File Moon.hpp¶
File List > astrea > astro > astro > systems > planetary_bodies > Earth > Moon.hpp
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#pragma once
#include <mp-units/systems/angular.h>
#include <mp-units/systems/iau.h>
#include <mp-units/systems/si.h>
#include <units/units.hpp>
#include <astro/astro.fwd.hpp>
#include <astro/systems/CelestialBody.hpp>
#include <astro/types/typedefs.hpp>
namespace astrea {
namespace astro {
namespace planetary_bodies {
static const CelestialBodyParameters DEFAULT_MOON_PARAMS{
.name = "Moon",
.parent = CelestialBodyId::EARTH,
.type = CelestialBodyType::MOON,
.referenceDate = Date("2000-01-01 12:00:00"),
.mu = GravParam(4902.8 * mp_units::pow<3>(mp_units::si::unit_symbols::km) / mp_units::pow<2>(mp_units::si::unit_symbols::s)),
.mass = Mass(0.073 * (mp_units::mag_power<10, 24> * mp_units::si::unit_symbols::kg)),
.equitorialRadius = Distance(1737.5 * mp_units::si::unit_symbols::km),
.polarRadius = Distance(1736.0 * mp_units::si::unit_symbols::km),
.crashRadius = Distance(1737.5 * mp_units::si::unit_symbols::km),
.sphereOfInfluence = Distance(0.006602718630998 * mp_units::iau::unit_symbols::au),
.j2 = Unitless(0.0 * mp_units::one),
.j3 = Unitless(0.0 * mp_units::one),
.axialTilt = Angle(1.543 * mp_units::angular::unit_symbols::deg),
.rotationRate = AngularRate(13.176195007686115 * mp_units::angular::unit_symbols::deg / mp_units::non_si::day),
.siderealPeriod = Time(27.3220 * mp_units::non_si::day),
.semimajorAxis = Distance(380318 * mp_units::si::unit_symbols::km),
.eccentricity = Unitless(0.063843 * mp_units::one),
.inclination = Angle(5.28619 * mp_units::angular::unit_symbols::deg),
.rightAscension = Angle(98.13908 * mp_units::angular::unit_symbols::deg),
.longitudeOfPerigee = Angle(179.16058 * mp_units::angular::unit_symbols::deg),
.meanLongitude = Angle(135.89122 * mp_units::angular::unit_symbols::deg),
.semimajorAxisRate = InterplanetaryVelocity(0.0 * mp_units::si::unit_symbols::km / JulianCentury),
.eccentricityRate = BodyUnitlessPerTime(0.0 * mp_units::one / JulianCentury),
.inclinationRate = BodyAngularRate(0.0 * mp_units::angular::unit_symbols::deg / JulianCentury),
.rightAscensionRate = BodyAngularRate(6967741.9 * mp_units::angular::unit_symbols::deg / JulianCentury),
.longitudeOfPerigeeRate = BodyAngularRate(28578547 * mp_units::angular::unit_symbols::deg / JulianCentury),
.meanLongitudeRate = BodyAngularRate(1761137860.75 * mp_units::angular::unit_symbols::deg / JulianCentury)
};
class Moon : public CelestialBody {
public:
constexpr Moon() :
CelestialBody(DEFAULT_MOON_PARAMS)
{
}
~Moon() = default;
static constexpr CelestialBodyId get_id() { return CelestialBodyId::MOON; };
#ifdef ASTREA_BUILD_EARTH_EPHEMERIS
RadiusVector<frames::solar_system_barycenter::icrf> get_position_at(const Date& date) const;
#endif // ASTREA_BUILD_EARTH_EPHEMERIS
};
} // namespace planetary_bodies
} // namespace astro
} // namespace astrea