the model and results are helpful to reveal heat and mass transfer characters of the adsorbent bed and to provide theoretical basis for optimal design of this system.
该数学模型和计算结果有助于深入认识吸附床的传热传质特性,以期能为吸附床的具体设计提供理论依据。
in order to improve the heat transfer and adsorption rate of the adsorbent bed used for adsorption refrigeration system, a consolidated composite adsorbent mainly made of active carbon is presented.
the heat transfer process in an adsorbent bed for natural gas storage is analyzed. its simple models are developed and their theoretical solutions obtained are discussed.
分析了天然气吸附床的传热过程,建立了简化的吸附床内传热模型,讨论了传热模型的分析解。
the properties of adsorbent bed of solid adsorption refrigeration is analyzed. the temperature filed of adsorbent bed and mass transfer of refrigerant are calculated.
运用数值传热学的方法 ,计算了在一定日照辐射能量条件下 ,系统装置的性能及吸附床内的温度场分布。
the numerical simulation of adsorbent bed has adopted one-dimensional uniform pressure field model along the circumference.
吸附床的数学模拟采用沿吸附床周向的一维均匀压力场模型。
in order to improve the heat transfer and adsorption rate of the adsorbent bed used for adsorption refrigeration system, a consolidated composite adsorbent mainly made of active carbon is presented.
adsorbent bed is the core component of adsorption refrigeration system, its heat and mass transfer performance has a direct influence on the refrigerating capacity of the system.
吸附床是吸附式制冷系统的核心部件,其传热传质性能的好坏直接影响到系统的制冷量。
a well designed adsorbent bed is very important to an adsorption refrigeration system.