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Aerosol-cloud-precipitation system as a predator-prey problem

机译:气溶胶-云-降水系统作为食肉动物-猎物的问题

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We show that the aerosol-cloud-precipitation system exhibits characteristics of the predator-prey problem in the field of population dynamics. Both a detailed large eddy simulation of the dynamics and microphysics of a precipitating shallow boundary layer cloud system and a simpler model built upon basic physical principles, reproduce predator-prey behavior with rain acting as the predator and cloud as the prey. The aerosol is shown to modulate the predator-prey response. Steady-state solution to the proposed model shows the known existence of bistability in cloudiness. Three regimes are identified in the time-dependent solutions: (i) the weakly precipitating regime where cloud and rain coexist in a quasi steady state; (ii) the moderately drizzling regime where limit-cycle behavior in the cloud and rain fields is produced; and (iii) the heavily precipitating clouds where collapse of the boundary layer is predicted. The manifestation of predator-prey behavior in the aerosol-cloud-precipitation system is a further example of the self-organizing properties of the system and suggests that exploiting principles of population dynamics may help reduce complex aerosol-cloud-rain interactions to a more tractable problem.
机译:我们表明,气溶胶-云-降水系统在种群动态领域展现出食肉动物-猎物问题的特征。降水的浅边界层云系统的动力学和微观物理学的详细的大涡模拟和建立在基本物理原理基础上的更简单的模型,都以雨为食,以云为食,重现了食-食的行为。气溶胶显示出可以调节食肉动物-猎物的反应。所提出模型的稳态解显示了已知的双云性存在。在与时间有关的解决方案中,确定了三种状态:(i)弱降雨状态,其中云和雨以准稳态共存; (ii)在云和雨场中产生极限循环行为的中度细雨状态; (iii)预计边界层倒塌的强降水云。气溶胶-云-降水系统中掠食者-捕食行为的表现是该系统自组织特性的另一个示例,并表明利用种群动态原理可以帮助将复杂的气溶胶-云-雨-雨相互作用降低为更易于处理问题。

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