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Demand for flexibility improvement of thermal power units and accommodation of wind power under the situation of high-proportion renewable integrationtaking North Hebei as an example

机译:在高比例可再生集成的北河北省的情况下,热力电机的灵活性提高热力电机和风力的住宿方式

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As much wind power is connected to the power system, the accommodation of the wind power in the power grids becomes a huge challenge to the operation model of China's power system. Releasing and improving the flexibility of the power system will be necessary and important to enable the accommodation of power generated with renewable energy sources, which is connected to the power grids on a large scale and accounts for a high proportion. The paper, with North Hebei as an example, discusses the relationship between the demand for the flexibility of thermal power units and the accommodation of wind power. This paper further analyzes the demand for peak load regulation in North Hebei at both the present and the future as well as the characteristics of power sources in the power grids of North Hebei and the technical potential of power generation. It also compares the quantity of curtailed power before and after the flexibility-oriented transformation of thermal power units in North Hebei and calculates the minimum technical output of thermal power under different levels of accommodation of wind power. The research shows that the peak load regulating resources in the power grids of North Hebei boast huge potential, but in the long term, to achieve the objective of a 10% curtailment rate of power generated with renewable energy sources, the minimum technical output of condensing units must be lower than the internationally advanced level of 25%. So, it is difficult to fulfill the said objective solely relying on the strengthened transformation of generating units. To reach the level of 5% curtailment rate of power generated with renewable energy sources, the minimum technical output must achieve breakthrough improvement, which requires continuous technological innovation and power flexibility in close coordination.
机译:由于风电连接到电力系统,电网风电的容纳成为中国电力系统运行模式的巨大挑战。释放和提高电力系统的灵活性将是必要的并且是必要的,并且能够通过可再生能源产生的能量,该电源与可再生能源产生的能力,该电源与大规模的电网连接到电网,并占用高比例。本文以北河北为例,讨论了热力电机灵活性需求与风力的容纳之间的关系。本文进一步分析了当前和未来北河北省北河北省峰值负荷调节的需求,以及北河北电网电网的特点以及发电的技术潜力。它还比较了北河北热力电机柔性导向前后的缩减电量的数量,并计算了风电平均水平下的热功率的最低技术输出。该研究表明,北河北电网峰值负荷调节资源促进了巨大的潜力,但从长期来看,实现了可再生能源的10%削减电力延期率的目标,凝结的最低技术输出的缩减率。单位必须低于国际先进水平25%。因此,难以满足上述目的,仅依靠强化的发电机转换。为了达到可再生能源产生的5%缩减电力税率,最低技术产出必须实现突破性的改进,这需要在密切协调中进行持续的技术创新和功率灵活性。

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