Science. 1994 Jun 24;264(5167):1904-7. doi: 10.1126/science.264.5167.1904.
Recent high-pressure experiments and thermodynamic calculations have shown that the Clapeyron slope of the spinel-perovskite phase transition at a depth of 660 kilometers in the Earth's mantle changes from negative to positive at temperatures above 1700 degrees to 2000 degrees C. In numerical experiments that account for this phase behavior, cold downwelling flows were impeded at the phase boundary, but hot plumes ascended to the upper mantle with ease. The resultant mantle convection was partially layered and strongly time-dependent. Mantle layering was weaker when the mantle was hotter and when the Rayleigh number was larger.
最近的高压实验和热力学计算表明,地球地幔中 660 公里深处尖晶石-钙钛矿相变的克拉珀龙斜率在 1700 到 2000 摄氏度之间的温度下由负变正。在考虑这种相变行为的数值实验中,冷的下降流在相变边界受阻,但热羽流很容易上升到上地幔。由此产生的地幔对流部分分层,强烈依赖于时间。当地幔较热且瑞利数较大时,地幔分层较弱。