...
首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Optimal Operation of a Gas Turbine Cogeneration Unit With Energy Storage for Wind Power System Integration
【24h】

Optimal Operation of a Gas Turbine Cogeneration Unit With Energy Storage for Wind Power System Integration

机译:具有能量存储功能的燃气轮机热电联产机组的风电系统优化运行

获取原文
获取原文并翻译 | 示例
           

摘要

Many energy supply systems around the world are currently undergoing a phase of transition characterized by a continuing increase in installed renewable power generation capacities. The inherent volatility and limited predictability of renewable power generation pose various challenges for an efficient system integration of these capacities. One approach to manage these challenges is the deployment of small-scale dispatchable power generation and storage units on a local level. In this context, gas turbine cogeneration units, which are primarily tasked with the provision of power and heat for industrial consumers, can play a significant role, if they are equipped with a sufficient energy storage capacity allowing for a more flexible operation. The present study investigates a system configuration, which incorporates a heat-driven industrial gas turbine interacting with a wind farm providing volatile renewable power generation. The required energy storage capacity is represented by an electrolyzer and a pressure vessel for intermediate hydrogen storage. The generated hydrogen can be reconverted to electricity and process heat by the gas turbine. The corresponding operational strategy for the overall system aims at an optimal integration of the volatile wind farm power generation on a local level. The study quantifies the impact of selected system design parameters on the quality of local wind power system integration, that can be achieved with a specific set of parameters. In addition, the impact of these parameters on the reduction of CO2 emissions due to the use of hydrogen as gas turbine fuel is quantified. In order to conduct these investigations, detailed steady-state models of all required system components were developed. These models enable accurate simulations of the operation of each component in the complete load range. The calculation of the optimal operational strategy is based on an application of the dynamic programming algorithm. Based on this model setup, the operation of the overall system configuration is simulated for each investigated set of design parameters for a one-year period. The simulation results show that the investigated system configuration has the ability to significantly increase the level of local wind power integration. The parameter variation reveals distinct correlations between the main design parameters of the storage system and the achievable level of local wind power integration. Regarding the installed electrolyzer power consumption capacity, smaller additional benefits of capacity increases can be identified at higher levels of power consumption capacity. Regarding the geometrical volume of the hydrogen storage, it can be determined that the storage volume loses its limiting character on the operation of the electrolyzer at a characteristic level. The additional investigation of the CO2 emission reduction reveals a direct correlation between the level of local wind power integration and the achievable level of CO2 emission reduction.
机译:目前,世界各地的许多能源供应系统都处于过渡阶段,其特征是可再生发电装机容量不断增加。可再生能源发电的固有波动性和有限的可预测性对这些容量的有效系统集成提出了各种挑战。解决这些挑战的一种方法是在本地部署小型可调度发电和存储单元。在这种情况下,主要负责为工业用户提供电力和热量的燃气轮机热电联产装置,如果配备有足够的储能能力,可以实现更灵活的运行,则可以发挥重要作用。本研究调查了一种系统配置,该系统将热驱动的工业燃气轮机与提供挥发性可再生能源的风电场相互作用。所需的储能能力由用于中间储氢的电解槽和压力容器表示。产生的氢气可以通过燃气轮机转换为电能并产生热量。整个系统的相应操作策略旨在在本地层面上优化风电场发电的整合。这项研究量化了所选系统设计参数对本地风力发电系统集成质量的影响,这可以通过一组特定的参数来实现。此外,由于使用氢气作为燃气轮机燃料,这些参数对减少CO2排放的影响也得到了量化。为了进行这些调查,开发了所有必需系统组件的详细稳态模型。这些模型可以在整个负载范围内准确模拟每个组件的运行。最佳操作策略的计算基于动态规划算法的应用。基于此模型设置,将在一年的时间内针对每个调查的设计参数集模拟整个系统配置的操作。仿真结果表明,所研究的系统配置具有显着提高本地风电集成水平的能力。参数变化揭示了存储系统的主要设计参数与可实现的本地风电集成水平之间的显着相关性。关于已安装的电解器功耗容量,可以在更高的功耗容量级别上发现容量增加的较小附加好处。关于储氢器的几何体积,可以确定出储氢器在特性水平上失去了其对电解器的运行的限制特性。对CO2排放量减少的其他调查显示,本地风电集成水平与可实现的CO2排放量水平之间存在直接相关性。

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