Joint Interpretation Results of Gravitational and Thermal Fields for the Ural Region

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY
Pyotr Martyshko, I. Ladovskii, D. Byzov
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引用次数: 0

Abstract

A method for solving conjugation problems for the Poisson equation is implemented, which makes it possible to interpret potential fields (gravitational and stationary thermal fields) based on unified grid algorithms. A numerical algorithm has been developed for recalculating the mantle component of the heat flow from the level of the earth’s surface to the “crust–mantle” boundary through a layered medium inhomogeneous in thermal conductivity. Paleoclimate corrections were introduced into the measured values of the temperature gradient and heat flux for the northern territories. In the axial part of the Ural geosyncline, it was possible to exclude the negative depression of the mantle component of the heat flow, obtained from the results of geothermal modeling; taking into account the Pleistocene-Holocene warming of the preceding interglacial paleoclimate cycle leads to positive values of the heat flow recalculated to the “crust–mantle” boundary. It is shown that the use of heat flow data can significantly increase the geological information content of gravity modeling.
乌拉尔地区引力场和热场的联合解释结果
采用了一种解决泊松方程共轭问题的方法,从而有可能在统一网格算法的基础上解释势场(重力场和静止热场)。开发了一种数值算法,用于重新计算从地球表面到 "地壳-地幔 "边界热流的地幔成分,该热流穿过导热性不均匀的分层介质。在北部地区的温度梯度和热流量测量值中引入了古气候校正。在乌拉尔地动山脉的轴向部分,可以排除地热建模结果得出的热流地幔部分的负压;考虑到前一个冰期间古气候周期的更新世-全新世变暖,重新计算的 "地壳-地幔 "边界热流值为正值。结果表明,使用热流数据可以大大增加重力模型的地质信息含量。
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来源期刊
Russian Journal of Earth Sciences
Russian Journal of Earth Sciences GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
15.40%
发文量
41
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