Campbell TLX106 Owner's manual

Category
Weather stations
Type
Owner's manual
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Station
Campbell
Scientif
ic, Inc
TLX106 WEATHER STATION
INSTRUCTION MANUAL
REVfSIONi
9lO2
COPYRIGHT
(c)
1993-2002
CAMPBELL
SCIENTIFIC, lNC.
Warranty
and
Assrs tance
The TLX106
WEATHER
STATION is warranted by CAMPBELL
SCIENTIFIC, INC. to be
free from
defects
in materials and
workmanship under
normal
use and service
for twelve
(12)
months from date of
shipment
unless
specified otherwise.
Batteries have
no
warranty. CAMPBELL
SCIENTIFIC,
INC.'s
obligation under
this warranty is limited to repairing
or
replacing
(at
CAMPBELL
SCIENTIFIC,
INC.'s
option)
defective
products.
The
customer
shall assume
all costs
of removing,
reinstalling,
and shipping
defective
products
to CAMPBELL SCIENTIFIC,
INC.
CAMPBELL
SCIENTIFIC, INC. will
return
such
products
by surface canier
prepaid.
This warranty
shall
not apply
to any
CAMPBELL
SCIENTIFIC,
INC.
products
which have
been subjected
to
modification, misuse, neglect, accidents
of
nature, or shipping
damage.
This
warranty
is in lieu of all other
warranties,
expressed or implied, including
warranties
of merchantability
or
fitness for a
particular purpose.
CAMPBELL
SCIENTIFIC, INC.
is not liable
for special,
indirect, incidental,
or
consequential damages.
Products may not be returned
without prior
authorization.
To
obtain
a Returned
Materials
Authorization
(RMA),
contact CAMPBELL SCIENTIFIC,
INC.,
phone
(435)
753-2342.
After an
applications
engineer determines
the
nature of
the
problem,
an
RMA number will
be
issued. Please write this
number clearly
on the
outside
of the shipping container.
CAMPBELL
SCIENTIFIC's
shipping
address
is:
CAMPBELL
SCIENTIFIC.
INC.
RMA#-
815 West
1800
North
Logan, Utah
84321-1784
CAMPBELL SCIENTIFIC,
INC.
does
not accept collect calls.
Non-warranty
products
returned
for repair should be accompanied
by
a
purchase
order to cover
the repair.
EAMPEIELL
SiGIENTIFIC,
INc.
815
W. laOO
N.
Logan, UT
84321
-1
784
USA
Phone
(435)
753-2342
FAX
(435)
75O-954O
www.camobellsci.com
Campbell Scientilic
Canada Corp.
1 1564
-149th
Street
Edmonlon, Alberta
TsM 1W7
CANADA
Phone
(78O)
454-25Os
FAX
(780)
454-265s
campbell
scientific Ltd.
Campbell
Park
80 Hathern Road
Shepshed, Loughborough
LE12
gGX,
U.K.
Phone
+44
(O)
15O9
601141
FAX
+44
(0)
15Og
601091
TLXI
06
Weather
Station
Table
of Contents
1. Preparation and Siting
1.1 Installation Tasks
...................
1-1
1.1.1 Indoors
.....1-l
1.1.2 Outdoors.................
......1-l
1.2 Tools Required......
................. l-l
1.2.1 Tools for Tower Installation...
...........l-2
1.2.2 Tools for Instrumentation
and
Maintenance
...........l-2
1.2.3
Supplies for Power and Communications
Options
...................... 1-3
1.3 Siting and Exposure
............... 1-3
1.3.1 Wind Speed and Direction...... ........... 1-3
1.3.2 Temperature and Relative Humidity......
.................
l-3
1.4
Determining True North for Wind Vane Orientation
.......l-4
1.4.1 Prompts from GEOMAG
..................
1-5
2. TLXl06 Tower Installation
3.
TLX1
06
3.1
3.2
al
3.4
4.
TLX106
4.1
4.2
4.3
4.4
4.5
Instrumentation
I nstal lation
Enclosure, Datalogger, Power
SuppIy.........
.....................3-2
3.1.1 Battery Option Installation
................3-2
3.1.2 Solar
Panel
Installation..............
........3-2
3.1.3 AC Power Installation............
...........3-3
3.1.4 Enclosure Installation..................
......3-3
Sensor Connection...
...............3-4
Communication
and Data Storage Peripherals
.................
3-5
3.3.1 Phone Modems......
.......3-6
3.3.2 Short-Haul Modem..
.....3-7
Sealing and Desiccating the Enclosure.....
........................3-9
Sensor
Arm Installation
Components.
......4-l
Installation...
......4-l
Sensor Connection...
...............4-2
034,4. Wind Sensor Installation...
.................4-2
RH
and Temperature Radiation
Shield...........
..................4-3
TLX|06
Weather
Station
Table
of Contents
5.
4.6
Pyranometer..............
.............4-3
4.7
Sensor
Verification
and Clock
Set................
....................4-3
4.8
Sensor Schematics...
...............4-4
Software
Installation
and
Settings
5.1 Measure
Sensors
and Process Data.............
......................5-l
5.2 Software Install
and
Settings
.......................5-l
5.3 Create Message.......
................5-7
Maintenance
and
Troubleshooting
6.1 Maintenance...............
............6-1
6. L I Instrumentation
Maintenance
.............
6-
1
6.1.2 8atteies.................
.......6-l
6.1.3 Desiccant...............
.......6-1
6.1.4 Sensor Maintenance
......6-2
6.2 Troubleshooting.........
.............6-3
6.2.1NoResponseUsingtheKeypad.........
.....................6-3
6.2.2
No Response from Datalogger
through SC32A
or
Modem Peripheral....
....................6-3
6.2.3
-99999
Displayed in
an Input Location...... .............6-4
6.2.4 Unreasonable Results Displayed
in an Input Location.................6-4
6.
Figures
1.3-1.
Effect of
Structure on Wind F1ow............ ....................1-4
1.4-1 Magnetic Declination
for the Contiguous United States .................... l-5
1.4-2 Declination Angles
East of True North Are Subtracted from
0 to Get True North... .....1-'7
1.4-3 Declination
Angles West of True North Are Added to 0
to
Get
True
North........... .....................1-8
2.1-1
TLXI06 Tower Installation...
...................2-l
2.1-2 TLXIO6
Tower Base Installation............... ...................2-3
2.2-1
Raising and
Grounding the
TLX106 Tower.......
...........2-4
3-
I
TLXI06 Instrumentation Mounted
on
the ET Tower............................ 3- I
3.1-1 Rechargeable
Power Mounting Connections.............. ........................3-2
3.1-2 Solar
Panel
Mountin9................ ...............3-2
3.1-3 Mounting and
Grounding the
TLXI06 Enclosure .........3-4
3.2-1PositionofSensorBulkheadConnectors... ....................3-5
3.3-1 Phone Modem Mounting and
Connections...............
.....3-6
3.3-2 Short-Haul Modem Mounting
and Connection..................................3-7
3.3-3 ShorrHaul Modem Wiring Diagram....... ......................3-9
3.4-1 Desiccant Installation..................
....-...-..3-10
4.2-l
TLX106 Sensor Arm Mounting.................. ..................4-1
4.4-l Wind
and RFVTemperature Sensor Installation... ..........4-2
4.6-1 Pyranometer
Leveling.................. ............4-3
4.8-l
Schematic of HMP45C-LC RH Temperature Probe and
Connector #l ................ .......................4-5
4.8-2
Schematic of 034A-LC Wind Speed and Direction
Probe and
Connector
#2
................ ...-........-.-.-.-....4-5
4.8-3
Schematic of LI200X-LC Solar Radiation Sensor and
Connector #3 ................ .......................4-6
4.8-4
Schematic of T8525-LC Rain Sensor and Connector
#5
..............
.....4-6
TLX|06 Weather Station
Table
of Contents
Proline software
provides
an
easy-to-use
message editor........... ......
5-7
The available options
provided
by
the source menu are shown .........5-8
When the weather
station source has been chosen. several
meteorological
conditions reported in
various units are
provided under the field
menu 5-8
III
TLX|06
Weather
Station
Table
of Contents
Section
7. Preparation and Siting
These
guidelines
apply to
several
Campbell Scientific
weather
stations.
1.1
Installation tasks
1.1.1
lndoors
r
Immediately upon receipt
of
your
shipment...
=
Open
shipping
cartons.
-
Check
contents
against invoice. Contact CSI
immediately
about
any
shortages.
o
Several days
prior
to the
planned
installation date...
+ Collect tools and
site
information
(Section
l)
-
Repackage
equipment for transport to the field site
1,1.2
Outdoors
o
Locate
suitable
site
(Section
1)
o
Prepare
tower
(Section
2)
r
TLX106
Stations:
=
Place
instrumentation enclosure
low
on the TLX106 Tower
(Section
3)
+ Install sensor option
(Section
4)
(Section
3)
1.2
Tools Required
Tools required
to
install and
maintain a
weather
station are
listed
below.
1-1
Section 1.
Preparation
and
1.2.1
Tools
for
1.2.2 Tools
for
Tower
Installation
All
Towers
Shovel
Rake
Open
end wrenches:
3/8,7116,y2",
(2)
9116"
Magnetic
compass
6' Step
ladder
TLX106
Tower
Tape
measure
(12'
to 20')
Claw
hammer
Level
(24"
ro
36"
)
Hand
saw
Materials
for concrete form:
(4)
l" x 2" x 12"
stakes
(2)
2" x4" x96" lumber
(12)
8p double-head nails
(8)
16p
double-head nails
20 ft form
wire
YzYard
concrete
Concrete
trowel, edger
Electrical
Fish tape or 20 feet of small
diameter
rope
Wheelbarrow
Instrumentation
and Maintenance
All
Towers
Lock and key for enclosure
Magnetic
declination angle
(Section
4)
Magnetic compass
Straight bit screwdrivers
(small,
medium,
large)
Phillips-head
screwdrivers
(small,
medium)
Small
diagonal
side-cuts
Needle-nose
pliers
Wire
strippers
Pocket
knife
Calculator
Volt/
Ohm Meter
Electrical Tape
Step ladder
(6')
Datalogger
prompt
sheet
Station
manuals
Station log and pen
Open
end wrenches: 318,7116",y2",
(2)
9/16
Socket wrench andTll6" deep
well
socket
Adjustable wrench
Pliers
Conduit and
associated tools
(as
required)
Felt-tipped
marking
pen
Claw
hammer
Pipe
wrench
(12")
1-2
Section 1. Preparation and
Siting
1.2)g
Supplies
for
Power and Communications Options
AC Power
Wire, conduit, and
junction
boxes as needed
Phone
Modem
Hayes
compatible
calling modem
for
PC
Phone line to weather station or
iunction
box
Short-Haul Modem
4
Conductor communications cable
from PC to weather station
or
junction
box
6'
copper
ground
rod and
clamp
for
PC
surge
protection
(optional)
1.3 Siting
and
Exposure
CAUTION
lf
any
part
of the
weather
station comes in contact with
power
lines,
you
could be killed.
Contact
local
utilities for
the location
of buried utility
lines
before
digging
or
driving
ground
rods.
Selecting an
appropriate site
for the weather station is critical in
order
to
obtain
accurate
meteorological
data.
In
general,
the site
should
be representative
of
the general
area ofinterest, and away from the influence ofobstructions
such
as
buildings and trees.
The
weather
station
should not be
located
where
sprinkler
inigation water will
strike
sensors or
insffument
enclosure.
Some
general guidelines
for site
selection are listed
below, which were
condensed from
EPA
(1988)',
WMO
(
1983F, and AASC
(1985)3
publications.
1.3.1 Wind
Speed and
Direction
Wind sensors should be located over
open
level terrain, and
at
a
distance of at
least
ten
times
(EPA)
the height of any nearby building, tree
or other
obstruction,
as illustrated in
Figure 1.3-1.
1.3.2 Temperature and Relative
Humidity
Sensors
should
be
located
over
an open level area
at
least
9 m
(EPA)
in
diameter.
The
surface
should be covered
by
short grass, or where
grass
does
not
grow,
the natural earth surface.
Sensors
should
be
located
at
a distance
of
at
least
four times the height of any nearby obstruction
and
at least
30
m
(EPA)
from large
paved
areas. Sensors
should
be
protected
from
thermal
radiation,
and adequately ventilated.
1-3
Section 1.
Situations
to avoid
include:
o
large industrial
heat
sources
.
rooftops
r
steep slopes
r
sheltered hollows
.
high vegetation
r
shaded areas
.
swamps
.
areas
where
snow drifts occur
o
low
places
holding
standing
water
after
rains
l|]
I
-H,
II
ru# pt
H-./
#
-'-
fl
tH
FIGURE 1.3-1. Effect of
Structure on Wind
Flow
-l
@
v
1.4 Determining
True
North for Wind Vane
Orientatio
Magnetic declination,
or other methods to find True North, should be
determ
prior
to installing the weather
station.
True North is usually found
by
reading
a
magnetic compass
and
applying the correction for magnetic declination*;
whe
magnetic
declination is the number of
degrees
between True North and
North.
Magnetic declination for a specific
site
can be
obtained
from
a
USFA
F
o
o
-
'o
r
1-4
local
airport, or through a computer service offered by the USFS called
GEO
Section 1. Preparation and Siting
(Section
1.4.1). A general
map showing
magnetic declination
for the
contiguous
United States is shown
in Figure 1.4-1.
Declination angles east ofTrue North are considered negative, and are subtracted
from 0 degrees to
get True
North as shown Figure 1.4-2.
Declination
angles west
ofTrue
North
are con-sidered
positive,
and are added to 0
degrees
to
get
True
North as shown in Figure
1.4-3.
For example, the declination for Logan, Utah is
16" East. True
North
is 360'
-
76", or 344" as read on a
compass.
*
Other methods employ
observations
using the North Star
or
the sun, and
are discussed in the
Quality
Assurance Handbook for
Air
Pollution
Measurement Systems, Volume IV
-
Meteorological
Measurements4.
Subtract declination
from
360o
FIGURE
1.4-1. Magnetic
Declination
for
the Contiguous United Sfafes
1.4.1 Prompts from GEOMAG
GEOMAG is accessed by
phone
with a PC
and
telephone
modem, and
a
communications
program
such as GraphTerm
(PC208
Software).
GEOMAG
prompts
the
caller
for site latitude, longitude,
and elevation, which it uses to
determine
the
magnetic declination
and
annual
change. The following
information, menu, and
prompts
are
from
GEOMAG:
GEOMAG is a user-friendly
program
that
provides
estimates
of the
geomagnetic
field elements, including declination
and total field intensity,
based upon
Magnetic
Models.
The
program
is accessible by modem.
Modem Access:
Modem settings:
No
parity,
8 data bits,
and
I stop bit
(i.e.,
N81)
1-5
Section 1.
Telephone
numbers:
Phone Number Baud
Rates
303-273-8612 2400
303-273-8673 1200
303-273-8678 1200
Upon carrier-signal
detection, press Return
once
or
twice.
If
you
are
using
one
of the
commercial numbers,
the
following prompts
will
appear.
Type
the responses
shown
(followed
by
pressing
RETURN):
MAIN MENU
Type
a
for
Quick
Epicenter
Determinations
(QED)
L for
Earthquake Lists
(EQLIST)
M for
Geomagnetic Field
Values
(GEOMAG)
X
to log
out
Enter
program
option: M
Would
you
like
information on how to run
GEOMAG
(Yn\D?
N
Options:
I
=
Field
Values
(D,I,
H,
X,Z,F)
2
=
Magnetic
Pole Positions
3
=
Dipole
Axis and Magnitude
4
=
Magnetic
Center
[1]
: I
Display values
twice
[N]:
press return
Name
of field
model
[USCON9O]:
press
return
GLDSVI> c
neis
Username:
QED
Date
Latitude
Longitude
Elevation
Model:
USCON90
Date:7/27/93
D
deg
min
15
59.6
Annual change:
0
-6.1
Example of report
generated
by GEOMAG:
IRETURN]
IRETURN]
[current
date]:
press
return
:4212N
: llll5l/2W
: 4454
ft
Latitude:4212N
Longitude: lll/51/2W
Elevation: 4454.0 tt
1-6
Section 1.
Preparation
and
Siting
Exiting:
Press "Cntrl-Z" to exit
GEOMAG.
When the
main menu
reappears
either
select
another
option
or
type
"X"
to
log out.
If
you
used one
of the commercial
numbers,
the GLDSVI>
prompt will
reappear.
Type
"LO" to
disconnect.
Use of
GEOMAG is free
(except
for telephone charges).
If
possible, please
avoid using
GEOMAG
between
9
a.m.
and
4
p.m.,
mountain time,
Monday
through
Friday,
The declination in the
example
above
is listed as 15 degrees
and
59.6
minutes.
Expressed in degrees,
this
would
be 15.99
degrees. As shown in Figure 1.4-1,
the
declination for Utah
is east,
so
True North for this site
is
360
-
15.99, or 344
degrees"
The
annual change is
-6.1 minutes.
NEEDLE
POINTS
TO
MAGNETIC
NORTH
FIGURE
1.4-2.
Declination Angles East
of
True North Are Subtracted
From
0 to Get
True
North
TRUE
NORTH
1-7
Section 1.
TRUE
NORTH
NEEDLE
POINTS
TO
MAGNETIC
NORTH
FIGURE
1.4-3. Declination
Angles West
of
True North Are
Added to
to Get
True North
1-8
Section
2, TLXI
06
Tower Installation
DANGER
CAUTION
Transformer
Do not install
near
power
lines.
lf any
part
of
the
tower
comes
in
contact
with
power
lines
you
could
be
KILLED. Contact
local
utilities
for
the location of
buried utility lines before digging or
driving
grounding
rods.
Do
not fit the
3 meter
TLX106
Tower sections together until
the
appropriate time.
Once attached, they
cannot
be
detached.
The TLX106 Tower
provides
a support
structure
for
mounting
the TLX106
weather station components. Figure 2.1-1
shows a
typical
TLX106
Tower
installation
option.
The tower is
designed to withstand
winds
of 100
mph.
The
lightning
rod
assembly
is attached after the instrumentation
enclosure
is
installed
(Section
3.
1).
User
Supplied
Junction Box
16
VAC
Power
Valve
Box
ET Tower
110 VAC
Giound
noo
/
/
/
;;**;;i""ii*e
'Llfle.,.'."""
'':
"
"'
/.
/
a
Concieib
...,:.BaSe,
FIGURE 2.1-1. TLX|06
Tower lnstallation
2-1
Section 2. TLX|06
Tower
lnstallation
2.1
Base
Installation
2.1.1
Supplied
Gomponents
2.1.2
Installation
l.
(3)
r/z
inch
L-Bolts
(9)
/z inch
Nuts
(l)
Anchor
Template
Refer to
Section I
for
components
supplied
by
installer.
The
TLX106 Tower
attaches to a user
supplied
concrete
foundation
constructed
as shown in Fisure 2.1-2.
Construct
the
concrete
form
with
2" x 4" lumber and 16p nails.
Assemble
the
template
and
anchor bolts. There should be two
nuts
below
and
one nut
above
the
template on each
bolt.
Clear an
area
large
enough
to
set the form
at
the desired
elevation.
4.
3.
5.
Dig a hole
2feetx2feetx
2
feet. Lighter
soils
may require a deeper
About
20 inches below
the top
of the hole,
gouge
a
small cavity
in
one
wall
ofthe hole. The
cavity
should
be about
4 inches
deep
andjust
large
enough in
diameter
to insert one
end of the conduit. Make certain the
cavity
"points"
in
the direction
from
which
power
and
communications
cables will come.
6.
Center
the form over the hole. Adjacent
to the
form, drive four stakes in
the
soil. Secure the leveled
form
to the
stakes
with the
8p
nails.
7 . Cap the ends of the conduit
with
duct
tape. Position
the
conduit
and wire
into
place
by securing the wire to nails in the
form.
8. Fill the hole
and
form
with approximately
r/z
yard
of concrete. Screed the
concrete level with the
top of
the form.
Center
the template assembly
the
conduit and
press
into
the
concrete. Put 2
x
4 spacers between the
template
and the top of the form. The
bottom
of the bolt threads should
aboutVz
inch
above
the concrete. The template must be level
in
two
dimensions.
Use a trowel
and
edser to finish.
9.
Wait24
hours before removing the concrete form. Wait 7 days before
mountinq
the
TLX106
Tower.
2-2
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Campbell TLX106 Owner's manual

Category
Weather stations
Type
Owner's manual

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