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Disclosing the temperature of columnar jointing in lavas

机译:揭示熔岩柱状节理的温度

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摘要

Columnar joints form by cracking during cooling-induced contraction of lava, allowing hydrothermal fluid circulation. A lack of direct observations of their formation has led to ambiguity about the temperature window of jointing and its impact on fluid flow. Here we develop a novel thermo-mechanical experiment to disclose the temperature of columnar jointing in lavas. Using basalts from Eyjafjallajökull volcano (Iceland) we show that contraction during cooling induces stress build-up below the solidus temperature (980 °C), resulting in localised macroscopic failure between 890 and 840 °C. This temperature window for incipient columnar jointing is supported by modelling informed by mechanical testing and thermal expansivity measurements. We demonstrate that columnar jointing takes place well within the solid state of volcanic rocks, and is followed by a nonlinear increase in system permeability of <9 orders of magnitude during cooling. Columnar jointing may promote advective cooling in magmatic-hydrothermal environments and fluid loss during geothermal drilling and thermal stimulation.
机译:在冷却引起的熔岩收缩过程中,裂纹是由裂缝形成的,从而允许热液循环。缺乏对它们形成的直接观察导致对接合的温度窗口及其对流体流动的影响含糊不清。在这里,我们开发了一种新颖的热机械实验,以揭示熔岩中柱状接头的温度。我们使用艾亚菲亚德拉冰盖火山(冰岛)的玄武岩表明,冷却过程中的收缩会在固相线温度(980 C)以下诱导应力累积,从而导致890至840 C的局部宏观破坏。通过机械测试和热膨胀率测量得到的建模信息可以支持用于初始柱状接头的温度窗口。我们证明了柱状节理很好地发生在火山岩的固态内部,并且随后在冷却过程中系统渗透率的非线性增加<9个数量级。柱状节理可能会促进岩浆热液环境中的对流冷却,并在地热钻井和热增产过程中造成流体流失。

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