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1.
以太阳能为驱动热源,基于喷射式制冷和ORC,构建一种太阳能喷射式制冷功冷联供系统,该系统分为太阳能集热子系统和功冷联供子系统两部分。以R161为功冷联供子系统循环工质,通过Matlab建立该系统热力学模型,对其性能进行模拟,在设计工况下该系统制冷量为2.893 kW,净输出功为1.594 kW,功冷联供子系统制冷效率为12.47%,发电效率为6.87%,效率为41.45%。通过分析可知,该系统损占比较大的部件依次为太阳能集热器(73.3%)、发生器(12.14%)、蒸发器(5.03%)和透平(4.81%)。考虑到实际过程,分别研究系统内部参数改变和外部环境参数改变,对系统的影响,发现高低压发生器的温升由利于系统性能的提升,同时环境温度的升高以及太阳辐照度的提升均可改善集热器效率,从而提升系统性能。  相似文献   

2.
盖双旗 《太阳能学报》2014,35(12):2497-2503
以应用热力学理论和方法建立的由太阳集热器和不可逆中冷回热再热布雷顿循环模型组成的恒温条件下太阳能布雷顿热机系统为研究对象,以系统总效率为目标函数,分析并计算太阳辐射强度和聚光比、高低温换热器有效度、压缩机和透平效率、中间压比和总压比对系统总效率的影响。结果表明,系统存在一个最佳的太阳集热器工作温度和相应的最大系统总效率;当太阳集热器效率保持一定时,系统总效率随太阳辐照强度和聚光比的提高而升高;相同工作温度下,提高低温侧换热器有效度压缩机效率对系统总效率的提高收益更大。通过优化中间压比可使系统总效率达到最大,系统运行时存在一个最佳总压比。  相似文献   

3.
超临界CO2循环可以耦合较低温度的地热和较高温度的太阳能热组成混合热源发电系统。相比能量分析方法,火用分析方法更便于分析混合系统对提高能量利用率的作用,以及识别造成可用能损失的设备和过程。115℃地热和200℃地热分别与采用槽式聚光集热技术的太阳能热组成混合热源,构成简单回热超临界CO2循环。分析结果表明:混合系统的火用效率比单纯太阳能热的循环系统提高了5% ~ 10%;太阳能聚光集热器的?损失最大,占80%以上,其次是除预冷器以外的各类换热器以及透平;相比之下,压缩机和预冷器的火用损失较小。减少?损失的关键是提高太阳能聚光集热器和换热器的性能,包括提高集热管运行温度,以及提高换热器效能。  相似文献   

4.
不可逆中冷回热太阳能布雷顿循环系统的优化分析   总被引:1,自引:0,他引:1  
建立了由太阳能集热器模型和不可逆中冷回热布雷顿循环模型组成的恒温热源条件下太阳能布雷顿循环系统,以系统总效率为目标函数,考虑了高低温侧换热器、回热器和中冷器的热阻损失以及压缩机和涡轮机的不可逆损失,借助数值计算对太阳能集热器的工作温度进行了优化,并分析了主要特征参数对总效率的影响.结果表明:太阳能布雷顿循环系统中存在一个最佳的太阳能集热器工作温度和相应的最大总效率及最大总输出功率;在此基础上,通过优化中间压比可使循环系统的总效率和相应的总输出功率达到双重最大值;系统总效率随着回热器传热有效度和光学效率的增加而提高;系统运行时存在一个最佳的总压比.  相似文献   

5.
分别对汽轮机组热机效率和太阳能集热器效率进行了分析,并对热机效率进行了修正,得到了不同状况下的太阳能热发电系统效率和最优运行温度。研究表明:随着太阳辐照度、太阳能热发电系统聚光比的增加,系统效率提高,最佳集热温度升高;然而,当综合传热系数增大时,系统效率下降,最佳集热温度降低;太阳能集热器光学效率的变化,只影响系统效率,对系统的最佳集热温度影响不大。  相似文献   

6.
设计一个由太阳能空气集热器和曲面菲涅尔透镜联合驱动的鼓泡加湿除湿型太阳能海水淡化系统,介绍该系统的结构和运行原理,对多曲面聚光器的聚光特性进行光学仿真分析,对装置各部件的能量进行平衡计算,测试系统在实际天气条件下的产水性能,给出太阳辐照度、装置运行温度和产水效率随时间的变化关系。当太阳辐照度平均为795 W/m2时,该装置集热管出口温度最高为64.8℃,产水量约为9.48 kg/d,整体系统热效率为43.5%。  相似文献   

7.
太阳能辅助加热户用沼气系统的瞬时计算分析   总被引:2,自引:0,他引:2  
设计了太阳能辅助加热户用沼气池系统.太阳集热器集热通过螺旋管换热器加热沼液.为了评价系统的加热效果,对系统进行优化设计,建立了系统数学模型,对系统冬季运行情况进行计算分析.结果表明,太阳能辅助加热户用沼气系统能有效提高沼气池内温度.  相似文献   

8.
于晓慧  王甜  高志 《太阳能学报》2023,(11):166-173
该文将真空管集热器与直膨式太阳能热泵结合,提出一种真空管直膨式太阳能热泵系统。实验研究典型工况下太阳辐照度、循环水温度对系统性能的影响,并探讨压缩机变频条件下系统的动态性能。结果表明,提高太阳辐照度、降低循环水温度有利于提高系统性能,在太阳辐照度为850 W/m2,循环水温度为55℃时系统取得最大COP,为5.36。压缩机频率为42 Hz的系统COP为4.08,较45、47、50 Hz分别提高1.23%、8.5%、13.6%。  相似文献   

9.
提出了一种基于太阳能利用的天然气冷热电联供系统,利用平板式真空管太阳能集热器制取87.5℃的太阳能热水,在与天然气内燃机发电产生的缸套水混合后协同烟气共同驱动多源吸收式制冷机组制冷,其末端烟气通入余热换热器制热。采用"以电定热"的方式集成配置系统,研究模拟了系统设计工况及变工况下的热力学性能及太阳能与天然气的互补特性。结果表明:将100 kW的内燃机与集热效率59%的太阳能集热器阵列匹配时,系统一次能源效率、火用效率可达71.17%、33.33%;天然气子系统较太阳能子系统对于总系统一次能源效率、火用效率有更大的贡献率。  相似文献   

10.
采用太阳能驱动电解水制氢是实现将太阳能转换为氢能来存储的最佳方式。该文提出一种采用光伏、光热协同驱动固体氧化物电解池(SOEC)进行高温蒸汽电解的制氢系统。建立各子系统数学模型,选取北京地区夏至日气象参数,分析太阳辐照度对制氢系统的性能影响,最后对整个系统进行能量及火用分析。结果表明,电流密度和温度是影响SOEC工作的重要因素。在电流密度较大的情况下升高温度,将有利于提高电解效率。耦合太阳能后系统最大能量及火用效率分别达到19.1%和20.3%。火用分析结果表明系统最大有用功损失发生在光电转换过程,火用损比例为87%。提升光电效率,将成为提高太阳能-氢能转换效率的关键。  相似文献   

11.
A novel solar polygeneration system for heat, power and fresh water production with absorption heat pump(AHP) and humidification-dehumidification(HDH) desalination system was proposed for high-efficiency utilization of solar energy. A case study of the proposed system was investigated based on 1 MW solar thermal power(STP) tower plant located in Beijing. Depending on mathematical modeling of the proposed system, corresponding modules were developed in TRNSYS. Meanwhile, control and operation str...  相似文献   

12.
应用有限时间热力学理论和方法建立了闭式内可逆回热布雷顿热电冷联产装置模型,导出了装置无量纲(火用)输出率和效率的解析式。通过数值计算分析了回热器热导率对(火用)输出率和(火用)效率的影响,发现存在临界压比,同时优化了压比,研究了热电比、制冷和供热温度等设计参数对最优(火用)输出率和(火用)效率以及相应最佳压比的影响,发现最优(火用)输出率时的设计压比要大于最优(火用)效率时的设计压比,最优(火用)输出率和(火用)效率均随冷用户温度的升高而减小,分别存在最佳的热用户温度使(火用)输出率和(火用)效率取得最大值,热用户温度对装置最优(火用)性能的影响比冷用户温度更为明显。  相似文献   

13.
建立超临界CO2布雷顿循环塔式太阳能热发电系统的热力性能和经济性能模型,比较不同装机容量下系统的年均效率,分析系统中各项成本占比及其随容量增长的变化规律,提出进一步降低发电成本的方法。结果表明,主要受镜场效率的影响,系统年均效率随装机容量增加先升后降,峰值为20 MW时的17.4%。发电成本随装机容量的增加而减小,由1 MW时的0.477 美元/kWh降至100 MW时的0.125 美元/kWh。减小镜场和储热的投资成本是降低大规模电站发电成本的关键。  相似文献   

14.
Solar-dish Brayton system driven by the hybrid of fossil fuel and solar energy is characterized by continuously stable operation, simplified hybridization, low system costs and high thermal efficiency. In order to enable the system to operate with its highest capabilities, a thermodynamic multi-objective optimization was performed in this study based on maximum power output, thermal efficiency and ecological performance. A thermodynamic model was developed to obtain the dimensionless power output, thermal efficiency and ecological performance, in which the imperfect performance of parabolic dish solar collector, the external irreversibility of Brayton heat engine and the conductive thermal bridging loss were considered. The combination of NSGA-II algorithm and decision makings was used to realize multi-objective optimization, where the temperatures of absorber, cooling water and working fluid, the effectiveness of hot-side heat exchanger, cold-side heat exchanger and regenerator were considered as optimization variables. Using the decision makings of Shannon Entropy, LINMAP and TOPSIS, the final optimal solutions were chosen from the Pareto frontier obtained by NSGA-II. By comparing the deviation index of each final optimal solution from the ideal solution, it is shown that the multi-objective optimization can lead to a more desirable design compared to the single-objective optimizations, and the final optimal solution selected by TOPSIS decision making presents superior performance. Moreover, the fitted curve between the optimal power output, thermal efficiency and ecological performance derived from Pareto frontier is obtained for better insight into the optimal design of the system. The sensitivity analysis shows that the optimal system performance is strongly dependent on the temperatures of absorber, cooling water and working fluid, and the effectiveness of regenerator. The results of this work offer benefits for related theoretic research and basis for solar energy industry.  相似文献   

15.
This communication is based on exergy concept for the utilization of solar thermal energy in a Rankine cycle‐based fuel‐fired thermal power plant (FFTPP). It has been shown that solar thermal energy as an aided source for feed water preheating helps to reduce the exergy loss in feed water heater (FWH) of Rankine cycle and develops more work than that could have been produced in a solar thermal power plant (STPP). It has been found that this enhancement in work increases for low‐pressure FWHs. For further illustration, a case study has been carried out of a typical 50 kW STPP and a 220 MW FFTPP. The effect of utilizing the same input solar thermal energy of typical STPP, if used as an aided source in a 220 MW FFTPP for feed water preheating is investigated. The work output of STPP is 59.312 kW, while the extra work output of FFTPP by using solar thermal energy of STPP is 90.27 kW. It has been found that the efficiency of work conversion of aided solar thermal energy in FFTPP is higher than the efficiency of work conversion in STPP. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   

16.
Power generation and its storage using solar energy and hydrogen energy systems is a promising approach to overcome serious challenges associated with fossil fuel-based power plants. In this study, an exergoeconomic model is developed to analyze a direct steam solar tower-hydrogen gas turbine power plant under different operating conditions. An on-grid solar power plant integrated with a hydrogen storage system composed of an electrolyser, hydrogen gas turbine and fuel cell is considered. When solar energy is not available, electrical power is generated by the gas turbine and the fuel cell utilizing the hydrogen produced by the electrolyser. The effects of different working parameters on the cycle performance during charging and discharging processes are investigated using thermodynamic analysis. The results indicate that increasing the solar irradiation by 36%, leads to 13% increase in the exergy efficiency of the cycle. Moreover, the mass flow rate of the heat transfer fluid in solar system has a considerable effect on the exergy cost of output power. Solar tower has the highest exergy destruction and capital investment cost. The highest exergoeconomic factor for the integrated cycle is 60.94%. The steam turbine and PEM electrolyser have the highest share of exergoeconomic factor i.e., 80.4% and 50%, respectively.  相似文献   

17.
熔盐换热器作为塔式太阳能熔盐储热发电系统中的一个重要设备,随着太阳能储热发电技术的发展,产生了各种不同形式的设计。从熔盐物性特点和太阳能储热发电技术特点的角度出发,对熔盐换热器设计要点进行了阐述。并通过归纳总结新型换热器技术在熔盐换热器上的应用,来展望熔盐换热器技术的发展趋势。  相似文献   

18.
In this paper, a comprehensive study on thermodynamic analysis and assessment, through energy and exergy approaches, is conducted for a multigenerational solar based integrated energy system. The system proposed in this study is based on heliostat solar system integrated with steam turbine. The system is also integrated with seawater reverse osmosis desalination unit and absorption cooling system. The desalination unit operates with energy recovery through the utilization of Pelton turbine. The system produces cooling, heating, fresh water and hydrogen through electrolysis. It is furthermore designed to cover the demand of 4 MW electric power with the production of 1.25 kg/h of hydrogen and 90 kg/s of fresh water. The system advisor model software is applied on a case study for the solar heliostat optimization analysis.  相似文献   

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