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Sustained eruptions on Enceladus explained by turbulent dissipation in tiger stripes

机译:土卫二持续喷发的原因是老虎条纹的湍流消散

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摘要

Spacecraft observations suggest that the plumes of Saturn’s moon Enceladus draw water from a subsurface ocean, but the sustainability of conduits linking ocean and surface is not understood. Observations show eruptions from “tiger stripe” fissures that are sustained (although tidally modulated) throughout each orbit, and since the 2005 discovery of the plumes. Peak plume flux lags peak tidal extension by ∼1 rad, suggestive of resonance. Here, we show that a model of the tiger stripes as tidally flexed slots that puncture the ice shell can simultaneously explain the persistence of the eruptions through the tidal cycle, the phase lag, and the total power output of the tiger stripe terrain, while suggesting that eruptions are maintained over geological timescales. The delay associated with flushing and refilling of O(1)-m-wide slots with ocean water causes erupted flux to lag tidal forcing and helps to buttress slots against closure, while tidally pumped in-slot flow leads to heating and mechanical disruption that staves off slot freezeout. Much narrower and much wider slots cannot be sustained. In the presence of long-lived slots, the 106-y average power output of the tiger stripes is buffered by a feedback between ice melt-back and subsidence to O(1010) W, which is similar to observed power output, suggesting long-term stability. Turbulent dissipation makes testable predictions for the final flybys of Enceladus by Cassini. Our model shows how open connections to an ocean can be reconciled with, and sustain, long-lived eruptions. Turbulent dissipation in long-lived slots helps maintain the ocean against freezing, maintains access by future Enceladus missions to ocean materials, and is plausibly the major energy source for tiger stripe activity.
机译:航天器的观测表明,土星月亮土卫二的羽流是从地下海洋中汲取水,但是连接海洋和地面的管道的可持续性尚不清楚。观测结果显示,自2005年发现烟羽以来,“老虎条纹”裂缝一直持续(尽管经过潮汐调节)爆发。羽流峰值滞后于潮汐峰值延展约1 rad,表明存在共振。在这里,我们表明,老虎条纹作为潮汐弯曲缝隙刺穿冰壳的模型可以同时解释潮汐周期,相位滞后和老虎条纹地形总功率输出的爆发持续性,同时表明爆发是在地质时间尺度上进行的。与冲洗和重新填充O(1)-m宽的缝隙相关的延迟会导致海水喷发,使潮汐流滞后于潮汐强迫,并有助于支撑缝隙以防止闭合,而潮汐式抽吸缝隙内流导致加热和机械破坏插槽冻结。更窄更宽的插槽无法维持。在存在长寿命缝隙的情况下,老虎冰条的10 6 -y平均功率输出受到冰融化和沉降到O(10 10 )W,与观察到的功率输出相似,表明具有长期稳定性。湍流的耗散为卡西尼号对土卫二的最终飞越做出了可验证的预测。我们的模型显示了与海洋的开放联系如何与长寿命喷发相协调并维持下去。长寿命狭缝中的湍流消散有助于维持海洋免受冰冻影响,使未来的土卫二任务保持对海洋物质的进入,并且可以说是老虎条纹活动的主要能源。

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