化工学报 ›› 2011, Vol. 62 ›› Issue (S1): 140-145.

• 流体力学与传递现象 • 上一篇    下一篇

增压强化烟气对流传热机理及其计算方法

雷雨,孙宝芝,李彦军,宋福元   

  1. 哈尔滨工程大学动力与能源工程学院,黑龙江 哈尔滨 150001
  • 出版日期:2011-07-03 发布日期:2011-07-03

  • Online:2011-07-03 Published:2011-07-03

摘要:

增压锅炉装置因其容积热负荷高、体积小、质量轻等优点广泛应用于大中型船舶主动力装置。利用分子动力学原理及流体分子微观理论与性质,分析了增压对烟气导热与热对流的影响机理,并利用Illes教授与前苏联的两种计算方法,分别计算了不同增压比下增压锅炉对流受热面烟气流速、密度以及传热系数等参数并进行了对比。经分析可知烟气压力的提高使分子碰撞频率增加、平均自由程减小、烟气密度增大,从而对流传热得到强化。同时计算结果表明烟气压力较低时两方法计算结果相差不大,但在压力接近0.3 MPa时,Illes教授推荐的热力计算方法所得传热系数可达到前苏联方法的1.3倍。

关键词: 增压锅炉, 强化传热, 对流受热面, 分子动力学

Abstract:

Supercharged boiler installation is widely applied in the main power plant of large and medium-sized ships for its high furnace volume heat release rate and small volume.The objective of this paper is to analyze the mechanism affected gas heat conduction and convection under pressure increased using the theory of molecular dynamics and properties of fluid molecules.And convection heating surface has been studied in this paper using the standard methods of Prof.Illes and the Soviet Union with supercharge ratio changed.The two methods calculation results including heat transfer coefficientgas flow rate and gas density are compared with each other respectively.It is obtained that increased frequency of molecular collisionsdecreased mean free path and larger gas density caused by pressure increased make the convective heat transfer process enhanced.And the calculation results demonstrate that differences between the two methods can be neglected under the low load however the heat transfer coefficient calculated with method recommended by Prof.Illes can be 1.3 times compared with the Soviet Union method when the pressure is close to 0.3 MPa.

Key words: 增压锅炉, 强化传热, 对流受热面, 分子动力学