1 | #include <stdio.h>
|
---|
2 | #include <math.h>
|
---|
3 |
|
---|
4 | #include "astro.h"
|
---|
5 |
|
---|
6 | static void unrefractLT15 (double pr, double tr, double aa, double *ta);
|
---|
7 | static void unrefractGE15 (double pr, double tr, double aa, double *ta);
|
---|
8 |
|
---|
9 | void
|
---|
10 | unrefract (double pr, double tr, double aa, double *ta)
|
---|
11 | {
|
---|
12 | #define LTLIM 14.5
|
---|
13 | #define GELIM 15.5
|
---|
14 |
|
---|
15 | double aadeg = raddeg(aa);
|
---|
16 |
|
---|
17 | if (aadeg < LTLIM)
|
---|
18 | unrefractLT15 (pr, tr, aa, ta);
|
---|
19 | else if (aadeg >= GELIM)
|
---|
20 | unrefractGE15 (pr, tr, aa, ta);
|
---|
21 | else {
|
---|
22 | /* smooth blend -- important for inverse */
|
---|
23 | double taLT, taGE, p;
|
---|
24 |
|
---|
25 | unrefractLT15 (pr, tr, aa, &taLT);
|
---|
26 | unrefractGE15 (pr, tr, aa, &taGE);
|
---|
27 | p = (aadeg - LTLIM)/(GELIM - LTLIM);
|
---|
28 | *ta = taLT + (taGE - taLT)*p;
|
---|
29 | }
|
---|
30 | }
|
---|
31 |
|
---|
32 | static void
|
---|
33 | unrefractGE15 (double pr, double tr, double aa, double *ta)
|
---|
34 | {
|
---|
35 | double r;
|
---|
36 |
|
---|
37 | r = 7.888888e-5*pr/((273+tr)*tan(aa));
|
---|
38 | *ta = aa - r;
|
---|
39 | }
|
---|
40 |
|
---|
41 | static void
|
---|
42 | unrefractLT15 (double pr, double tr, double aa, double *ta)
|
---|
43 | {
|
---|
44 | double aadeg = raddeg(aa);
|
---|
45 | double r, a, b;
|
---|
46 |
|
---|
47 | a = ((2e-5*aadeg+1.96e-2)*aadeg+1.594e-1)*pr;
|
---|
48 | b = (273+tr)*((8.45e-2*aadeg+5.05e-1)*aadeg+1);
|
---|
49 | r = degrad(a/b);
|
---|
50 |
|
---|
51 | *ta = (aa < 0 && r < 0) ? aa : aa - r; /* 0 below ~5 degs */
|
---|
52 | }
|
---|
53 |
|
---|
54 | /* correct the true altitude, ta, for refraction to the apparent altitude, aa,
|
---|
55 | * each in radians, given the local atmospheric pressure, pr, in mbars, and
|
---|
56 | * the temperature, tr, in degrees C.
|
---|
57 | */
|
---|
58 | void
|
---|
59 | refract (double pr, double tr, double ta, double *aa)
|
---|
60 | {
|
---|
61 | #define MAXRERR degrad(0.1/3600.) /* desired accuracy, rads */
|
---|
62 |
|
---|
63 | double d, t, t0, a;
|
---|
64 |
|
---|
65 | /* first guess of error is to go backwards.
|
---|
66 | * make use that we know delta-apparent is always < delta-true.
|
---|
67 | */
|
---|
68 | unrefract (pr, tr, ta, &t);
|
---|
69 | d = 0.8*(ta - t);
|
---|
70 | t0 = t;
|
---|
71 | a = ta;
|
---|
72 |
|
---|
73 | /* use secant method to discover a value that unrefracts to ta.
|
---|
74 | * max=7 ave=2.4 loops in hundreds of test cases.
|
---|
75 | */
|
---|
76 | while (1) {
|
---|
77 | a += d;
|
---|
78 | unrefract (pr, tr, a, &t);
|
---|
79 | if (fabs(ta-t) <= MAXRERR)
|
---|
80 | break;
|
---|
81 | d *= -(ta - t)/(t0 - t);
|
---|
82 | t0 = t;
|
---|
83 | }
|
---|
84 |
|
---|
85 | *aa = a;
|
---|
86 |
|
---|
87 | #undef MAXRERR
|
---|
88 | }
|
---|
89 |
|
---|
90 | /* For RCS Only -- Do Not Edit */
|
---|
91 | static char *rcsid[2] = {(char *)rcsid, "@(#) $RCSfile: refract.c,v $ $Date: 2004-06-15 16:52:40 $ $Revision: 1.4 $ $Name: not supported by cvs2svn $"};
|
---|