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The relationship between seismic frequency and magnitude as based on the Maximum Entropy Principle

机译:基于最大熵原理的地震频率与震级的关系

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Entropy is a state function. The entropy increase principle tells us that under isolated or adiathermal conditions, the spontaneous development of a system from a state of non-equilibrium to a state of equilibrium is a process of entropy increase, in which a state of equilibrium corresponds to a state of maximum entropy. When the system is in a state of equilibrium, it is also at its most chaotic and disordered. The occurrence of earthquakes can be classified as a random event and can be described using entropy. Earthquakes occur in the most disordered way, indicating that entropy has reached its maximum value, so we can use the Maximum Entropy Method to determine the distribution of earthquakes that occur within a certain area curing a particular period of time. Results show that the formula representing the relationship between seismic frequency and magnitude (based on data and experience) is in fact a negative exponential distribution under given restraints and supposing seismic entropy is set as the maximum value. Therefore, we can theoretically explain the origin of the relationship between seismic frequency and magnitude.
机译:熵是一种状态函数。熵增加原理告诉我们,在孤立或绝热条件下,系统从非平衡状态到平衡状态的自发发展是熵增加的过程,其中平衡状态对应于最大状态熵。当系统处于平衡状态时,它也处于最混乱和无序的状态。地震的发生可以归类为随机事件,可以用熵来描述。地震以最无序的方式发生,这表明熵已达到最大值,因此我们可以使用“最大熵”方法来确定在特定时期内在特定区域内发生的地震的分布。结果表明,表示地震频率与震级之间关系的公式(基于数据和经验)实际上是在给定约束下并假定地震熵为最大值的负指数分布。因此,我们可以从理论上解释地震频率与震级之间关系的起源。

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