蓄热系数

  • 网络thermal storage coefficient;thermal effusivity;heat storage coefficient;Coefficient of thermal storage
蓄热系数蓄热系数
  1. 本文利用压力节点的方法,建立了超临界机组协调控制系统的数学模型,并详细地介绍了该模型中锅炉蓄热系数的理论计算方法。

    This article utilizes the method of pressure node , establishes the mathematic model of the coordinated control system for supercritical unit , and introduces in detail the theoretical calculation method of the heat storage coefficient of boiler in the model .

  2. 采用机理分析法,结合容积蓄热系数概念,讨论了一种利用锅炉设计数据及水和水蒸汽热力性质的直流锅炉蓄热系数计算方法。

    By mechanism analysis , combining with the concept of volume heat release coefficient , a boiler heat storage coefficient calculation method using design data and thermodynamic properties of water and steam was discussed .

  3. 锅炉蓄热系数随汽包压力升高而减小;

    Boiler lumped storage coefficient decreased with drum pressure increasing .

  4. 隔热室体传热系数和蓄热系数的非稳态测量

    Measurement of Heat Transfer Coefficient and Retaining Heat Parameter of Isolated Heat Room Structure

  5. 锅炉蓄热系数的理论计算

    The Theoretical Calculation of Boiler Regenerative Coefficient

  6. 蓄热系数的求法

    A Method to Calculate Holding-heat Coefficient

  7. 复合轻集料混凝土砌块在热阻增加的同时,蓄热系数减少,墙体的热惰性指标减少。

    Meanwhile , the coefficient of heat storage and coeffi - cient of thermal inertia of light compound block decrease .

  8. 本文依据传热的基本原理,针对具有空气冷却和加热功能的环境试验箱围护结构隔热层的传热特性参数&传热系数和蓄热系数,用非稳态测量方法进行了比较试验。

    Based on the principle of heat transfer , the unsteady theory ( temperature up and down ) analysis the heat transfer coefficient and the retaining heat parameter for an cooling and heating test chamber 's isolated heat structure is established .

  9. 对于铜合金,其蓄热系数小、凝固速度快、且易氧化吸气,要在铜合金表面形成具有一定厚度的渗层比较困难。

    As for the copper alloy , its coefficient of storing heat is small and the velocity of solidification meanwhile easily absorbing gas and oxidation is quick , forming the penetration layer on the copper alloy surface is more difficult than other alloy surface .