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Performance comparison and analysis of a combined power and cooling system based on organic Rankine cycle 被引量:2
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作者 王志奇 周奇遇 +2 位作者 夏小霞 刘斌 张欣 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第2期353-359,共7页
A novel power and cooling system combined system which coupled organic Rankine cycle(ORC) with vapor compression refrigeration cycle(VCRC) was proposed. R245 fa and butane were selected as the working fluid for the po... A novel power and cooling system combined system which coupled organic Rankine cycle(ORC) with vapor compression refrigeration cycle(VCRC) was proposed. R245 fa and butane were selected as the working fluid for the power and refrigeration cycle, respectively. A performance comparison and analysis for the combined system was presented. The results show that dual-pressure ORC-VCRC system can achieve an increase of 7.1% in thermal efficiency and 6.7% in exergy efficiency than that of basic ORC-VCRC. Intermediate pressure is a key parameter to both net power and exergy efficiency of dual-pressure ORC-VCRC system. Combined system can produce maximum net power and exergy efficiency at 0.85 MPa for intermediate pressure and 2.4 MPa for high pressure, respectively. However, superheated temperature at expander inlet has little impact on the two indicators. It can achieve higher overall COP, net power and exergy efficiency at smaller difference between condensation temperature and evaporation temperature of VCRC. 展开更多
关键词 dual-pressure organic rankine cycle vapor compression refrigeration waste heat performance analysis
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Thermodynamic optimization and fluid selection of organic Rankine cycle driven by a latent heat source 被引量:4
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作者 XU Peng LU Jian +1 位作者 LI Tai-lu ZHU Jia-ling 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第12期2829-2841,共13页
Organic Rankine cycle(ORC) is applicable for the heat-work conversion. Whereas, there also exist a lot issues that influence the efficiency and the cost of the system. In this work, eleven pure working fluids(as categ... Organic Rankine cycle(ORC) is applicable for the heat-work conversion. Whereas, there also exist a lot issues that influence the efficiency and the cost of the system. In this work, eleven pure working fluids(as categorized into alkanes, and fluorinated alkanes) are investigated based on the first and second law of thermodynamics. The major objective is to obtain the most suitable working fluid for the latent heat source. The results show that the working fluid is an important factor of the system performance. The heat absorption of the working fluid in the evaporator is inversely proportional to the evaporating temperature, but the thermal and exergetic efficiencies are just the opposite. RC318 has the highest net power output and the lowest outlet temperature of the heat source, but its global warming potential(GWP) value is too high. The cyclohexane shows the highest thermal efficiency among the fluids investigated. Moreover, the figure of merit(FOM) of the isobutane is higher than that of other working fluids. Overall, the cyclohexane shows that the optimal comprehensive performance is more feasible for medium grade heat source in engineering applications. 展开更多
关键词 organic rankine cycle working FLUIDS THERMODYNAMICS LOW-TEMPERATURE EVAPORATING temperature
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Energy and exergy recovery from exhaust hot water using organic Rankine cycle and a retrofitted configuration 被引量:8
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作者 SUN Wen-qiang YUE Xiao-yu +1 位作者 WANG Yan-hui CAI Jiu-ju 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第6期1464-1474,共11页
Exhaust hot water(EHW)is widely used for various industrial processes.However,the excess heat carried by EHW is typically ignored and discharged into the environment,resulting in heat loss and heat pollution.An organi... Exhaust hot water(EHW)is widely used for various industrial processes.However,the excess heat carried by EHW is typically ignored and discharged into the environment,resulting in heat loss and heat pollution.An organic Rankine cycle(ORC)is an attractive technology to recycle heat from low-temperature energy carriers.Herein,ORC was used to recycle the heat carried by EHW.To investigate the energy and exergy recovery effects of EHW,a mathematical model was developed and a parametric study was conducted.The energy efficiency and exergy efficiency of the EHW-driven ORC system were modeled with R245fa,R113 and R123 as the working fluids.The results demonstrate that the EHW and evaporation temperatures have significant effects on the energy and exergy efficiencies of the EHW-driven ORC system.Under given EHW conditions,an optimum evaporation temperature exists corresponding to the highest exergy efficiency.To further use the low-temperature EHW,a configuration retrofitted to the ORC by combining with flash evaporation(FE)was conducted.For an EHW at 120℃ and 0.2 MPa,the maximum exergy efficiency of the FE-ORC system is 45.91%at a flash pressure of 0.088 MPa.The FE-ORC performs better in exergy efficiency than the basic FE and basic EHW-driven ORC. 展开更多
关键词 exhaust hot water(EHW) organic rankine cycle(ORC) energy efficiency exergy efficiency flashevaporation(FE)
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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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Parametric optimization and performance comparison of organic Rankine cycle with simulated annealing algorithm 被引量:3
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作者 王志奇 周乃君 +2 位作者 张家奇 郭静 王晓元 《Journal of Central South University》 SCIE EI CAS 2012年第9期2584-2590,共7页
Taking the ratio of heat transfer area to net power and heat recovery efficiency into account, a multi-objective mathematical model was developed for organic Rankine cycle (ORC). Working fluids considered were R123,... Taking the ratio of heat transfer area to net power and heat recovery efficiency into account, a multi-objective mathematical model was developed for organic Rankine cycle (ORC). Working fluids considered were R123, R134a, R141b, R227ea and R245fa. Under the given conditions, the parameters including evaporating and condensing pressures, working fluid and cooling water velocities were optimized by simulated annealing algorithm. The results show that the optimal evaporating pressure increases with the heat source temperature increasing. Compared with other working fluids, R123 is the best choice for the temperature range of 100--180℃ and R141 b shows better performance when the temperature is higher than 180 ℃. Economic characteristic of system decreases rapidly with the decrease of heat source temperature. ORC system is uneconomical for the heat source temperature lower than 100℃. 展开更多
关键词 parametric optimization organic rankine cycle simulated annealing algorithm working fluid low-temperature source
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Slag-washing water of blast furnace power station with supercritical organic Rankine cycle 被引量:2
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作者 肖松 吴淑英 郑东升 《Journal of Central South University》 SCIE EI CAS 2013年第3期737-741,共5页
Organic Rankine cycle(ORC) power plant operating with supercritical parameters supplied by low temperature slag-washing water(SWW) of blast furnace was investigated.A schematic of such installation was presented with ... Organic Rankine cycle(ORC) power plant operating with supercritical parameters supplied by low temperature slag-washing water(SWW) of blast furnace was investigated.A schematic of such installation was presented with a description of its operation and the algorithm of calculations of a supercritical power plant.Two typical organic fluids with sufficiently low critical parameters were selected as candidate working fluids in the plant to study the efficiency of the system with different organic fluids.An analysis of the influence on the effectiveness of operation of a plant was carried out.With the same temperature of slag-washing water,the specific work in turbine of fluid R143a is 45% higher than that obtained for the fluid R125,however,the specific work in pump of fluid R143a is approximate equal into that one of the fluid R125. 展开更多
关键词 supercritical cycle slag-washing water organic rankine cycle power station low temperature
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An approach for IC engine coolant energy recovery based on low-temperature organic Rankine cycle 被引量:1
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作者 付建勤 刘敬平 +2 位作者 徐政欣 邓帮林 刘琦 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第2期727-734,共8页
To promote the fuel utilization efficiency of IC engine, an approach was proposed for IC engine coolant energy recovery based on low-temperature organic Rankine cycle(ORC). The ORC system uses IC engine coolant as hea... To promote the fuel utilization efficiency of IC engine, an approach was proposed for IC engine coolant energy recovery based on low-temperature organic Rankine cycle(ORC). The ORC system uses IC engine coolant as heat source, and it is coupled to the IC engine cooling system. After various kinds of organic working media were compared, R124 was selected as the ORC working medium. According to IC engine operating conditions and coolant energy characteristics, the major parameters of ORC system were preliminary designed. Then, the effects of various parameters on cycle performance and recovery potential of coolant energy were analyzed via cycle process calculation. The results indicate that cycle efficiency is mainly influenced by the working pressure of ORC, while the maximum working pressure is limited by IC engine coolant temperature. At the same working pressure, cycle efficiency is hardly affected by both the mass flow rate and temperature of working medium. When the bottom cycle working pressure arrives at the maximum allowable value of 1.6 MPa, the fuel utilization efficiency of IC engine could be improved by 12.1%.All these demonstrate that this low-temperature ORC is a useful energy-saving technology for IC engine. 展开更多
关键词 IC engine waste heat recovery organic rankine cycle cycle efficiency coolant energy
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Evaluation of working fluids for organic Rankine cycles using group-contribution methods and second-law-based models 被引量:1
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作者 MA Wei-wu WANG Lin +1 位作者 LIU Tao LI Min 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第8期2234-2243,共10页
The group-contribution (GC) methods suffer from a limitation concerning to the prediction of process-related indexes, e.g., thermal efficiency. Recently developed analytical models for thermal efficiency of organic Ra... The group-contribution (GC) methods suffer from a limitation concerning to the prediction of process-related indexes, e.g., thermal efficiency. Recently developed analytical models for thermal efficiency of organic Rankine cycles (ORCs) provide a possibility of overcoming the limitation of the GC methods because these models formulate thermal efficiency as functions of key thermal properties. Using these analytical relations together with GC methods, more than 60 organic fluids are screened for medium-low temperature ORCs. The results indicate that the GC methods can estimate thermal properties with acceptable accuracy (mean relative errors are 4.45%-11.50%);the precision, however, is low because the relative errors can vary from less than 0.1% to 45.0%. By contrast, the GC-based estimation of thermal efficiency has better accuracy and precision. The relative errors in thermal efficiency have an arithmetic mean of about 2.9% and fall within the range of 0-24.0%. These findings suggest that the analytical equations provide not only a direct way of estimating thermal efficiency but an accurate and precise approach to evaluating working fluids and guiding computer-aided molecular design of new fluids for ORCs using GC methods. 展开更多
关键词 organic rankine cycles (ORCs) group contribution methods working fluids property estimation computer-aided molecular design
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Dynamic test on waste heat recovery system with organic Rankine cycle 被引量:3
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作者 王志奇 刘力文 +1 位作者 夏小霞 周乃君 《Journal of Central South University》 SCIE EI CAS 2014年第12期4607-4612,共6页
Dynamic performance is important to the controlling and monitoring of the organic Rankine cycle(ORC) system so to avoid the occurrence of unwanted conditions. A small scale waste heat recovery system with organic Rank... Dynamic performance is important to the controlling and monitoring of the organic Rankine cycle(ORC) system so to avoid the occurrence of unwanted conditions. A small scale waste heat recovery system with organic Rankine cycle was constructed and the dynamic behavior was presented. In the dynamic test, the pump was stopped and then started. In addition, there was a step change of the flue gas volume flow rate and the converter frequency of multistage pump, respectively. The results indicate that the working fluid flow rate has the shortest response time, followed by the expander inlet pressure and the expander inlet temperature.The operation frequency of pump is a key parameter for the ORC system. Due to a step change of pump frequency(39.49-35.24 Hz),the expander efficiency and thermal efficiency drop by 16% and 21% within 2 min, respectively. Besides, the saturated mixture can lead to an increase of the expander rotation speed. 展开更多
关键词 organic rankine cycle waste heat recovery dynamic performance
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Power Generation Systems Using Continuous Blowdown Waste Heat from Drum Boilers Driving an Organic Rankine Cycle 被引量:2
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作者 LIU Qiang DUAN Yuanyuan WAN Xucai 《中国电机工程学报》 EI CSCD 北大核心 2013年第35期I0001-I0014,共14页
提出了一种利用汽包锅炉排污系统余热的有机朗肯循环发电系统,有机工质回收扩容器疏水的热量,并通过气轮机发电。建立了系统的热力性能分析模型,并对R227ea、RC318、R236ea、R245fa、R245ca、R123和R113等7种工质的热力性能进行了优化... 提出了一种利用汽包锅炉排污系统余热的有机朗肯循环发电系统,有机工质回收扩容器疏水的热量,并通过气轮机发电。建立了系统的热力性能分析模型,并对R227ea、RC318、R236ea、R245fa、R245ca、R123和R113等7种工质的热力性能进行了优化。结果表明,临界温度高的工质,其o2循环的最佳主气温度(蒸发温度)反而低;亚临界循环采用干流体时,过热不利于余热的利用;超临界循环可以改善热源与工质间的温度匹配,有利于增大系统输出功,但是其运行压力高、大比热区的传热恶化等问题是实际运行和设计需要考虑的因素;R236ea的热力性能优于其余6种工质。 展开更多
关键词 朗肯循环 余热驱动 连续排污 发电系统 锅炉 燃煤电厂 标准煤耗率 发电量
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Working Fluid Selection for Medium Temperature Organic Rankine Cycle 被引量:1
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作者 CHEN Qicheng XU Jinliang MIAO Zheng 《中国电机工程学报》 EI CSCD 北大核心 2013年第32期I0001-I0001,共1页
关键词 朗肯循环 工作液 中温 ORC 流体性质 介质温度 源驱动 甲苯
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Selection of organic Rankine cycle working fluid based on unit-heat-exchange-area net power 被引量:1
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作者 郭美茹 朱启的 +2 位作者 孙志强 周天 周孑民 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1548-1553,共6页
To improve energy conversion efficiency, optimization of the working fluids in organic Rankine cycles(ORCs) was explored in the range of low-temperature heat sources. The concept of unit-heat-exchange-area(UHEA) net p... To improve energy conversion efficiency, optimization of the working fluids in organic Rankine cycles(ORCs) was explored in the range of low-temperature heat sources. The concept of unit-heat-exchange-area(UHEA) net power, embodying the cost/performance ratio of an ORC system, was proposed as a new indicator to judge the suitability of ORC working fluids on a given condition. The heat exchange area was computed by an improved evaporator model without fixing the minimum temperature difference between working fluid and hot fluid, and the flow pattern transition during heat exchange was also taken into account. The maximum UHEA net powers obtained show that dry organic fluids are more suitable for ORCs than wet organic fluids to recover low-temperature heat. The organic fluid 1-butene is recommended if the inlet temperature of hot fluid is 353.15-363.15 K or443.15-453.15 K, heptane is more suitable at 373.15-423.15 K, and R245 ca is a good option at 483.15-503.15 K. 展开更多
关键词 organic rankine cycle(ORC) working fluid selection net power heat exchange area
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A thermodynamics comparison of subcritical and transcritical organic Rankine cycle system for power generation
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作者 朱家玲 薄华宇 +2 位作者 李太禄 胡开永 刘克涛 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3641-3649,共9页
A comparison on subcritical and transcritical organic Rankine cycle(ORC) system with a heat source of 110 ℃ geothermal water was presented. The net power output, thermal and exergy efficiencies and the products of ... A comparison on subcritical and transcritical organic Rankine cycle(ORC) system with a heat source of 110 ℃ geothermal water was presented. The net power output, thermal and exergy efficiencies and the products of the heat transfer coefficient(U) and the total heat exchange area(A)(UA values) were calculated for parametric optimization. Nine candidate working fluids were investigated and compared. Under the given conditions, transcritical systems have higher net power outputs than subcritical ones. The highest net power output of transcritical systems is 18.63 k W obtained by R218, and that of subcritical systems is 13.57 k W obtained by R600 a. Moreover, with the increase of evaporating pressure, the thermal and exergy efficiencies of transcritical systems increase at first and then decrease, but the efficiencies of subcritical ones increase. As a result, the efficiencies of transcritical systems cannot always outperform those of the subcritical ones. However, the subcritical systems have lower minimum UA values and lower expansion ratios than the transcritical ones at the maximum net power output. In addition, the transcritical cycles have higher expansion ratios than the subcritical ones at their maximum net power output. 展开更多
关键词 organic rankine cycle low temperature heat source parametric optimization
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Performance analysis and improvement of geothermal binary cycle power plant in oilfield 被引量:4
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作者 李太禄 朱家玲 张伟 《Journal of Central South University》 SCIE EI CAS 2013年第2期457-465,共9页
In order to improve the efficiency of a geothermal power plant, oil wells in the high water cut stage were used as geothermal wells, thereby improving the recovery ratio and economic benefit. A new function that refle... In order to improve the efficiency of a geothermal power plant, oil wells in the high water cut stage were used as geothermal wells, thereby improving the recovery ratio and economic benefit. A new function that reflects both the technical and economic performances was put forward and used as the objective function. An organic Rankine cycle (ORC) was analyzed through the energetic and exergetic analyses, and the reasons for low efficiency were pinpointed. Results indicate that geothermal water directly transferring heat to the working fluid reduces energy dissipation and increases cycle efficiencies. The net power output with an internal heat exchanger (IHE) is averagely 5.3% higher than that without an IHE. R601a and R601 can be used to replace R123 for geothermal water below 110℃. Moreover, the modified ORC dramatically outperforms the actual one. 展开更多
关键词 geothermal power generation organic rankine cycle energetic and exergetic analyses OILFIELD internal heat exchanger
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基于蜣螂优化算法的ORC发电系统工质筛选及综合性能评价 被引量:1
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作者 彭斌 徐建委 《动力工程学报》 北大核心 2025年第4期635-644,共10页
基于有机朗肯循环(ORC)发电系统工质的筛选存在评价指标不一、不能全面反映系统综合性能等问题,在150℃热源温度下,依据工质选取原则对工质进行初步筛选,通过MATLAB联立REFPROP9.0建立ORC系统的热力学、热经济和环境模型,采用热效率和[... 基于有机朗肯循环(ORC)发电系统工质的筛选存在评价指标不一、不能全面反映系统综合性能等问题,在150℃热源温度下,依据工质选取原则对工质进行初步筛选,通过MATLAB联立REFPROP9.0建立ORC系统的热力学、热经济和环境模型,采用热效率和[火用]效率作为热力学性能指标,单位输出功所需换热面积为热经济性能指标,当量二氧化碳排放量为环保性能指标,对不同工质对系统的热力学性能、热经济性能和环保性能影响进行研究,并通过对比蜣螂优化算法与其余4种常用算法进行工质筛选。结果表明:蒸发温度和冷凝温度对系统的影响较大,蒸发温度升高有利于系统热力学性能的提升,冷凝温度的升高不利于系统的热力学性能和环保性能,过热度只对系统[火用]效率影响较大,对环保性能指标影响较小;蒸发温度在100℃、冷凝温度在30℃时,系统单位输出功所需换热面积最小;R245fa的综合评价函数值远大于其他工质,其综合性能最优。 展开更多
关键词 有机朗肯循环 工质筛选 蜣螂优化算法 综合评价
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集成ORC系统的高效氢液化流程设计研究
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作者 李秋英 花亦怀 +5 位作者 程昊 张涵玮 刘文睿 白昊川 王凯 邱利民 《化工学报》 北大核心 2025年第7期3651-3658,共8页
针对常规氢液化流程存在的高能耗和压缩机组高温余热未利用的问题,基于液氮预冷的Claude氢液化系统提出一种耦合有机朗肯循环的高效流程,利用Aspen Hysys进行稳态模拟并开展能量分析和[火用]分析。结果表明,该流程可以实现5t/d的液氢产... 针对常规氢液化流程存在的高能耗和压缩机组高温余热未利用的问题,基于液氮预冷的Claude氢液化系统提出一种耦合有机朗肯循环的高效流程,利用Aspen Hysys进行稳态模拟并开展能量分析和[火用]分析。结果表明,该流程可以实现5t/d的液氢产率,相比无ORC的常规系统,净功耗从1803.97 kW显著降低至1701.39 kW,比能耗为8.17 kWh/kg,[火用]效率为42.14%。 展开更多
关键词 液化 催化 有机朗肯循环 比能耗 [火用]效率
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生物质双级蒸发双回热有机朗肯循环系统环境分析
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作者 戴文智 沈雄健 +1 位作者 宋晓博 杨新乐 《化工学报》 北大核心 2025年第3期1230-1242,共13页
为了探究有机朗肯循环(ORC)对环境的影响,进一步完善ORC对环境影响的研究,基于常规㶲环境法、高级㶲环境法和增强㶲环境法对生物质双级蒸发双回热有机朗肯循环(DEDR-ORC)系统进行环境分析,并使用五个评价指标对其结果进行对比分析。研究结... 为了探究有机朗肯循环(ORC)对环境的影响,进一步完善ORC对环境影响的研究,基于常规㶲环境法、高级㶲环境法和增强㶲环境法对生物质双级蒸发双回热有机朗肯循环(DEDR-ORC)系统进行环境分析,并使用五个评价指标对其结果进行对比分析。研究结果表明:常规㶲环境法和高级㶲环境法得出组件的改进潜力不尽相同,和高级㶲环境法相比,增强㶲环境法分析得出锅炉的改进顺序发生了变化,从第四变为第三,生物质锅炉的总可避免对环境的影响比高级㶲环境法分析结果提高了22.370 Pts/h。其他组件和高级㶲环境法得出的结果相差不大,说明生物质DEDR-ORC系统对环境的影响主要来自于组件的㶲损失和系统排放的污染物。研究结果可为ORC领域的环境分析提供理论支撑与技术参考。 展开更多
关键词 生物质 燃料 热力学 有机朗肯循环 高级㶲环境 增强㶲环境
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ORC发电系统工艺过程预警诊断技术研究与展望
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作者 王金江 鲁振杰 +2 位作者 安维峥 杨风允 秦小刚 《化工学报》 北大核心 2025年第7期3137-3152,共16页
有机朗肯循环(organic Rankine cycle,ORC)作为一种先进的热能转换技术,因其在回收低品位热能、地热能、太阳能等领域的广泛应用而备受关注。近年来,随着自动化与人工智能技术的发展,ORC系统逐渐实现了全流程自动化和智能化的系统转型,... 有机朗肯循环(organic Rankine cycle,ORC)作为一种先进的热能转换技术,因其在回收低品位热能、地热能、太阳能等领域的广泛应用而备受关注。近年来,随着自动化与人工智能技术的发展,ORC系统逐渐实现了全流程自动化和智能化的系统转型,但针对ORC系统工艺过程预警诊断的研究严重不足。在这一背景下,首先介绍了工艺时序数据的表示方法和特性;其次,探讨了基于解析模型、知识驱动与数据驱动的建模技术在预警诊断中的应用;最后,分析了当前技术应用于ORC系统工艺过程在数据、模型、系统和应用四个层面所面临的挑战,并提出了未来研究方向。旨在促进ORC系统在工业领域的技术进步和工业应用,为实现更安全、高效和智能的能源转换系统提供理论基础和技术支持。 展开更多
关键词 过程系统 过程控制 有机朗肯循环 预警诊断 神经网络
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相变蓄热耦合太阳能驱动有机朗肯循环供热系统优化
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作者 于静梅 王一琦 蔡曜阳 《化学工程》 北大核心 2025年第7期13-18,共6页
针对中国供热系统低碳化转型和促进可再生能源的快速发展,设计一套耦合相变蓄热箱、太阳能有机朗肯循环和水源热泵的低碳供热系统,减少太阳能利用成本。使用TRNSYS软件搭建供热系统模型,以呼和浩特市某员工宿舍为研究对象,费用年值、[火... 针对中国供热系统低碳化转型和促进可再生能源的快速发展,设计一套耦合相变蓄热箱、太阳能有机朗肯循环和水源热泵的低碳供热系统,减少太阳能利用成本。使用TRNSYS软件搭建供热系统模型,以呼和浩特市某员工宿舍为研究对象,费用年值、[火用]效率和电能自给率为目标函数,集热器面积等系统关键参数作为决策变量,采用NSGA-Ⅱ算法对系统进行多目标优化和TOPSIS方法寻找最优解。优化结果表明:在集热器面积为912 m^(2)、热泵额定制热量为109 kW、使用相变材料体积为8.25 m^(3)、地埋管孔数为24、启动集热器时的辐照强度为121 W/m^(2)、集热器配给流量为54 kg/(m^(2)·h)时,系统达到最优,此时系统费用年值为15.06万元,电能自给率为52.8%,[火用]效率为9%。 展开更多
关键词 相变蓄热 太阳能 水源热泵 有机朗肯循环 NSGA-Ⅱ算法
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考虑广义电热需求响应与阶梯式碳交易机制的园区综合能源系统优化调度策略 被引量:2
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作者 田煜昆 陈彦奇 +3 位作者 刘一帆 徐钢 陈衡 王修彦 《电测与仪表》 北大核心 2025年第6期152-160,共9页
双碳背景下,为了实现园区综合能源系统的低碳经济运行,提出了一种考虑广义电热需求响应与阶梯式碳交易机制的园区综合能源系统优化调度模型。在园区综合能源系统中引入有机朗肯循环进行余热发电,实现热电联供的热电解耦,从而使热电联供... 双碳背景下,为了实现园区综合能源系统的低碳经济运行,提出了一种考虑广义电热需求响应与阶梯式碳交易机制的园区综合能源系统优化调度模型。在园区综合能源系统中引入有机朗肯循环进行余热发电,实现热电联供的热电解耦,从而使热电联供的出力更加灵活;在荷侧引入传统需求侧灵活响应,与余热发电相互配合,构建广义电热需求响应,进一步提高系统的低碳性与经济性;引入阶梯式碳交易机制,进一步约束系统的碳排放。结果表明:考虑广义电热需求响应以及阶梯式碳交易机制可以有效地降低系统的碳排放,提升系统经济性。 展开更多
关键词 综合能源系统 有机朗肯循环 需求响应 阶梯式碳交易 低碳
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