首页> 外文会议>ASME Power Conference >SIMULATION OF ANCILLARY SERVICES IN THERMAL POWER PLANTS IN ENERGY SYSTEMS WITH HIGH IMPACT OF RENEWABLE ENERGY
【24h】

SIMULATION OF ANCILLARY SERVICES IN THERMAL POWER PLANTS IN ENERGY SYSTEMS WITH HIGH IMPACT OF RENEWABLE ENERGY

机译:高能量能源施加能量系统中热电厂辅助服务的仿真

获取原文

摘要

In many parts of the world, the impact of renewable energy, especially from intermittent sources as wind and solar is continuously increasing. In Germany, the share of renewable energy in electricity production is believed to increase from 32.5% in 2015 to 50% in 2030. In order to operate an electrical system and control the mains frequency, the power supply must match the consumption at any time. Ancillary services like primary and secondary control are used to balance the system on a time-scale of several seconds up to 15 minutes. Those control reserves are usually provided by thermal power plants. Particularly in times of high shares of fluctuating renewable feed-in, thermal power plants are turned off or operated at minimum load to avoid electricity production at low electricity prices. However, an amount of about 3000 MW of fast responding primary control need to be provided in the European network of transmission system operators for electricity grid to maintain stable operation even in case of two simultaneous large unit outages. This requirement leads to situations, where thermal power plants are operated in minimum load below their marginal cost to provide control reserves even if there is a surplus of energy in the grid. Operation in low load while at the same time providing control reserves leads to new challenges. As the relation between energy production and the thermal storage capacities provided by the metal and fluid mass in the boiler is decreasing with the load, the ability of responding to control demands is naturally slowed down. Dynamic simulation of the thermodynamic power plant process turned out to be an efficient method to investigate such operational modes. Using comprehensive process models coupled with a control system model, equipment adaptions or control system updates can be evaluated in order to provide faster responses. By increasing the specific amount of ancillary services per unit, the number of units necessary to provide the total amount of primary and secondary control could be reduced in situations with energy surplus.
机译:在世界的许多地方,可再生能源的影响,尤其是风和太阳能的间歇性来源是不断增加的。在德国,电力生产中可再生能源的份额据信从2015年的32.5%增加到2030年的50%。为了操作电气系统并控制电源频率,电源必须随时符合消耗。像初级和次要控制等辅助服务用于在最多15分钟的时间刻度平衡系统。这些控制储备通常由热电厂提供。特别是在高股波动的可再生进料的份额中,在最小负荷下截止或操作火力电厂,以避免低电价的电力生产。然而,需要在欧洲传输系统运营商的欧洲传输系统运营商网络中提供约3000兆瓦的快速响应主要控制,以便在两个同时大的单位停滞的情况下保持稳定的操作。该要求导致情况,其中热电厂在低于其边际成本之下的最小负载下运行,以提供控制储备,即使网格中的能量剩余。在低负载下操作,同时提供控制储备导致新的挑战。随着能源生产与锅炉中金属和流体块提供的热存储容量之间的关系,随着负荷降低,响应控制需求的能力自然减慢。热力学发电厂工艺的动态模拟结果是研究这种操作模式的有效方法。使用与控制系统型号耦合的综合工艺模型,可以评估设备适应或控制系统更新,以便提供更快的响应。通过增加每单位的特定数量的辅助服务,可以在能量盈余的情况下减少提供初级和二级控制总量的单位数量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号