The latent heat of fusion and heat capacities of paraffin wax are important parameters in design and calculation of thermal energy storage system. 潜热的融合和热的能力,石蜡是重要的参数设计与计算热储能系统。
Due to the quasi-steady-state method is suitable for measuring latent heat of fusion; 由于准稳定状态的方法是适合测量潜热的融合;
There are many methods to get the latent heat of fusion and heat capacity of substance. 有很多方法,以获得潜热融合和热容量的实质内容。
In this paper, a calculation method of the direct finite difference for latent heat of fusion is proposed, and based on the method, the three dimensional program of unsteady state heat conduction is developed. 提出了直接对凝固潜热进行差分计算的一套计算方法,在此基础上开发了三维非稳态凝固传热的计算程序。
A new model with varied thermal-physical parameters in which the existence of airspace resulting in heterogeneous heat transfer and the latent heat of fusion at the solidification front was considered was developed. 开发的热传输模型充分考虑了由于气隙的存在而使得结晶器表面散热不均匀,处理了凝固前沿相变所产生的结晶潜热,并采用变热物性参数。
The most important properties of these microcapsules, like the chemical structure, particle size distribution, thermal stability and the latent heat of fusion were studied. 对制备的微胶囊的化学结构、粒径分布、热稳定性、融化潜热等特性进行了详细的研究。
Experimental Research of Latent Heat of Fusion and Specific Heat Capacities with Quasi-Steady State Theory 准稳态理论测量融解热及比热容的实验研究
The heat generated by the target electronics can be effectively absorbed and dissipated by means of the latent heat of fusion during melting of phase change materials. 利用相变材料在熔化过程中会吸收潜热的原理,可以将目标电子器件所产生的热量有效地吸收和移除。