Singh SC, Taylor MA, Montagner JP
Department de Sismologie, Institut de Physique du Globe de Paris, 4 Place Jussieu-75252, Paris Cedex 05, France. Bullard Laboratories, University of Cambridge, Cambridge, CB3 0EZ, UK.
Science. 2000 Mar 31;287(5462):2471-4. doi: 10.1126/science.287.5462.2471.
Seismological studies indicate that the inner core of Earth is anisotropic for compressional waves (P waves), and has low shear wave (S wave) velocity, and high seismic attenuation. Using an effective medium theory for composite materials, we show that the presence of a volume fraction of 3 to 10% liquid in the form of oblate spheroidal inclusions aligned in the equatorial plane between iron crystals is sufficient to explain the aforementioned seismic phenomena. Variation of S-wave velocity between the polar axis and equatorial plane is more sensitive to the addition of liquid than that of P waves. The liquid could arise from the presence of dendrites or a mixture of elements other than iron that exist in liquid form under inner-core conditions.
地震学研究表明,地球内核对于压缩波(P波)具有各向异性,剪切波(S波)速度较低,且地震衰减较高。利用复合材料的有效介质理论,我们表明,在铁晶体之间的赤道平面内排列的扁球形包裹体形式的3%至10%体积分数的液体的存在足以解释上述地震现象。极轴和赤道平面之间S波速度的变化比P波对液体添加更为敏感。这种液体可能源于枝晶的存在,或者是在内核条件下以液态形式存在的除铁以外的元素混合物。