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喘振控制 meaning in Chinese

surge control

Examples

  1. Design and realization of sluice control system based on fiber communication
    轴流压缩机防喘振控制方法及实现
  2. This thesis analyzed and evaluated the principle of vibration protection and surge control by introducing the air compressor train in pta plant , and vibration - proof steps were given
    摘要通过对pta装置中大型空气压缩机组的介绍,对振动保护及喘振控制原理进行了分析并提出了保护措施。
  3. Abstract : the paper analysis control requires of the axial - flow compressor . in order to protect axial - flow compressor from the surging , using the programming single - loop adjuster ( its kernel is a microprocessor ) as the adjuster , comparing with the traditional analogy / digital adjusters , can make the system much simpler , more functional and more reliable
    文摘:分析了轴流压缩机工况的控制要求和控制方案.采用了以微处理器为核心的智能仪表? ?可编程型单回路调节器作为控制调节装置,与传统的模拟/数字调节器和继电器开关组合的方式比较,系统构成简单,控制功能强,可靠性高,为实现轴流压缩机防喘振控制提供了一种集约式设计方案
  4. Based on using the performance forecast model of centrifugal compressor , this paper the analyze is carried out on the performance forecast for centrifugal compressor and surge model of centrifugal compressor is established on its system . surge line of this system is obtained according to the performance similar principle . performance forecast software is compiled by using matlab at the same time
    本文在离心压缩机性能预测模型的理论基础上,对离心压缩机进行性能预测分析,并建立系统的喘振模型,然后利用性能相似原理,得到离心压缩机系统喘振线,同时利用matlab编制离心压缩机性能预测软件,应用于防喘振控制中,较好地解决了离心压缩机因喘振现象而停机或为防止喘振现象的发生而过分加大回流量,造成能源浪费的问题。

Related Words

  1. 发喘
  2. 实喘
  3. 风寒喘
  4. 喘抖
  5. 急喘
  6. 平喘
  7. 火喘
  8. 喘证
  9. 内伤喘逆
  10. 燥热喘逆
  11. 喘振工况
  12. 喘振极限
  13. 喘振扩展
  14. 喘振趋势
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