首页> 外文期刊>acta geochimica >Physical and chemical changes of water in the deep interior of the Earth. Decrepitation-style mud-volcano-earthquake. A bright lamp to shed light on the mysteries of the deep interior of the Earth
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Physical and chemical changes of water in the deep interior of the Earth. Decrepitation-style mud-volcano-earthquake. A bright lamp to shed light on the mysteries of the deep interior of the Earth

机译:地球深处水的物理和化学变化。衰败式泥火山地震。一盏明亮的灯,揭开地球深处的奥秘

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The 2008-05-12 Wenchuan mud-volcano-earthquake was accompanied with eruption of a huge volume of gas and stone, revealing that earthquakes generally result from instant reverse phase explosion of supercritical water (SCW) at the supercritical point. In the deep parts of the crust and mantle there still exists a large amount of supercritical water equivalent in order of magnitude to that of the Earth's hydrosphere. Soft fluids which exist in the MOHO at the top of the upper mantle are the so-called deep supercritical fluids (SCWD). Supercritical water (SCW) has nx10(3) times strong capability to dissolve gas. Its viscosity is extremely low and its diffusivity is extremely strong. Therefore, it can naturally migrate toward a region with relatively negative pressure. In the steep break zone of the MOHO at the 57-65 km depth beneath the earthquake belt, due to mutation of overburden pressure, SCWD can automatically separate out CaSiO3 and other inorganic salts, evolving into the SCW (H2O-CO2-CH4O system. In going upwards to the 10-20-km depth of the crust SCW will be accumulated as an earthquake-pregnant reservoir in the broken terrain. The phase-transition heat of SCW is estimated at 606.62 kJ/kg and the reverse phasing kinetic energy is 2350.8 kJ/kg. When automatic exhaust at the time of decompression reaches the critical pressure (Pc), the instant explosion reverse phase will be normal-state air water. It will release a huge volume of energy and high-kinetic-energy gas which has been expanded by a factor of 1000, leading to the breaking of the country rocks overlying the earthquake-pregnant reservoir, thus giving rise to a Ms 8.0 earthquake. As a result, there were formed eruptive and air-driven (pneumatic) debris flows whose volumatric flow rate reaches nx10(14) m(3)/s, and their force greatly exceeds the power of INT explosive of the same equivalent value.
机译:2008-05-12汶川泥火山地震伴随着大量气体和石块的喷发,揭示了地震一般是由超临界点超临界水(SCW)瞬间反相爆炸引起的。在地壳和地幔的深处,仍然存在着大量的超临界水,其数量级相当于地球水圈的超临界水。存在于上地幔顶部的MOHO中的软流体是所谓的深层超临界流体(SCWD)。超临界水(SCW)具有nx10(3)倍的气体溶解能力。它的粘度极低,扩散性极强。因此,它可以自然地向压力相对较大的区域迁移。在地震带下57-65 km深度的MOHO陡峭断裂带,由于覆岩压力的突变,SCWD能自动分离出CaSiO3等无机盐,演化为SCW(H2O-CO2-CH4O系统。在向上移动到地壳10-20公里的深度时,SCW将作为地震孕育的储层在破碎的地形中积累。SCW的相变热估计为606.62 kJ/kg,反相动能为2350.8 kJ/kg。当自动排气在减压时达到临界压力(Pc)时,瞬间爆炸反相将空气水变为正常状态。它将释放出大量的能量和高动能气体,这些气体已经膨胀了1000倍,导致覆盖在地震孕育水库上的乡村岩石破裂,从而引起Ms 8.0地震。结果,形成了喷发和气动(气动)泥石流,其体积流速达到nx10(14)m(3)/s,其威力大大超过了相同当量值的INT炸药的威力。

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