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Heat-producing crust regulation of subsurface temperatures : a stochastic model re-evaluation of the geothermal potential in western Queensland, Australia

机译:地下温度的产热结壳调节:澳大利亚昆士兰州西部地热潜力的随机模型重新评估

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摘要

A large subsurface, elevated temperature anomaly is well documented in Central Australia. High Heat Producing Granites (HHPGs) intersected by drilling at Innamincka are often assumed to be the dominant cause of the elevated subsurface temperatures, although their presence in other parts of the temperature anomaly has not been confirmed. Geological controls on the temperature anomaly remain poorly understood. Additionally, methods previously used to predict temperature at 5 km depth in this area are simplistic and possibly do not give an accurate representation of the true distribution and magnitude of the temperature anomaly. Here we re-evaluate the geological controls on geothermal potential in the Queensland part of the temperature anomaly using a stochastic thermal model. The results illustrate that the temperature distribution is most sensitive to the thermal conductivity structure of the top 5 km. Furthermore, the results indicate the presence of silicic crust enriched in heat producing elements between and 40 km.
机译:澳大利亚中部有大量的地下高温异常现象。尽管尚未确认在温度异常的其他部分是否存在,但在Innamincka钻孔相交的高产花岗岩(HHPG)通常被认为是地下温度升高的主要原因。对温度异常的地质控制仍然知之甚少。另外,以前用于预测该区域5 km深度温度的方法过于简单,可能无法准确表示温度异常的真实分布和大小。在这里,我们使用随机热模型重新评估温度异常的昆士兰州地热潜力的地质控制。结果表明,温度分布对顶部5 km的导热系数结构最为敏感。此外,结果表明,硅质地壳中存在富集在40 km至40 km之间的生热元素。

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