Conversion of standardized ReadMe file for
file /./ftp/cats/J/AJ/141/23 into FORTRAN code for loading all data files into arrays.
Note that special values are assigned to unknown or unspecified
numbers (also called NULL numbers);
when necessary, the coordinate components making up the right ascension
and declination are converted into floating-point numbers
representing these angles in degrees.
program load_ReadMe
C=============================================================================
C F77-compliant program generated by readme2f_1.81 (2015-09-23), on 2026-Sep-12
C=============================================================================
* This code was generated from the ReadMe file documenting a catalogue
* according to the "Standard for Documentation of Astronomical Catalogues"
* currently in use by the Astronomical Data Centers (CDS, ADC, A&A)
* (see full documentation at URL http://vizier.u-strasbg.fr/doc/catstd.htx)
* Please report problems or questions to
C=============================================================================
implicit none
* Unspecified or NULL values, generally corresponding to blank columns,
* are assigned one of the following special values:
* rNULL__ for unknown or NULL floating-point values
* iNULL__ for unknown or NULL integer values
real*4 rNULL__
integer*4 iNULL__
parameter (rNULL__=--2147483648.) ! NULL real number
parameter (iNULL__=(-2147483647-1)) ! NULL int number
integer idig ! testing NULL number
C=============================================================================
Cat. J/AJ/141/23 HI holes in THINGS galaxies (Bagetakos+, 2011)
*================================================================================
*The fine-scale structure of the neutral interstellar medium in nearby galaxies.
* Bagetakos I., Brinks E., Walter F., De Blok W.J.G., Usero A., Leroy A.K.,
* Rich J.W., Kennicutt R.C.
* <Astron. J., 141, 23 (2011)>
* =2011AJ....141...23B
C=============================================================================
C Internal variables
integer*4 i__
c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
C Declarations for 'table2.dat' ! *Characteristics of the galaxies in the sample
integer*4 nr__
parameter (nr__=20) ! Number of records
character*88 ar__ ! Full-size record
C J2000 position composed of: RAh RAm RAs DE- DEd DEm DEs
real*8 RAdeg (nr__) ! (deg) Right Ascension J2000
real*8 DEdeg (nr__) ! (deg) Declination J2000
C ---------------------------------- ! (position vector(s) in degrees)
character*11 Name (nr__) ! Galaxy name
character*9 OName (nr__) ! Other name
integer*4 RAh (nr__) ! (h) Right ascension (J2000)
integer*4 RAm (nr__) ! (min) Right ascension (J2000)
real*4 RAs (nr__) ! (s) Right ascension (J2000)
character*1 DE_ (nr__) ! Declination sign J2000)
integer*4 DEd (nr__) ! (deg) Declination (J2000)
integer*4 DEm (nr__) ! (arcmin) Declination (J2000)
real*4 DEs (nr__) ! (arcsec) Declination (J2000)
character*10 Type (nr__) ! Morphological type
real*4 Dist (nr__) ! (Mpc) Distance
integer*4 Incl (nr__) ! (deg) Average inclination
integer*4 PA (nr__) ! (deg) Average position angle
real*4 MHI (nr__) ! (10+8Msun) HI mass
real*4 logSFR (nr__) ! ([Msun/yr]) Stellar formation rate
character*1 r_logSFR (nr__) ! [cd] Reference for logSFR (1)
real*4 logD25 (nr__) ! ([0.1arcmin]) Isophotal 25mag/arcsec2 major diameter
integer*4 Res (nr__) ! (pc) Resolution
*Note (1): References as follows:
* c = Hunter & Elmegreen (2004, Cat. J/AJ/128/2170)
* d = Hunter et al. (1999AJ....118.2184H)
c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
C Declarations for 'table7.dat' ! Hole properties
integer*4 nr__1
parameter (nr__1=1046) ! Number of records
character*85 ar__1 ! Full-size record
C J2000 position composed of: RAh RAm RAs DE- DEd DEm DEs
real*8 RAdeg_1 (nr__1) ! (deg) Right Ascension J2000
real*8 DEdeg_1 (nr__1) ! (deg) Declination J2000
C ---------------------------------- ! (position vector(s) in degrees)
character*11 Name_1 (nr__1) ! Galaxy name
integer*4 Seq (nr__1) ! Hole index number within the galaxy,
* [BBW2011] Galaxy NNN in Simbad
integer*4 RAh_1 (nr__1) ! (h) Hour of Right Ascension (J2000)
integer*4 RAm_1 (nr__1) ! (min) Minute of Right Ascension (J2000)
real*4 RAs_1 (nr__1) ! (s) Second of Right Ascension (J2000)
character*1 DE__1 (nr__1) ! Sign of the Declination (J2000)
integer*4 DEd_1 (nr__1) ! (deg) Degree of Declination (J2000)
integer*4 DEm_1 (nr__1) ! (arcmin) Arcminute of Declination (J2000)
real*4 DEs_1 (nr__1) ! (arcsec) Arcsecond of Declination (J2000)
integer*4 HV (nr__1) ! (km/s) Heliocentric velocity of center
integer*4 Type_1 (nr__1) ! [1/3] Hole type; see section 4.2 (1)
integer*4 d (nr__1) ! (pc) Diameter
integer*4 Vexp (nr__1) ! (km/s) Expansion velocity
integer*4 PA_1 (nr__1) ! (deg) Position angle
real*4 Ratio (nr__1) ! Axial ratio; b_min_/b_maj_
real*4 R (nr__1) ! (kpc) Galactocentric radius
real*4 nHI (nr__1) ! (cm-3) HI volume density around the hole
integer*4 tkin (nr__1) ! (Myr) Kinetic age
real*4 log_E (nr__1) ! ([10+43J]) Log estimated energy requirement in 10^50^ergs
real*4 logMHI (nr__1) ! ([10+4Msun]) Log estimated missing HI mass
*Note (1): Type as follows:
* 1 = it is impossible to measure an expansion velocity. However, it is very
* likely that these have actually stalled and their final expansion
* velocity will be equal to the velocity dispersion of the gas
* 2 = the expansion velocity was taken as the difference between the velocity
* of the HI from that side of the hole which is seen to deviate from its
* measured velocity and the mean velocity of ambient gas surrounding the
* hole
* 3 = the expansion velocity was taken as half the difference between the
* velocity of the approaching and receding sides of the hole
C=============================================================================
C Loading file 'table2.dat' ! *Characteristics of the galaxies in the sample
C Format for file interpretation
1 format(
+ A11,1X,A9,1X,I2,1X,I2,1X,F4.1,1X,A1,I2,1X,I2,1X,F4.1,1X,A10,
+ 1X,F4.1,1X,I2,1X,I3,1X,F4.1,1X,F5.2,A1,1X,F4.2,1X,I3)
C Effective file loading
open(unit=1,status='old',file=
+'table2.dat')
write(6,*) '....Loading file: table2.dat'
do i__=1,20
read(1,'(A88)')ar__
read(ar__,1)
+ Name(i__),OName(i__),RAh(i__),RAm(i__),RAs(i__),DE_(i__),
+ DEd(i__),DEm(i__),DEs(i__),Type(i__),Dist(i__),Incl(i__),
+ PA(i__),MHI(i__),logSFR(i__),r_logSFR(i__),logD25(i__),
+ Res(i__)
RAdeg(i__) = rNULL__
DEdeg(i__) = rNULL__
c Derive coordinates RAdeg and DEdeg from input data
c (RAdeg and DEdeg are set to rNULL__ when unknown)
if(RAh(i__) .GT. -180) RAdeg(i__)=RAh(i__)*15.
if(RAm(i__) .GT. -180) RAdeg(i__)=RAdeg(i__)+RAm(i__)/4.
if(RAs(i__) .GT. -180) RAdeg(i__)=RAdeg(i__)+RAs(i__)/240.
if(DEd(i__) .GE. 0) DEdeg(i__)=DEd(i__)
if(DEm(i__) .GE. 0) DEdeg(i__)=DEdeg(i__)+DEm(i__)/60.
if(DEs(i__) .GE. 0) DEdeg(i__)=DEdeg(i__)+DEs(i__)/3600.
if(DE_(i__).EQ.'-'.AND.DEdeg(i__).GE.0) DEdeg(i__)=-DEdeg(i__)
c ..............Just test output...........
write(6,1)
+ Name(i__),OName(i__),RAh(i__),RAm(i__),RAs(i__),DE_(i__),
+ DEd(i__),DEm(i__),DEs(i__),Type(i__),Dist(i__),Incl(i__),
+ PA(i__),MHI(i__),logSFR(i__),r_logSFR(i__),logD25(i__),
+ Res(i__)
write(6,'(6H Pos: 2F8.4)') RAdeg(i__),DEdeg(i__)
c .......End.of.Just test output...........
end do
close(1)
C=============================================================================
C Loading file 'table7.dat' ! Hole properties
C Format for file interpretation
2 format(
+ A11,1X,I3,1X,I2,1X,I2,1X,F4.1,1X,A1,I2,1X,I2,1X,F4.1,1X,I4,1X,
+ I1,1X,I4,1X,I2,1X,I3,1X,F3.1,1X,F4.1,1X,F4.1,1X,I3,1X,F4.1,1X,
+ F4.1)
C Effective file loading
open(unit=1,status='old',file=
+'table7.dat')
write(6,*) '....Loading file: table7.dat'
do i__=1,1046
read(1,'(A85)')ar__1
read(ar__1,2)
+ Name_1(i__),Seq(i__),RAh_1(i__),RAm_1(i__),RAs_1(i__),
+ DE__1(i__),DEd_1(i__),DEm_1(i__),DEs_1(i__),HV(i__),
+ Type_1(i__),d(i__),Vexp(i__),PA_1(i__),Ratio(i__),R(i__),
+ nHI(i__),tkin(i__),log_E(i__),logMHI(i__)
RAdeg_1(i__) = rNULL__
DEdeg_1(i__) = rNULL__
c Derive coordinates RAdeg_1 and DEdeg_1 from input data
c (RAdeg_1 and DEdeg_1 are set to rNULL__ when unknown)
if(RAh_1(i__) .GT. -180) RAdeg_1(i__)=RAh_1(i__)*15.
if(RAm_1(i__) .GT. -180) RAdeg_1(i__)=RAdeg_1(i__)+RAm_1(i__)/4.
if(RAs_1(i__) .GT. -180) RAdeg_1(i__)=RAdeg_1(i__)+RAs_1(i__)/240.
if(DEd_1(i__) .GE. 0) DEdeg_1(i__)=DEd_1(i__)
if(DEm_1(i__) .GE. 0) DEdeg_1(i__)=DEdeg_1(i__)+DEm_1(i__)/60.
if(DEs_1(i__) .GE. 0) DEdeg_1(i__)=DEdeg_1(i__)+DEs_1(i__)/3600.
if(DE__1(i__).EQ.'-'.AND.DEdeg_1(i__).GE.0) DEdeg_1(i__)=-DEdeg_1(i__)
c ..............Just test output...........
write(6,2)
+ Name_1(i__),Seq(i__),RAh_1(i__),RAm_1(i__),RAs_1(i__),
+ DE__1(i__),DEd_1(i__),DEm_1(i__),DEs_1(i__),HV(i__),
+ Type_1(i__),d(i__),Vexp(i__),PA_1(i__),Ratio(i__),R(i__),
+ nHI(i__),tkin(i__),log_E(i__),logMHI(i__)
write(6,'(6H Pos: 2F8.4)') RAdeg_1(i__),DEdeg_1(i__)
c .......End.of.Just test output...........
end do
close(1)
C=============================================================================
stop
end