摘要
用热力学基本定律和(火用)的基本概念讨论了(火用)的普遍化表达式的应用,证明了热(火用)、压(火用)和化学(火用)的计算都必然与熵变相联系,“如果过程中没有热(火用)的传递和转换,过程就没有熵增”的说法是不能成立的。
The generalized expressions of Exergy and its applications are discussed based on Thermodynamic Laws and exergy's definition. The heat exergy, pressure exergy, and chemical exergy are consequentially related with the variation of system entropy. It is indicated that the parlance of 'If there is no transferring or transforming of heat, there will be no increase of entropy in the process' is incorrect.
出处
《华北电力大学学报(自然科学版)》
CAS
北大核心
2003年第6期49-51,共3页
Journal of North China Electric Power University:Natural Science Edition