首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.4 >STUDY ON OFF-DESIGN STEADY STATE PERFORMANCES OF HELIUM GAS TURBOCOMPRESSOR FOR HTGR-GT
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STUDY ON OFF-DESIGN STEADY STATE PERFORMANCES OF HELIUM GAS TURBOCOMPRESSOR FOR HTGR-GT

机译:HTGR-GT用氦气透平压缩机的稳态性能研究

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The high temperature gas-cooled reactor (HTGR) coupled with direct gas turbine cycle is a promising concept in the future of nuclear power development. Both helium gas turbine and compressor are key components in the cycle. Under normal conditions, the mode of power adjustment is to control total helium mass in the primary loop using gas storage vessels. Meanwhile, thermal power of reactor core is regulated. This article analyzes off-design performances of helium gas turbine and compressors for high temperature gas-cooled reactor with gas turbine cycle (HTGR-GT) at steady state level of electric power adjustment. Moreover, performances of the cycle were simply discussed. Results show that the expansion ratio of turbine decreases as electric power reduces but the compression ratios of compressors increase, efficiencies of both turbine and compressors decrease to some extent. Thermal power does not vary consistently with electric power, the difference between these two powers increases as electric power reduces. As a result of much thermal energy dissipated in the temperature modulator set at core inlet, thermal efficiency of the cycle has a widely reduction under partial load conditions.
机译:高温气冷堆(HTGR)与直接燃气轮机循环相结合是核电发展未来的一个有前途的概念。氦气涡轮机和压缩机都是循环中的关键组件。在正常情况下,功率调整的模式是使用储气罐控制一次回路中的总氦质量。同时,调节电抗器堆芯的热功率。本文分析了在燃气轮机循环(HTGR-GT)处于稳定状态的电力调节状态下,用于高温气冷堆的氦气轮机和压缩机的设计外性能。此外,简单讨论了循环的性能。结果表明,涡轮机的膨胀比随着功率的减小而减小,但压缩机的压缩比增大,涡轮机和压缩机的效率都有一定程度的下降。火力并不随电力而变化,这两种功率之间的差异会随着电功率的减小而增加。由于设置在堆芯入口处的温度调节器中散发了大量热能,因此在部分负载条件下,循环的热效率已大大降低。

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