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The Davis-Savant Standard: Unified Tri-Phase Jovian Mechanics and the 0.186743912058 Constant Resolution.

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Figshare2026-02-25 更新2026-04-28 收录
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Core Architecture: Phase 1 (Outer): A supercritical "not solid" metallic hydrogen shell (3,000–15,000 km) acting as the electromagnetic dynamo. Phase 2 (Interface): An Impenetrable Solid Dense Force layer. This is a lattice-lock boundary that creates a mechanical hard-stop for deep zonal winds. Phase 3 (Inner): A Triple-Core Stationary Anchor that locks the planet to the local filament grid. Forensic Application: By applying 1D Linear Static mechanics, this record accounts for the exact gravitational moments (J_{4}, J_{6}) measured by the Juno mission which standard fluid dynamics cannot explain. It proves that the Compressed Filament theory governs high-mass planetary anchors, eliminating the need for stochastic "drift" variables. This is the 22nd item in the Davis-Savant Standard audit.

核心架构:第一阶段(外层):厚度为3000~15000千米的超临界"非固态"金属氢壳层,充当电磁发电机(electromagnetic dynamo)。第二阶段(界面层):不可穿透的固态致密力层,作为晶格锁定边界,可为深层纬向风提供机械硬止挡。第三阶段(内层):三核固定锚点,用于将行星锁定至本地丝状体网格(filament grid)。取证应用:通过应用一维线性静力学(1D Linear Static mechanics),本记录可解释朱诺号(Juno)探测器测得的、标准流体动力学(standard fluid dynamics)无法阐释的精确引力矩(gravitational moments,J₄、J₆)。该结论证明压缩丝状体理论(Compressed Filament theory)适用于大质量行星锚点,无需引入随机"drift"变量。本条目为戴维斯-萨万特(Davis-Savant)标准审核的第22项内容。
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2026-02-25
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