核聚变的自发性:通过经典热力学进行定性分析
1Dept. of Fusion and Technology for Nuclear Safety and Security, ENEA C.R. Frascati, Via E. Fermi 45, Frascati, 00044, Italy.
Open research Europe
|August 30, 2023
概括
核聚变反应只有当温度低于特征值T*,平衡能量释放和混乱时才会自发. 这种热力学方法提供了超越反应速率的新见解.
科学领域:
- 核物理 核物理是核物理的.
- 化学热力学化学热力学
背景情况:
- 目前对核反应的可行性研究重点是动力学 (反应速率) 和变化.
- 热力学分析,特别是,在核反应研究中基本上被忽视了.
研究的目的:
- 通过简化方法研究核聚变反应的热力学.
- 将裂变和聚变反应的热力学行为与化学过程进行比较.
主要方法:
- 核反应的简化热力学分析.
- 对裂变和聚变热力学与化学过程进行比较研究.
主要成果:
- 裂变反应总是自发的 (ΔG < 0) 由于显著的能量释放和增加的混乱.
- 聚变反应只有当对吉布斯能量变化的体贡献超过了体贡献时才是自发的.
- 一个特征温度T*决定了核聚变自发性,它是从质量缺陷能量和变化计算出来的.
结论:
- 核聚变反应的定性热力学分析是可能的,尽管有限的数据.
- 运行条件显著影响融合过程的自发性.
- 热力学分析应纳入核反应研究,以补充动力学和外热性评估.
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