Center for Hydrogeology and Geothermics (CHYN), University of Neuchâtel, 2000 Neuchâtel, Switzerland.
Swiss Seismological Service (SED), ETH Zürich, 8092 Zürich, Switzerland.
Int J Environ Res Public Health. 2022 Dec 9;19(24):16527. doi: 10.3390/ijerph192416527.
There exists a need for a simple, deterministic, scalable, and accurate model that captures the dominant physics of pandemic propagation. We propose such a model by adapting a physical earthquake/aftershock model to COVID-19. The aftershock model revealed the physical basis for the statistical Epidemic Type Aftershock Sequence (ETAS) model as a highly non-linear diffusion process, thus permitting a grafting of the underlying physical equations into a formulation for calculating infection pressure propagation in a pandemic-type model. Our model shows that the COVID-19 pandemic propagates through an analogous porous media with hydraulic properties approximating beach sand and water. Model results show good correlations with reported cumulative infections for all cases studied. In alphabetical order, these include Austria, Belgium, Brazil, France, Germany, Italy, New Zealand, Melbourne (AU), Spain, Sweden, Switzerland, the UK, and the USA. Importantly, the model is predominantly controlled by one parameter (α), which modulates the societal recovery from the spread of the virus. The obtained recovery times for the different pandemic waves vary considerably from country to country and are reflected in the temporal evolution of registered infections. These results provide an intuition-based approach to designing and implementing mitigation measures, with predictive capabilities for various mitigation scenarios.
需要建立一个简单、确定、可扩展和准确的模型,以捕捉大流行传播的主要物理特性。我们通过将物理地震/余震模型改编为 COVID-19 来提出这样的模型。余震模型揭示了统计流行病余震序列 (ETAS) 模型的物理基础,它是一个高度非线性的扩散过程,从而可以将基本的物理方程嫁接到流行模型中计算感染压力传播的公式中。我们的模型表明,COVID-19 大流行是通过类似于海滩沙和水的水力特性的多孔介质传播的。模型结果与所有研究案例的报告累计感染数具有很好的相关性。按字母顺序排列,这些案例包括奥地利、比利时、巴西、法国、德国、意大利、新西兰、澳大利亚墨尔本、西班牙、瑞典、瑞士、英国和美国。重要的是,该模型主要由一个参数(α)控制,该参数调节社会从病毒传播中恢复的情况。不同大流行波的恢复时间因国家而异,这反映在注册感染的时间演变中。这些结果为设计和实施缓解措施提供了基于直觉的方法,并为各种缓解情景提供了预测能力。