Modelling J2-Driven Nodal and Apsidal Precession in Sun-Synchronous Orbits Using Lagrange Planetary Equations

Demir, Yağmur (2026) Modelling J2-Driven Nodal and Apsidal Precession in Sun-Synchronous Orbits Using Lagrange Planetary Equations. Other thesis, Ted Ankara Koleji.

[img] Text (PDF)
Yagmur Demir.pdf

Download (511kB)

Abstract

How can the secular rates of change ????̇ and ????̇ caused by Earth’s oblateness (????2) be derived from first principles using Lagrange planetary equations?

Item Type: Thesis (Other)
Uncontrolled Keywords: Dünya'nın basıklığı (J₂), Lagrange gezegen denklemleri, Seküler değişim, Yörünge mekaniği, Yörüngesel pertürbasyonlar, Düğüm doğrultusunun devinimi (Ω̇), Perige devinimi (ω̇), Astrodinamik, Uydu yörüngeleri, Gök mekaniği, Earth's oblateness (J₂), Lagrange planetary equations, Secular rates of change, Orbital mechanics, Orbital perturbations, Nodal precession (Ω̇), Apsidal precession (ω̇), Astrodynamics, Satellite orbits, Celestial mechanics.
Subjects: Q Science > QA Mathematics
Depositing User: High School Library
Date Deposited: 21 Jul 2026 07:25
Last Modified: 21 Jul 2026 07:25
URI: http://tedprints.tedankara.k12.tr/id/eprint/1525

Actions (login required)

View Item View Item