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含分布式电源配网多时间尺度电压-无功控制
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作者 刘浩田 郑楚玉 +4 位作者 冷阳 李琴 张华 陈仕杜 李佳勇 《哈尔滨理工大学学报》 CAS 北大核心 2024年第2期110-120,共11页
针对大规模分布式电源接入配电网导致的网损增加、电压偏移增大和电压越限等问题,研究考虑不同种类和响应速度调压设备的多时间尺度电压-无功协同控制方法。在日前阶段,建立以最小化网损及电压偏差为目标,考虑有载调压分接头、电容器组... 针对大规模分布式电源接入配电网导致的网损增加、电压偏移增大和电压越限等问题,研究考虑不同种类和响应速度调压设备的多时间尺度电压-无功协同控制方法。在日前阶段,建立以最小化网损及电压偏差为目标,考虑有载调压分接头、电容器组等传统设备的日前优化模型,采用线性化和二阶锥方法进行高效求解;在日内阶段,考虑不同分布式电源及调压设备的调节成本差异,提出基于电压灵敏度原理的无功-有功高效电压控制模型。仿真算例表明,该方案能降低电压偏移和网络损耗(降低34.73%),当电压越限发生时,能根据电压灵敏度以及各设备调控成本优化控制目标,在调整电压的同时兼顾经济性。 展开更多
关键词 电压控制 无功功率 分布式电源 多时间尺度
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LNG冷能利用产业发展形势分析
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作者 郑楚渝 高宏亮 马晓东 《化工管理》 2024年第10期10-12,共3页
随着LNG行业的发展,冷能利用作为LNG的附加值势在必行。把握好市场机会能够促进LNG冷能利用产业升级发展,推动我国能源绿色低碳转型。LNG冷能利用产业发展的形势分析通过梳理技术和产业的发展现状、结合市场和政策揭示未来发展机遇、提... 随着LNG行业的发展,冷能利用作为LNG的附加值势在必行。把握好市场机会能够促进LNG冷能利用产业升级发展,推动我国能源绿色低碳转型。LNG冷能利用产业发展的形势分析通过梳理技术和产业的发展现状、结合市场和政策揭示未来发展机遇、提出产业发展面临的挑战并提出相关对策,为我国LNG冷能利用产业进一步发展提供借鉴。 展开更多
关键词 LNG 冷能利用 发展现状 发展机遇 挑战与对策
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Path Analysis of Energy-Saving Technology in Yangtze River Basin Based on Multi-Objective and Multi-Parameter Optimisation 被引量:1
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作者 MENG Xiangzhong YU Wei +2 位作者 zheng chuyu WANG Di CAO Xinyun 《Journal of Thermal Science》 SCIE EI CAS CSCD 2019年第6期1164-1175,共12页
The Yangtze River Basin in China is characterised by hot-and cold-humid climates in summer and winter, respectively. Thus, increased demand for heating and cooling energy according to the season, as well as poor indoo... The Yangtze River Basin in China is characterised by hot-and cold-humid climates in summer and winter, respectively. Thus, increased demand for heating and cooling energy according to the season, as well as poor indoor thermal comfort, are inevitable. To overcome this problem, this study focused on the influence of passive design and heating, ventilation, and air conditioning equipment performance on the energy performance of residential buildings, and explored potential energy-saving technology paths involving passive design and improved coefficient of performance through a multi-objective and multi-parameter optimisation technique. A large-scale questionnaire survey covering a typical city was first conducted to identify family lifestyle patterns regarding time spent at home, family type, air conditioner use habits, indoor thermal comfort, etc. Then, the actual heating and cooling energy consumption and information of model building were determined for this region. Subsequently, the design parameters of an individual building were simulated using Energyplus to investigate the cooling and heating energy consumption for a typical residential building with an air conditioner. The results indicated an improvement of approximately 30% in energy efficiency through optimisation of the external-wall insulation thickness and the external-window and shading performance, and through use of appropriate ventilation technology. Thus, a multi-objective and multi-parameter optimisation model was developed to achieve comprehensive optimisation of several design parameters. Experimental results showed that comprehensive optimisation could not only reduce cooling and heating energy consumption, but also improve the thermal comfort level achieved with a non-artificial cooling and heating source. Finally, three energy-saving technology paths were formulated to achieve a balance between indoor thermal comfort improvement and the target energy efficiency(20 kWh/(m2?a)). The findings of this study have implications for the future design of buildings in the Yangtze River Basin, and for modification of existing buildings for improved energy efficiency. 展开更多
关键词 YANGTZE River BASIN energy CONSUMPTION MULTI-OBJECTIVE and MULTI-PARAMETER optimisation passive design ENERGY-SAVING technology path
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