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氨水吸收式制冷机的基础理论和设计之二——热力学基础(Ⅰ) 被引量:1

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摘要 一、一些基本概念1.系统组成制冷循环的过程主要是一些能量转换与传递的过程。为了研究物质状态的变化和能量传递与转换的规律,在热力学中,常常将所要研究的对象和周围的其它事物分隔开来。
作者 杨思文
机构地区 东南大学
出处 《流体工程》 CSCD 北大核心 1989年第9期58-64,共7页
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参考文献1

  • 1[西德]贝尔(Baehr,H,D·) 著,杨东华.工程热力学[M]科学出版社,1983.

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  • 3YANG Siwen. Basic Theory and Design of the Ammonia AbsorptionRefrigerating Machine Ⅴ--The Nature of the Ammonia Solution and the Equation of State[J]. Journal of Fluids Engineering, 1990, 52-59.
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