libnova v 0.16.0
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elliptic_motion.h
1/*
2 * This library is free software; you can redistribute it and/or
3 * modify it under the terms of the GNU Lesser General Public
4 * License as published by the Free Software Foundation; either
5 * version 2 of the License, or (at your option) any later version.
6 *
7 * This library is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
10 * Lesser General Public License for more details.
11 *
12 * You should have received a copy of the GNU General Public License
13 * along with this program; if not, write to the Free Software
14 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
15 *
16 * Copyright (C) 2000 - 2005 Liam Girdwood
17 */
18
19#ifndef _LN_ELLIPTIC_MOTION_H
20#define _LN_ELLIPTIC_MOTION_H
21
22#include <libnova/ln_types.h>
23
24#ifdef __cplusplus
25extern "C" {
26#endif
27
39double LIBNOVA_EXPORT ln_solve_kepler(double E, double M);
40
45double LIBNOVA_EXPORT ln_get_ell_mean_anomaly(double n, double delta_JD);
46
51double LIBNOVA_EXPORT ln_get_ell_true_anomaly(double e, double E);
52
57double LIBNOVA_EXPORT ln_get_ell_radius_vector(double a, double e, double E);
58
63double LIBNOVA_EXPORT ln_get_ell_smajor_diam(double e, double q);
64
69double LIBNOVA_EXPORT ln_get_ell_sminor_diam(double e, double a);
70
75double LIBNOVA_EXPORT ln_get_ell_mean_motion(double a);
76
81void LIBNOVA_EXPORT ln_get_ell_geo_rect_posn(struct ln_ell_orbit *orbit,
82 double JD, struct ln_rect_posn *posn);
83
88void LIBNOVA_EXPORT ln_get_ell_helio_rect_posn(struct ln_ell_orbit *orbit,
89 double JD, struct ln_rect_posn *posn);
90
95double LIBNOVA_EXPORT ln_get_ell_orbit_len(struct ln_ell_orbit *orbit);
96
101double LIBNOVA_EXPORT ln_get_ell_orbit_vel(double JD,
102 struct ln_ell_orbit *orbit);
103
108double LIBNOVA_EXPORT ln_get_ell_orbit_pvel(struct ln_ell_orbit *orbit);
109
114double LIBNOVA_EXPORT ln_get_ell_orbit_avel(struct ln_ell_orbit *orbit);
115
120double LIBNOVA_EXPORT ln_get_ell_body_phase_angle(double JD,
121 struct ln_ell_orbit *orbit);
122
127double LIBNOVA_EXPORT ln_get_ell_body_elong(double JD,
128 struct ln_ell_orbit *orbit);
129
135double LIBNOVA_EXPORT ln_get_ell_body_solar_dist(double JD,
136 struct ln_ell_orbit *orbit);
137
143double LIBNOVA_EXPORT ln_get_ell_body_earth_dist(double JD,
144 struct ln_ell_orbit *orbit);
145
151void LIBNOVA_EXPORT ln_get_ell_body_equ_coords(double JD,
152 struct ln_ell_orbit *orbit, struct ln_equ_posn *posn);
153
158int LIBNOVA_EXPORT ln_get_ell_body_rst(double JD,
159 struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit,
160 struct ln_rst_time *rst);
161
166int LIBNOVA_EXPORT ln_get_ell_body_rst_horizon(double JD,
167 struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit,
168 double horizon, struct ln_rst_time *rst);
169
174int LIBNOVA_EXPORT ln_get_ell_body_next_rst(double JD,
175 struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit,
176 struct ln_rst_time *rst);
177
182int LIBNOVA_EXPORT ln_get_ell_body_next_rst_horizon(double JD,
183 struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit,
184 double horizon, struct ln_rst_time *rst);
185
190int LIBNOVA_EXPORT ln_get_ell_body_next_rst_horizon_future(double JD,
191 struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit,
192 double horizon, int day_limit, struct ln_rst_time *rst);
193
198double LIBNOVA_EXPORT ln_get_ell_last_perihelion(double epoch_JD, double M,
199 double n);
200
201#ifdef __cplusplus
202};
203#endif
204
205#endif
double LIBNOVA_EXPORT ln_solve_kepler(double E, double M)
Calculate the eccentric anomaly.
Definition: elliptic_motion.c:53
double LIBNOVA_EXPORT ln_get_ell_true_anomaly(double e, double E)
Calculate the true anomaly.
Definition: elliptic_motion.c:109
double LIBNOVA_EXPORT ln_get_ell_mean_anomaly(double n, double delta_JD)
Calculate the mean anomaly.
Definition: elliptic_motion.c:96
double LIBNOVA_EXPORT ln_get_ell_orbit_avel(struct ln_ell_orbit *orbit)
Calculate the orbital velocity at aphelion in km/s.
Definition: elliptic_motion.c:365
double LIBNOVA_EXPORT ln_get_ell_sminor_diam(double e, double a)
Calculate the semi minor diameter.
Definition: elliptic_motion.c:154
double LIBNOVA_EXPORT ln_get_ell_body_solar_dist(double JD, struct ln_ell_orbit *orbit)
Calculate the distance between a body and the Sun.
Definition: elliptic_motion.c:382
int LIBNOVA_EXPORT ln_get_ell_body_next_rst_horizon(double JD, struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit, double horizon, struct ln_rst_time *rst)
Calculate the time of rise, set and transit for a body with an elliptic orbit.
Definition: elliptic_motion.c:569
double LIBNOVA_EXPORT ln_get_ell_last_perihelion(double epoch_JD, double M, double n)
Calculate the julian day of the last perihelion.
Definition: elliptic_motion.c:610
double LIBNOVA_EXPORT ln_get_ell_orbit_len(struct ln_ell_orbit *orbit)
Calculate the orbital length in AU.
Definition: elliptic_motion.c:311
int LIBNOVA_EXPORT ln_get_ell_body_next_rst(double JD, struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit, struct ln_rst_time *rst)
Calculate the time of rise, set and transit for a body with an elliptic orbit.
Definition: elliptic_motion.c:546
void LIBNOVA_EXPORT ln_get_ell_geo_rect_posn(struct ln_ell_orbit *orbit, double JD, struct ln_rect_posn *posn)
Calculate the objects rectangular geocentric position.
Definition: elliptic_motion.c:244
double LIBNOVA_EXPORT ln_get_ell_body_elong(double JD, struct ln_ell_orbit *orbit)
Calculate the bodies elongation to the Sun..
Definition: elliptic_motion.c:460
void LIBNOVA_EXPORT ln_get_ell_helio_rect_posn(struct ln_ell_orbit *orbit, double JD, struct ln_rect_posn *posn)
Calculate the objects rectangular heliocentric position.
Definition: elliptic_motion.c:179
int LIBNOVA_EXPORT ln_get_ell_body_rst_horizon(double JD, struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit, double horizon, struct ln_rst_time *rst)
Calculate the time of rise, set and transit for a body with an elliptic orbit.
Definition: elliptic_motion.c:523
void LIBNOVA_EXPORT ln_get_ell_body_equ_coords(double JD, struct ln_ell_orbit *orbit, struct ln_equ_posn *posn)
Calculate a bodies equatorial coords.
Definition: elliptic_motion.c:271
double LIBNOVA_EXPORT ln_get_ell_smajor_diam(double e, double q)
Calculate the semi major diameter.
Definition: elliptic_motion.c:142
double LIBNOVA_EXPORT ln_get_ell_orbit_vel(double JD, struct ln_ell_orbit *orbit)
Calculate orbital velocity in km/s.
Definition: elliptic_motion.c:333
int LIBNOVA_EXPORT ln_get_ell_body_rst(double JD, struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit, struct ln_rst_time *rst)
Calculate the time of rise, set and transit for a body with an elliptic orbit.
Definition: elliptic_motion.c:502
double LIBNOVA_EXPORT ln_get_ell_mean_motion(double a)
Calculate the mean daily motion (degrees/day).
Definition: elliptic_motion.c:165
double LIBNOVA_EXPORT ln_get_ell_body_phase_angle(double JD, struct ln_ell_orbit *orbit)
Calculate the phase angle of the body. The angle Sun - body - Earth.
Definition: elliptic_motion.c:427
double LIBNOVA_EXPORT ln_get_ell_radius_vector(double a, double e, double E)
Calculate the radius vector.
Definition: elliptic_motion.c:129
double LIBNOVA_EXPORT ln_get_ell_body_earth_dist(double JD, struct ln_ell_orbit *orbit)
Calculate the distance between a body and the Earth.
Definition: elliptic_motion.c:405
int LIBNOVA_EXPORT ln_get_ell_body_next_rst_horizon_future(double JD, struct ln_lnlat_posn *observer, struct ln_ell_orbit *orbit, double horizon, int day_limit, struct ln_rst_time *rst)
Calculate the time of rise, set and transit for a body with an elliptic orbit.
Definition: elliptic_motion.c:594
double LIBNOVA_EXPORT ln_get_ell_orbit_pvel(struct ln_ell_orbit *orbit)
Calculate orbital velocity at perihelion in km/s.
Definition: elliptic_motion.c:350
Elliptic Orbital elements.
Definition: ln_types.h:265
Equatorial Coordinates.
Definition: ln_types.h:176
Ecliptical (or celestial) Longitude and Latitude.
Definition: ln_types.h:204
Rectangular coordinates.
Definition: ln_types.h:239
Rise, Set and Transit times.
Definition: ln_types.h:314