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Geothermal heat flux into deep caldera lakes Shikotsu, Kuttara, Tazawa and Towada

机译:进入深火山口湖泊支cal,库塔拉,田泽和十和田的地热通量

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摘要

Geothermal heat fluxes into the deepest waters of four caldera lakes were measured. Temperature profiles within the stratification period between July and November 2007 allowed a quantification of the acquired heat. Due to their enormous depth, heat input from the lake bed was locally separated from heat fluxes at the surface. In conclusion, a direct measurement of geothermal heat input could be accomplished. Although enhanced geothermal activity could be suspected in all cases, two lakes showed a geothermal heat flux of 0. 29 or 0. 27 W/m~2 (Lake Shikotsu and Lake Tazawa), as found in other regions not affected by volcanism, while both other lakes (Lake Kuttara and Lake Towada) showed a greatly enhanced heat input of 1 or 18. 6 W/m~2, respectively. In conclusion, within our investigated set, all lakes acquired more heat from the underground than the continental heat flux average. Hence, the heat flux into the lakes from the ground was not dominated by the temperature gradient implied by the inner heat of the earth. Other effects like the general temperature difference of deep lake water and the groundwater or local sources of heat in the underground deliver more important contributions. Obviously the flow of water in the underground can play a decisive role in the heat transport into the deep waters of lakes.
机译:测量了进入四个破火山口湖最深水域的地热通量。在2007年7月至2007年11月的分层期间内的温度曲线允许对获得的热量进行量化。由于其巨大的深度,从湖床输入的热量与表面的热通量局部隔离。总之,可以完成对地热输入的直接测量。尽管在所有情况下都可能怀疑地热活动增强,但两个湖泊的地热通量为0. 29或0. 27 W / m〜2(支ko湖和Tazawa湖),这在不受火山影响的其他地区也是如此,而其他两个湖泊(库塔拉湖和十和田湖)的热量输入分别大大增加了1或18。6 W / m〜2。总之,在我们调查的范围内,所有湖泊从地下获取的热量都超过了大陆平均热通量。因此,从地面进入湖泊的热通量不受地球内部热量所隐含的温度梯度的支配。其他影响,例如深湖水和地下水的一般温差或地下的局部热源,也可以发挥更大的作用。显然,地下的水流在热传递到湖泊深水方面起着决定性的作用。

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