Mechanics analysis on creep fracture of strong roof strata above mined-out area
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摘要: 考慮巖體的流變特性,運用彈性-黏彈性對應準則及Laplace數值逆變換對礦柱支撐的采空區頂板巖層變形進行了分析,建立了采空區頂板撓度隨時間的變化關系,揭示了采空區頂板位移隨時間變化的特性.研究表明,在考慮巖體流變性質的情況下,采空區頂板下沉位移隨時間延長而增大,在給定比較長的時間跨度,即使堅硬巖體頂板位移仍會達到相當大的量值,進而引起采空區頂板破斷.通過對邢臺石膏礦塌陷案例分析,驗證了計算方法的可行性.Abstract: The deformation of roof strata supported by pillars in mined out area was analyzed in consideration of the rheological properties of rock masses and by utilizing the elastic-viscoelastic correspondence principle and numerical Laplace inversion. The roof deflection as a function of time was established, based on which the time-dependent behavior of the roof displacement was elaborated. It is shown that when rock creep properties are taken into account for both the pillars and roof, the roof displacement increases with pro-longing time as expected. Therefore, given a sufficient period of time, the roof deformation can reach a considerable magnitude even for hard rock masses and eventually lead to the collapse of roof strata. As a case, the estimation of failure time was carried out for Xingtai Gypsum Mine in China, in which the feasibility of the proposed method was verified by acceptable agreement between the estimated data and actual field observations.
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Key words:
- mining engineering /
- mine roof control /
- rock mechanics /
- creep /
- mathematical models
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