解为基础的热电气多联产系统,并对其试验数据进行分析,通过经济技术比较分析,认为以热载体为基础的多联产技术具有良好的发展前景。
关键词 循环灰 热载体热解 电气技术 燃气供应 技术原理
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添加聚乙烯的煤部分气化电-气联产系统分析
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作者 龚志军 华宇瑞 +2 位作者 于戈文 武文斐 张智羽 《现代化工》 CAS CSCD 北大核心 2016年第9期165-168,共4页
设计并模拟了以循环流化床技术为龙头的煤部分气化电-气并联型联产系统,研究了不同聚乙烯添加比例、不同分流比的系统特性。结果表明,随着聚乙烯占比的增大,煤炭相对节省率相应提高,而整体多联产系统的热效率则在聚乙烯占比约为25%时达... 设计并模拟了以循环流化床技术为龙头的煤部分气化电-气并联型联产系统,研究了不同聚乙烯添加比例、不同分流比的系统特性。结果表明,随着聚乙烯占比的增大,煤炭相对节省率相应提高,而整体多联产系统的热效率则在聚乙烯占比约为25%时达到最大值59.5%;随着气电分流比的增大,系统的热效率也增大,在聚乙烯占比为25%的系统中,气电分流比为0∶1时,系统热效率高出传统的IGCC系统2%。 展开更多
关键词 部分气化 电气联产 聚乙烯 添加比例
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循环流化床热、电、气多联产技术方案研究 被引量:9
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作者 刘耀鑫 方梦祥 +4 位作者 余春江 王俊琪 吕小兰 王勤辉 骆仲泱 《热力发电》 CAS 北大核心 2003年第2期2-4,共3页
介绍了循环流化床热、电、气多联产技术的 3种方案。通过计算 ,对再循环煤气热解、水蒸汽气化及水蒸汽引射再循环煤气气化等方案进行了分析比较 。
关键词 循环流化床锅炉 电气技术 煤气气化 煤气热解 水蒸汽气化
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利用循环流化床锅炉进行热、电、煤气三联产试验 被引量:3
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作者 李春晓 李云峰 冷杰 《东北电力技术》 2002年第10期12-13,31,共3页
介绍了赤峰富龙热电厂用循环流化床锅炉运行热、电、煤气三联产试验的主要过程以及试验对锅炉燃烧的影响。
关键词 循环流化床锅炉 电气联产 试验 热电厂
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煤的多联产项目中高温电除尘器的试验研究 被引量:8
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作者 何毓忠 胡露钧 何海涛 《山西焦煤科技》 2013年第8期8-10,13,共4页
电除尘器实际运行中,当烟气温度达到400℃以上时,其结构和性能都会受到很大影响,目前还没有成功项目表明在此条件下电除尘器能够长期稳定有效地运行。但在煤的热电气焦油多联产项目中,为了提高焦油品质,就必须在400℃以上的烟气温度下... 电除尘器实际运行中,当烟气温度达到400℃以上时,其结构和性能都会受到很大影响,目前还没有成功项目表明在此条件下电除尘器能够长期稳定有效地运行。但在煤的热电气焦油多联产项目中,为了提高焦油品质,就必须在400℃以上的烟气温度下除尘。基于此,本文对于高温工况下的电除尘器进行试验研究,此类电除尘器的研究并成功应用必将为高温烟气条件下的除尘提供选择依据。 展开更多
关键词 电气焦油多 煤焦油 高温电除尘器 试验研究
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宜化集团2015年利润破9亿元 企业转型发展成绩喜人
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《中国氯碱》 CAS 2016年第1期48-48,共1页
2016年1月12日,宜化集团财务统计报表显示,2015年企业实现销售收入810亿元,与2014年相比增长1%。与此前每年增长100多亿元的狂飙激进相比,这1%似乎体现不出“速度与激情”,但实现利润9.1亿元,同比增长34%:实现出口创汇9.8... 2016年1月12日,宜化集团财务统计报表显示,2015年企业实现销售收入810亿元,与2014年相比增长1%。与此前每年增长100多亿元的狂飙激进相比,这1%似乎体现不出“速度与激情”,但实现利润9.1亿元,同比增长34%:实现出口创汇9.8亿美元,同比增长130%。企业转型发展成绩喜人。宜化集团2015年原煤产量达到803万t,在全国各地拥有煤矿、磷矿、盐矿等各类资源储量达60亿t。以宜昌及周边的磷资源为依托.通过实施“采选加”一体化,大力发展高端磷复肥和磷精细化工,解决了磷矿采富弃贫的问题;以内蒙古、青海、新疆、贵州等西部省区的煤资源为依托,通过实施“煤电化”一体化,大力发展现代煤化工,解决了热电气联产的问题:以湖北应城、重庆万州盐资源为依托,通过开发联碱和盐碱氨肥钙联合生产技术,大力发展盐化工.解决了氢的循环利用,减少了性价比低的氧化铵产量。 展开更多
关键词 企业转型 成绩 利润 原煤 同比增长 电气联产 统计报表 销售收入
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Integration of a Gas Fired Steam Power Plant with a Total Site Utility Using a New Cogeneration Targeting Procedure
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作者 Sajad Khamis Abadi Mohammad Hasan Khoshgoftar Manesh +2 位作者 Marc A.Rosen Majid Amidpour Mohammad Hosein Hamedi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第4期455-468,共14页
A steam power plant can work as a dual purpose plant for simultaneous production of steam and elec-trical power. In this paper we seek the optimum integration of a steam power plant as a source and a site utility sys-... A steam power plant can work as a dual purpose plant for simultaneous production of steam and elec-trical power. In this paper we seek the optimum integration of a steam power plant as a source and a site utility sys-tem as a sink of steam and power. Estimation for the cogeneration potential prior to the design of a central utility system for site utility systems is vital to the targets for site fuel demand as well as heat and power production. In this regard, a new cogeneration targeting procedure is proposed for integration of a steam power plant and a site utility consisting of a process plant. The new methodology seeks the optimal integration based on a new cogenera-tion targeting scheme. In addition, a modified site utility grand composite curve(SUGCC) diagram is proposed and compared to the original SUGCC. A gas fired steam power plant and a process site utility is considered in a case study. The applicability of the developed procedure is tested against other design methods(STAR? and Thermoflex software) through a case study. The proposed method gives comparable results, and the targeting method is used for optimal integration of steam levels. Identifying optimal conditions of steam levels for integration is important in the design of utility systems, as the selection of steam levels in a steam power plant and site utility for integration greatly influences the potential for cogeneration and energy recovery. The integration of steam levels of the steam power plant and the site utility system in the case study demonstrates the usefulness of the method for reducing the overall energy consumption for the site. 展开更多
关键词 INTEGRATION steam power plant site utility COGENERATION optimization
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Exergetic Performance Analysis of a Cogeneration Plant at Part Load Operations
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作者 B.T. Aklilu S.I. Gilani 《Journal of Energy and Power Engineering》 2010年第10期1-8,共8页
A cogeneration plant can run at off-design due to change of load demand or ambient conditions. The cogeneration considered for this study is gas turbine based engine consists of variable stator vanes (VSVs) compress... A cogeneration plant can run at off-design due to change of load demand or ambient conditions. The cogeneration considered for this study is gas turbine based engine consists of variable stator vanes (VSVs) compressor that are re-staggered for loads greater than 50% to maintain the gas turbine exhaust gas temperature at the set value. In order to evaluate the exergetic performance of the cogeneration, exergy model of each cogeneration component is formulated. A 4.2 MW gas turbine based cogeneration plant is analysed for a wide range of part load operations including the effect of VSVs modulation. For loads less than 50%, the major exergy destruction contributors are the combustor and the loss with the stack gas. At full load, the exergy destructions in the combustor, turbine, heat recovery, compressor and the exergy loss with stack gas are 63.7, 14.1, 11.5, 5.7, and 4.9%, respectively. The corresponding first and second law cogeneration efficiencies are 78.5 and 45%, respectively. For comparison purpose both the first and second law efticiencies of each component are represented together. This analysis would help to identify the equipment where the potential for performance improvement is high, and trends which may aid in the design of future plants. 展开更多
关键词 Gas turbine variable stator vanes COGENERATION exergy destruction part load performance.
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Electricity Pricing for Natural Gas CHP Projects The Higher, the Better?
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作者 Chen Guowei Guo Xicheng He Chun 《Electricity》 2011年第3期23-26,共4页
Regarding the state's policy that gives a higher on-grid electricity price to natural gas CHP (combined heat and power) projects, this paper studies the effect of it on the operation of those projects by theoretic... Regarding the state's policy that gives a higher on-grid electricity price to natural gas CHP (combined heat and power) projects, this paper studies the effect of it on the operation of those projects by theoretical analysis and a case study. It concludes that on-grid electricity price on the high side, compared to heat price, will lead power plants to produce more electricity but less heat, thus causing decrease of the plants' thermal eff iciency and harm to energy saving of the whole society. 展开更多
关键词 combined heat and power (CHP) natural gas power generation on-grid electricity price energy saving
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Step-Loading Characteristics of Gas Engine Cogeneration System Using Doubly-Fed Induction Generator in Stand-Alone Operation
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作者 Tetsuji Daido Yushi Miura +1 位作者 Toshifumi Ise Yuki Sato 《Journal of Energy and Power Engineering》 2014年第3期530-542,共13页
Application of a DFIG (doubly-fed induction generator), which is one of adjustable speed generators, to a gas engine cogeneration system has been investigated. To operate during a blackout as an emergency power supp... Application of a DFIG (doubly-fed induction generator), which is one of adjustable speed generators, to a gas engine cogeneration system has been investigated. To operate during a blackout as an emergency power supply is one of important roles for the gas engine eogeneration system. In the case of conventional constant speed of synchronous generator, the amount of the allowed step load is limited to around 30% of the rated power. On the other hand, DFIG is expected to increase the amount of step load during the stand-alone operation. In this paper, it has been demonstrated that an increase in the gas engine speed resulted in an increase in the maximum amount of step load using experimental equipment with a real gas engine. It has been concluded that the proposed system can improve the performance of an emergency power supply at step-loading. 展开更多
关键词 Step load change doubly-fed induction generator gas engine cogeneration system stand-alone operation.
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An Energy and Exergy Analysis of a Microturbine CHP System
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作者 B.M.A. Makhdoum B. Agnew 《Journal of Environmental Science and Engineering》 2011年第4期508-518,共11页
The micro-turbine is known as a producer of high-grade energy (work) and also low energy (heat). The following low grade heat energy have been modeled under ISO ambient conditions (international standard organiza... The micro-turbine is known as a producer of high-grade energy (work) and also low energy (heat). The following low grade heat energy have been modeled under ISO ambient conditions (international standard organization), i.e. 15 ℃ and 1 bar, to utilize the waste heat energy of a 200 kW micro-turbine combined with a single effect absorption chiller, an organic ranking cycle using R245fa (ORC-R245 fa) as a working fluid, a multi-effect distillation desalination (MED) and a thermal vapor compression MED Desalination unit (TVC-MED). The thermal comparison was carried out based on an energy and exergy analysis in terms of electric efficiency, exergetic efficiency, carbon footprint, and energy utilization factor (EUF). The software package IPSEpro has been used to model and simulate the proposed power plants. As a result, utilizing the exhaust waste heat energy in single-effect absorption chillier has contributed to stabilize ambient temperature fluctuation, and gain the best exergetic efficiency of 39%, while the EUF has reached 72% and the carbon footprint was reduced by 75% in MED and TVC-MED Desalination respectively. The results also reveal that TVC-MED is more efficient than traditional MED as its gain output ratio (GOR) is improved by 5.5%. In addition, ORC-245fa generates an additional 20% of the micro-turbine electricity generation. 展开更多
关键词 MICRO-TURBINE absorption chiller energy EXERGY ORC MED TVC-MED.
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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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