首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >An Isothermal Steam Expander for an Industrial Steam Supplying System
【24h】

An Isothermal Steam Expander for an Industrial Steam Supplying System

机译:用于工业蒸汽供应系统的等温蒸汽膨胀机

获取原文
       

摘要

Steam is an essential medium used in the industrial process. To ensure steam quality, small and middle scale boilers are often adopted. However, because a higher steam pressure (compared to the necessary steam pressure) is generated, the boiler’s steam pressure will be reduced via a pressure regulator before the steam is directed through the process. Unfortunately, pressure is somewhat wasted during the reducing process. Therefore, in order to promote energy efficiency, a pressure regulator is replaced by a steam expander. With this steam expander, the pressure will be transformed into mechanical energy and extracted during the expansion process. A new type of isothermal steam expander for an industrial steam supplying system will be presented in the paper. The isothermal steam expander will improve the energy efficiency of a traditional steam expander by replacing the isentropic process with an isothermal expansion process. With this, steam condensation will decrease, energy will increase, and steam quality will be improved. Moreover, the mathematical model of the isothermal steam expander will be established by using the Schmidt theory, the same principle used to analyze Stirling engines. Consequently, by verifying the correctness of the theoretical model for the isothermal steam expander using experimental data, a prototype of 100 c.c. isothermal steam expander is constructed.
机译:蒸汽是工业过程中使用的基本介质。为了确保蒸汽质量,通常采用中小型锅炉。但是,由于会产生较高的蒸汽压力(与必要的蒸汽压力相比),因此在将蒸汽引导通过过程之前,将通过压力调节器降低锅炉的蒸汽压力。不幸的是,在还原过程中压力有些浪费。因此,为了提高能量效率,压力调节器被蒸汽膨胀器代替。使用该蒸汽膨胀机,压力将转化为机械能并在膨胀过程中被提取。本文将介绍一种用于工业蒸汽供应系统的新型等温蒸汽膨胀机。等温蒸汽膨胀机通过将等熵过程替换为等温膨胀过程,将提高传统蒸汽膨胀机的能源效率。这样,蒸汽冷凝将减少,能量将增加,蒸汽质量将得到改善。此外,将使用施密特理论建立等温蒸汽膨胀机的数学模型,该原理与分析斯特林发动机的原理相同。因此,通过使用实验数据验证等温蒸​​汽膨胀机理论模型的正确性,可以得到100 c.c的原型。构造了等温蒸汽膨胀机。

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