FOCAL PARAMETERS of CRIMEAN-BLACK SEA REGION EARTHQUAKES in 2016–2017

B. Pustovitenko, E. Eredzhepov, M. Bondar
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Abstract

Focal parameters of twenty-one 2016–2017 earthquakes of the Crimean-Black sea region with KП=6.5–13.1 have been recovered. Solutions of focal mechanisms have been obtained for the four strongest earthquakes. The dynamic source parameters – scalar seismic moment M0, the radius of circular dislocation r0, released stress , shear deformation , apparent stress ησ, radiation friction r, average slip along fault ū, energy of dislocation formation in the source ЕU, moment magnitude Mw – have been restored for twenty-one earthquakes by 149 amplitude spectra using Brune theoretical dislocation model. The type of slip in the source of May 13, 2016, felt an earthquake, which happened near the southern coast of Crimea, is a strike-slip. The June 28, July 22 and October 15, 2016 earthquakes occurred in the Black sea basin under the action of horizontal compressive stress, the type of slip in the source is a reverse fault. In the source of the June 16, 2017 earthquake, a thrust of active rupture wing occurred under the action of horizontal compression stress of the meridional direction. This type of movement is typical for earthquakes in the eastern part of the Crimean-Black Sea region. The mechanism parameters of these earthquakes were used to determine the direction of the source radiation to the recording station to account for relevant amendments in the calculation of the seismic moment M0. In general, average values of M0 and r0 for 2016–2017 earthquakes were within the confidence intervals of long-term dependencies M0(KП), r0(KП). The best correspondence of seismic moment values to the long-term dependencies was obtained for the earthquakes of the June 28, July 22, October 15, 2016 and June 16, 2017, with known focal mechanisms because the corrections for real radiation direction Rφ were introduced in the formula for M0 calculation. For reliable estimates of the spectral and dynamic source parameters of the 2016–2017 Crimean earthquakes, only very clear records of body waves at seismic stations with reliable characteristics of recording equipment were used. The averaging of the source dynamic parameters was done by 2–10 station definitions, which provided a small value of standard deviations. In this regard, quantitative estimates of focal parameters can be classified as reliable for further use for scientific and scientific-applied problems, in particular, for the development of geodynamic models.
2016-2017年克里米亚-黑海地区地震震源参数
恢复了2016-2017年克里米亚-黑海地区KП= 6.5-13.1的21次地震的震源参数。得到了4次最强地震的震源机制解。利用Brune理论位错模型,用149幅谱恢复了21次地震的动态震源参数——标量地震矩M0、圆形位错半径r0、释放应力-、剪切变形、表观应力ησ、辐射摩擦-、断层平均滑动γ、震源位错形成能量ЕU、矩震级Mw。2016年5月13日,发生在克里米亚南部海岸附近的震源滑动类型为走滑。2016年6月28日、7月22日和10月15日黑海盆地地震发生在水平压应力作用下,震源滑动类型为逆断层。2017年6月16日地震震源在经向水平压应力作用下发生了一次活动破裂翼推力。这种类型的运动是克里米亚-黑海地区东部地震的典型特征。这些地震的机制参数被用来确定震源辐射到台站的方向,以解释地震矩M0计算中的相关修正。总体而言,2016-2017年地震M0和r0的平均值在长期依赖关系M0(KП)、r0(KП)的置信区间内。在震源机制已知的2016年6月28日、7月22日、10月15日和2017年6月16日地震中,由于在M0计算公式中引入了实际辐射方向R φ的修正,地震矩值与长期依赖关系的对应关系最好。为了可靠地估计2016-2017年克里米亚地震的频谱和动态震源参数,只使用了具有可靠记录设备特征的地震台站非常清晰的体波记录。源动力参数的平均是由2-10个站点定义完成的,提供了一个小的标准差值。在这方面,震源参数的定量估计可以归类为可靠的,以便进一步用于科学和科学应用问题,特别是用于发展地球动力学模型。
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