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楼宇式热(冷)电联产系统的热经济性分析 被引量:1
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作者 潘雯 姚景洲 +3 位作者 杨思思 陈惠 曹小林 张建华 《建筑热能通风空调》 2010年第2期100-102,96,共4页
利用天然气为能源的楼宇式热(冷)电联产系统对缓解我国能源结构单一、环境污染严重等问题大有裨益。以北京某办公大楼作为目标建筑物,通过对联产系统和分产系统的分析比较,说明联产系统高效的原因在于能源的梯级利用,尤其是对低品质... 利用天然气为能源的楼宇式热(冷)电联产系统对缓解我国能源结构单一、环境污染严重等问题大有裨益。以北京某办公大楼作为目标建筑物,通过对联产系统和分产系统的分析比较,说明联产系统高效的原因在于能源的梯级利用,尤其是对低品质热能的有效利用程度将成为决定目标建筑物能量系统采取热(冷)电联产系统是否节能的关键。并提出以"产品分级等价法"建立成本方程,进而计算了联产系统产品的成本,结果表明:当天燃气价格低于电价的3.2倍时,采用联产系统的年度化费用低于分产系统,反之亦然。 展开更多
关键词 经济学 分析 ()电联 天然气
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微型燃气轮机发电机组发展及国产化 被引量:6
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作者 张丹 周大汉 《上海节能》 2013年第4期3-8,共6页
微型燃气轮机发电机组单机功率范围为25~300kW。目前国内市场上使用的微型燃气轮机发电机组几乎均为国外进口,大多使用在分布式热(冷)电联供系统中。我国分布式发电及热(冷)电联产系统的大力推广也将对微型燃气轮机发电机组的发展起到... 微型燃气轮机发电机组单机功率范围为25~300kW。目前国内市场上使用的微型燃气轮机发电机组几乎均为国外进口,大多使用在分布式热(冷)电联供系统中。我国分布式发电及热(冷)电联产系统的大力推广也将对微型燃气轮机发电机组的发展起到重要的推动作用。整理国内、外微型燃气轮机发电机组历史发展情况,对今后微型燃气轮机发电机组设计、制造、应用技术国产化指明方向。 展开更多
关键词 微型燃气轮机 发电机组 分布式发电 ()电联
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冷热电三联产系统节能减排效果的理论分析 被引量:15
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作者 刘青荣 阮应君 +3 位作者 任建兴 顾群音 林辙夫 朱群志 《华东电力》 北大核心 2010年第2期267-270,共4页
从理论上分析热(冷)电联产系统的节能减排效果,得出对于不同的运行方式,热(冷)电联产系统要取得节能减排效果的用户侧热电比(热负荷与电力负荷的比)的条件式。介绍在现有的热(冷)电联产技术的基础上,利用理论分析的条件式,计算得出不同... 从理论上分析热(冷)电联产系统的节能减排效果,得出对于不同的运行方式,热(冷)电联产系统要取得节能减排效果的用户侧热电比(热负荷与电力负荷的比)的条件式。介绍在现有的热(冷)电联产技术的基础上,利用理论分析的条件式,计算得出不同热(冷)电联产技术的不同运行方式下的用户侧热电比的条件值。通过分析,发现热(冷)电联产能否带来节能减排效果从理论上讲与热(冷)电联产技术(余热回收效率,发电效率)、电网发电效率、常用热源设备效率、运行方式、单位电网电力的CO2排放量和单位燃料的CO2排放量有关。 展开更多
关键词 ()电联 额定效率 节能效果评价 二氧化碳减排效果评价
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Parametric optimization of power system for a micro-CCHP system 被引量:2
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作者 李应林 张小松 《Journal of Southeast University(English Edition)》 EI CAS 2010年第2期297-301,共5页
The universal mathematical model of an engine is established,and an economical zone,in which an engine mainly provides medium output load at medium speed,is presented.Based on the experimental data and the universal m... The universal mathematical model of an engine is established,and an economical zone,in which an engine mainly provides medium output load at medium speed,is presented.Based on the experimental data and the universal model of such an engine above,a mathematical model of a refitted engine is provided.The boundary of the corresponding economical zone is further demarcated,and the optimal operating curve and the operating point of the engine are analyzed.Then,the energy transforming models of the power system are established in the mode of cooling,heating and power(MCHP),the mode of heating and power(MHP)and the mode of electricity powering(MEP).The parameter matching of the power system is optimized according to the transmission ratios of the gear box in the power distribution system.The results show that,in the MCHP,the speed transmission ratio of the engine to the gear box(ies)and the speed transmission ratio of the motor to the gear box(ims)are defined as 2.9 and 1,respectively;in the MHP,when the demand load of the power system is less than the low critical load of the economical zone,the speed transmission ratio of the motor to the engine(ime)is equal to 1,and when the demand load of the power system exceeds the low critical load of the economical zone,ime equals 0.85;in the MEP,the optimal value of ims is defined as 2.5. 展开更多
关键词 combined cooling heating and power distributed energy supply battery bank ENGINE
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Mathematical model of absorption and hybrid heat pump 被引量:1
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作者 Grazia Leonzio 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第10期1492-1504,共13页
Recovering waste heat from industrial processes is bene ficial in order to reduce the primary energy demands and heat pumps can be used to this purpose.Absorption heat pumps are energy-saving and environment-friendly ... Recovering waste heat from industrial processes is bene ficial in order to reduce the primary energy demands and heat pumps can be used to this purpose.Absorption heat pumps are energy-saving and environment-friendly because use working fluids that do not cause ozone depletion and can reduce the global warming emissions.The hybrid heat pump processes combine the conventional vapor-compression and the absorption heat pump cycles.Studies about the simulations and modeling of hybrid heat pumps are few in literature.In this research a mathematical model for single effect absorption and hybrid heat pump is carried out with Chem Cad? 6.0.1.LiBr–H_2O is used as working fluid while electrolytic NRTL and electrolytes latent heat are used as thermodynamic model due to the better results.Binary parameters of activity coef ficients are regressed from experimental vapor pressure data while default constants are used for the solubility expressions.A design of heat pumps is developed and a new modeling of generator is analyzed.The coef ficient of performance of absorption heat pump and hybrid heat pump is equal to 0.7 and 0.83 respectively.For absorption heat pump a sensitivity analysis is carried out to evaluate the effect of temperature and pressure generator,the concentration of Li–Br solution on coef ficient of performance,cooling capacity and working fluid temperature.For hybrid heat pump,the different coef ficients of performance,the primary energy ratio,the generator heat,and the compressor power are analyzed for different values of compressor proportion.Results show that comparing the two systems the hybrid pump allows to save more primary energy,costs and carbon dioxide emissions with respect to absorption heat pump with the increasing of compressor proportion parameter.Future researches should focus on the construction of this heat pumps integrated in chemical processes as a biogas plant or trigeneration systems. 展开更多
关键词 Absorption heat pumps Hybrid heat pumps LiBr–H2O modeling Energy efficiency Process simulation Mathematical model
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Building Sector: The Different Ways to Improve Their Energetic Efficiency
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作者 Clito Afonso Ricardo Pereira 《Journal of Environmental Science and Engineering(B)》 2016年第5期243-253,共11页
The building sector has a significant weight in the global energy consumption in almost of the countries. So, there is a high potential for increasing its energy efficiency. With the enforcement of the energetic certi... The building sector has a significant weight in the global energy consumption in almost of the countries. So, there is a high potential for increasing its energy efficiency. With the enforcement of the energetic certification, it was tried to select different solutions that presents less energy consumption and waste, as well as an effective reduction of CO2 emissions. This work fits in this perspective, since the main goal is to evaluate the contribution of passive and active solutions that can be used in buildings for the improvement of its energetic efficiency, as well as to evaluate the contribution of renewable energy sources. Contribution of solar systems for hot water heating and electric energy production has been studied, as well as cogeneration, Combined Heat and Power (CHP). The case studied is a hotel. To improve the building performance, there were proposed several changes, with the goal of evaluating the contribution of the different solutions proposed. It was concluded that they contribute to a reduction of thermal needs of 25.2% and avoided emissions of CO2 is 30.4%. The analysis of the implementation of trigeneration, Combined Heat, Cooling and Power (CHCP) turns it executable. The payback period is less than 8 years. 展开更多
关键词 CHP CHCP energy analysis avoided CO2 emissions economic analysis.
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Integrated Renewable Energy Solutions for Aquaculture Processing Enerfish
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作者 Hidde Ronde Aulis Ranne +2 位作者 Eric Peirano Ian Byrne Huy Le Duc 《Journal of Energy and Power Engineering》 2013年第2期259-265,共7页
The European Union Framework Programme 71 Enerfish project aims to demonstrate a new poly-generation application with renewable energy sources for the fishery industry in Vietnam. The fish processing plant under consi... The European Union Framework Programme 71 Enerfish project aims to demonstrate a new poly-generation application with renewable energy sources for the fishery industry in Vietnam. The fish processing plant under consideration can be made by energy self-sufficient when all fish waste oil is processed into biodiesel and further converted to electricity and heat (for cooling) in a CHP (combined heat and power) unit. The purpose of the present paper is to discuss the profitability of such plants in southeast Asia. The economic model shows that electricity production is, due to the low electricity tariff, uneconomical (except during electricity blackout), even if cogeneration heat can be utilized. This prompt a design of the plant whereby the necessary heat for the biodiesel process is taken from the waste heat produced by the compressors of a CO2 cooling system. According to the calculations and assumptions of the present study, the profitability of biodiesel production from fish cleaning wastes in Vietnam depends strongly on the market prices for fish waste and fish oil. Different business case scenarios are described. 展开更多
关键词 BIODIESEL COGENERATION energy efficiency energy from waste environmental economics distributed power generation food technology waste heat.
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Analysis by Indicators Performance of the Conceptual Structures mCCHP-SE Using Renewable Energy Sources
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作者 Nicolae Badea Marcel Oanca Ion Paraschiv Ion Voncila 《Journal of Energy and Power Engineering》 2012年第10期1597-1604,共8页
This paper refers to an integrated mCCHP (micro-combined cooling heat and power) systems dedicated for isolated residents with energetic independence. The only energy sources are wood pellet and solar energy. The pr... This paper refers to an integrated mCCHP (micro-combined cooling heat and power) systems dedicated for isolated residents with energetic independence. The only energy sources are wood pellet and solar energy. The proposed trigeneration system is based on mCHP (micro-combined heat and power) unit with Stirling engine, photovoltaic panels, thermal solar collector and pellet boiler. The proposed mCCHP system utilizes the exceeding amount of heat in the summer for producing the necessary cooling. A residential building with known energy consumption is determined load curves that must be covered by mCCHP system. The paper analyzes four structures of trigeneration systems with thermal activation chiller and two structures of trigeneration systems with mechanical compression chiller. Performance indicators are determined based on energy balance equations for each variant. It compares the performances and establishes the best option. 展开更多
关键词 MICROGENERATION TRIGENERATION residential building renewable energy.
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Performance Research of a Micro-CCHP System with Adsorption Chiller 被引量:1
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作者 孔祥强 王如竹 +1 位作者 李瑛 吴静怡 《Journal of Shanghai Jiaotong university(Science)》 EI 2010年第6期671-675,共5页
This paper describes a new micro-combined cooling, heating and power (CCHP) system, which is especially suitable for domestic and light commercial applications. It mainly consists of a natural gas-fired internal com... This paper describes a new micro-combined cooling, heating and power (CCHP) system, which is especially suitable for domestic and light commercial applications. It mainly consists of a natural gas-fired internal combustion engine, a silica gel-water adsorption chiller and other heat recovery units. In order to study the energy efficiency and economic feasibility, an experimental investigation has been carried out. The experimental system has a rated electricity power of 12 kW, a rated cooling capacity of 9 kW and a rated heating capacity of 28 kW. Evaluation and analysis of the system are discussed in detail. The testing results show that the energy efficiency of the overall system depends on different modes. The overall thermal and electrical efficiency is over 70%. Higher heat load supplied causes higher efficiency of the system. Economic evaluation shows that the micro-CCHP system enjoys a small capital cost and short payback period, which is easily accepted by customers. At current natural gas price of 1.9 RMB/m^3 (nominal condition) and electric price of 0.754 RMB/(kW.h), the total capital cost is only 90 000 RMB with a payback period of 3.21 years. 展开更多
关键词 micro-CCHP gas engine adsorption chiller PERFORMANCE
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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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