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首页> 外文期刊>Natural Hazards and Earth System Sciences Discussions >Thermal anomalies and fluid geochemistry framework in occurrence of the 2000-2001 Nizza Monferrate seismic sequence (northern Italy): Episodic changes in the fault zone heat flow or chemical mixing phenomena?
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Thermal anomalies and fluid geochemistry framework in occurrence of the 2000-2001 Nizza Monferrate seismic sequence (northern Italy): Episodic changes in the fault zone heat flow or chemical mixing phenomena?

机译:2000-2001 Nizza Moneferrate地震序列(意大利北部)发生的热异常和流体地球化学框架:断层区域热流或化学混合现象的情节变化?

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The paper discusses the correlation between the heating of shallow groundwater over a 10 × 20 km wide area close to the town of Nizza Monferrato (Piemonte Region, Northern Italy) and the concomitant local seismic sequences during the period August 2000 – July 2001. The first seismic sequence started on 21 August 2000 with a Ml = 5.2 earthquake. Within few hours, the local authorities received calls alerting that the groundwater temperature rose from 10 to 30°C in many shallow wells. Our geochemical experimental data and the geological-seismotectonic framework do not allow the hypothesis of simple fluid mixing between the thermal reservoir of Acqui Terme and the Nizza-Monferrato shallow groundwater to explain the observed thermal anomalies. On the other hand, we invoke more complex processes such as frictional heating, mechano-chemistry, fault-valve mechanism, adiabatic decompression and hydrogeologically driven heat flow i.e., thermal effects due to variations of basin-scale permeability field. All these processes are able to transmit heat to the surface and to generate a transient incremental heat flow better than the mass transfer occurring typically when fluids from different reservoirs mix.
机译:本文讨论了浅地下水的加热与10×20公里的宽敞区域之间的相关性,靠近Nizza Monferrato(Piemonte地区,意大利北部)和2000年8月期间的伴随当地地震序列 - 2001年7月。首先震动序列于2000年8月21日开始,ML = 5.2地震。在几个小时内,地方当局收到通知警报地下水温度在许多浅孔中从10到30°C上升。我们的地球化学实验数据和地质地震型框架不允许在拾取术中的热储存与Nizza-Monferrato浅地下水之间的简单流体混合假设来解释观察到的热异常。另一方面,我们调用更复杂的过程,如摩擦加热,机械化学,故障阀机构,绝热减压和水电地理驱动的热流I.,由于盆地磁化性领域的变化导致的热效应。所有这些过程都能够将热量传递到表面并产生比来自来自不同储存器混合的流体的流体发生的瞬态增量热流量。

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