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MULTIPLE STEADY STATES IN A COMBINED BUOYANCY AND WIND DRIVEN NATURAL VENTILATION SYSTEM: NECESSARY CONDITIONS AND INITIAL VALUES

机译:浮力和风驱动自然通风系统组合中的多个稳态:必要条件和初始值

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In this paper, mathematical analyses are applied both graphically and quantitatively to investigate the multiple steady state behaviors of combined buoyancy and wind driven natural ventilation system. Two major issues - the necessary conditions for the multiple steady states to exist and the impact of initial values on the final state of the system - are investigated. The necessary conditions for the system to have multiple steady states are derived for a single space with combined wind and buoyancy driven natural ventilation. Different from previous studies, the derivation comes from the dynamical system characteristics rather than the steady state equations, which can be applied to more general cases. Based on the dynamical system analysis, the quantitative relation between the initial temperature and the final steady state is further revealed for the single variable case. The unstable steady state point is found to be the critical point of the initial value in determining the final (steady) state of the system.
机译:在本文中,数学分析被图形化和定量化地应用于研究浮力和风驱动自然通风系统的多重稳态行为。研究了两个主要问题-存在多个稳态的必要条件以及初始值对系统最终状态的影响。对于具有风和浮力驱动的自然通风组合的单个空间,得出系统具有多个稳态的必要条件。与先前的研究不同,该推导来自动力学系统的特性,而不是稳态方程,该方程可用于更一般的情况。基于动力学系统分析,进一步揭示了单变量情况下初始温度和最终稳态之间的定量关系。在确定系统的最终(稳态)状态时,发现不稳定的稳态点是初始值的临界点。

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