Campbell-scientific EC150 CO2 and H2O Open-Path Gas Analyzer and EC100 Uživatelský manuál

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INSTRUCTION MANUAL
EC150 CO
2
/H
2
O Open-Path
Gas Analyzer
Revision: 6/14
Copyright © 2010- 2014
Campbell Scientific, Inc.
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Strany 1 - INSTRUCTION MANUAL

INSTRUCTION MANUAL EC150 CO2/H2O Open-Path Gas Analyzer Revision: 6/14 Copyright © 2010- 2014 Campbell Scientific, Inc.

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Table of Contents 8-2. Diagnostic Flags of Sonic Status LED ... 33 8-3. Diagnostic Flags and Suggested Ac

Strany 3 - Limited Warranty

EC150 CO2/H2O Open-Path Gas Analyzer 1. Introduction The EC150 is an in situ, open-path, mid-infrared absorption gas analyzer that measures the abso

Strany 4 - Assistance

EC150 CO2/H2O Open-Path Gas Analyzer o Handle the EC150 carefully. The optical source may be damaged by rough handling, especially while the analyze

Strany 5 - Precautions

EC150 CO2/H2O Open-Path Gas Analyzer • Unique design contains little obstruction surrounding the sample volume • 5W total power consumption • Sync

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EC150 CO2/H2O Open-Path Gas Analyzer 4.6 EC100 Electronics Module The EC100 electronics module (shown in FIGURE 4-1) controls the EC150 and optional

Strany 7 - Table of Contents

EC150 CO2/H2O Open-Path Gas Analyzer 4.6.2.1 SDM Output To use SDM data output, connect an SDM communications cable from the EC100 (see Section 6.3,

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EC150 CO2/H2O Open-Path Gas Analyzer The algorithm uses the following environmental parameters to control the heater: • Analyzer body temperature, me

Strany 9 - Figures

EC150 CO2/H2O Open-Path Gas Analyzer The EC100 electronics module digitizes and process the detector data (along with ancillary data such as ambient a

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EC150 CO2/H2O Open-Path Gas Analyzer Gas analyzer Measurement precisioniii CO2 density: 0.2 mg·m–3 (0.15 µmol·mol–1) H2O density: 0.004 g·m–3 (0.006

Strany 11 - Analyzer

EC150 CO2/H2O Open-Path Gas Analyzer CSAT3 sonic reporting range Full scale wind: ±65.6 m/s Sonic temperature: −50° to 60°C Auxiliary sensorsvii Bar

Strany 13 - 4.3 Gas Head Memory

EC150 CO2/H2O Open-Path Gas Analyzer Dimensions Head housing diameter: 3.2 cm (1.3 in) Head length: 29.7 cm (11.7 in) EC100 enclosure: 24.1 c

Strany 14 - 4.6.2 EC100 Outputs

EC150 CO2/H2O Open-Path Gas Analyzer 6. Installation 6.1 Orientation During operation, the EC150 should be positioned vertically (±15°) so that the

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EC150 CO2/H2O Open-Path Gas Analyzer The mounting bracket for the EC50 with CSAT3A, pn 26786, allows the intake source of the CSAT3A and EC150 to be p

Strany 16 - 4.8 Theory of Operation

EC150 CO2/H2O Open-Path Gas Analyzer FIGURE 6-3. Mounting position of CSAT3A and EC155 with a 4.9 cm sensor separation. FIGURE 6-4. Mounting posit

Strany 17 - 5. Specifications

EC150 CO2/H2O Open-Path Gas Analyzer 6.2.1 Preparing the mounting structure 1. Secure a CM20X crossarm to a tripod or other vertical structure using

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EC150 CO2/H2O Open-Path Gas Analyzer Avoid crashing the arms of the sensors together. The arms of the analyzer should slide in between the claws of th

Strany 19 - 5.3 Physical Description

EC150 CO2/H2O Open-Path Gas Analyzer FIGURE 6-6. Exploded view of mounting the EC150 without the CSAT3A Over-tightening bolts will damage or deform

Strany 20 - 5.4 Power Requirements

EC150 CO2/H2O Open-Path Gas Analyzer Use caution when handling the EC150 gas analyzer head. The optical source may be damaged by rough handling, esp

Strany 21 - 6. Installation

EC150 CO2/H2O Open-Path Gas Analyzer bracket (it should slide into place and be able to securely hang from the bracket), and retightening the bolts (s

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EC150 CO2/H2O Open-Path Gas Analyzer FIGURE 6-9. EC150 temperature probe FIGURE 6-10. Solar radiation shield with EC150 temperature probe 6.3 Wir

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Limited Warranty “Products manufactured by CSI are warranted by CSI to be free from defects in materials and workmanship under normal use and service

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EC150 CO2/H2O Open-Path Gas Analyzer FIGURE 6-12. Bottom of EC100 enclosure 6.3.1 Connecting the EC150 Gas Analyzer Head 1. Remove the black rubbe

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EC150 CO2/H2O Open-Path Gas Analyzer 6.3.3 Connect the EC150 Temperature Probe 1. Unscrew the temperature connector cover which is found on the bott

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EC150 CO2/H2O Open-Path Gas Analyzer TABLE 6-1. EC100 SDM output to a Campbell Scientific CR1000, CR3000, or CR5000 Datalogger EC100 Channel Descrip

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EC150 CO2/H2O Open-Path Gas Analyzer natural elements. A zero-and span procedure should be performed after installation of the instrument to give app

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EC150 CO2/H2O Open-Path Gas Analyzer 1. Remove power from the EC100/EC150. Unplugging the power cable from the EC100 is the easiest way to accomplis

Strany 29 - 6.3 Wiring and Connections

EC150 CO2/H2O Open-Path Gas Analyzer 5. Disconnect the EC150 temperature probe from the EC100 and connect the shroud temperature probe in its place.

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EC150 CO2/H2O Open-Path Gas Analyzer FIGURE 7-2. ECMon zero-and-span window 15. Remove the CO2 span gas from the inlet of the shroud and replace it

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EC150 CO2/H2O Open-Path Gas Analyzer Compute the drift in instrument gain using the following equation: measmeasactualzerospanspangain−= where, • spa

Strany 32 - 7. Zero and Span

EC150 CO2/H2O Open-Path Gas Analyzer 8. Maintenance and Troubleshooting EC150 operation requires six maintenance tasks: • Routine site maintenance

Strany 33 - 7.2 Zero and Span Procedure

EC150 CO2/H2O Open-Path Gas Analyzer The bottom wick is installed in a similar manner, except the long seam should be aligned with the long side of th

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Assistance Products may not be returned without prior authorization. The following contact information is for US and international customers residing

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EC150 CO2/H2O Open-Path Gas Analyzer Performing frequent zero-and-span procedures when the instrument is first put into use to determine the drift fro

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EC150 CO2/H2O Open-Path Gas Analyzer FIGURE 8-2. Replacing the desiccant/CO2 scrubber bottles 8.6 Factory Recalibration When the EC150 is manufactu

Strany 37 - or gain) for CO

EC150 CO2/H2O Open-Path Gas Analyzer 8.7 Troubleshooting 8.7.1 Data Loss During Precipitation Events In extremely humid environments or after a prec

Strany 38 - 8.2 Gas Analyzer Wicks

EC150 CO2/H2O Open-Path Gas Analyzer power supply cable is adequate gage and does not cause excessive voltage drop. • SONIC Status LED The SONIC sta

Strany 39 - 8.4 Zero and Span

EC150 CO2/H2O Open-Path Gas Analyzer If any of the remaining 22 flags are set, the master flag (BAD_DATA) is set as well, so that the user can filter

Strany 40 - Scrubber Bottles

EC150 CO2/H2O Open-Path Gas Analyzer TABLE 8-3. Diagnostic Flags and Suggested Actions Flag Number Flag Name Comments 3 Motor Speed Set when the

Strany 41 - 8.6 Factory Recalibration

EC150 CO2/H2O Open-Path Gas Analyzer TABLE 8-3. Diagnostic Flags and Suggested Actions Flag Number Flag Name Comments 10 Ambient Temperature Set w

Strany 42 - 8.7 Troubleshooting

EC150 CO2/H2O Open-Path Gas Analyzer TABLE 8-3. Diagnostic Flags and Suggested Actions Flag Number Flag Name Comments 18 CO2 Signal Strength Set i

Strany 43 - 8.7.4 Diagnostic Flags

EC150 CO2/H2O Open-Path Gas Analyzer 38

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Appendix A. EC150 Settings Operation of the EC150 can be customized by changing the values of the settings. Factory defaults will work well for mos

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Precautions DANGER — MANY HAZARDS ARE ASSOCIATED WITH INSTALLING, USING, MAINTAINING, AND WORKING ON OR AROUND TRIPODS, TOWERS, AND ANY ATTACHMENTS TO

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Appendix A. EC150 Settings A.2.1 SDM Address This parameter must be set to use SDM output from the EC100. See Section 4.6.2.1, SDM Output, for deta

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Appendix A. EC150 Settings The Unprompted Output setting is stored in non-volatile memory of the EC100 electronics. A.2.5 RS-485 Baud Rate If the un

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Appendix A. EC150 Settings The Fixed Temperature Value setting is stored in non-volatile memory of the EC100 electronics. A.2.10 Pressure Sensor Ther

Strany 49 - Appendix A. EC150 Settings

Appendix A. EC150 Settings FIGURE A-2. Location of EC100 enhanced barometer FIGURE A-3. Comparison of error in basic versus enhanced barometer ov

Strany 50 - A.2.3 Unprompted Output

Appendix A. EC150 Settings 3. The option of a third barometer choice is also available but is rarely used. A user-supplied barometer option can als

Strany 51 - A.2.8 Temperature Sensor

Appendix A. EC150 Settings A.2.12 Heater Control When set to automatic, this setting applies a voltage between 0 and 4600 mV to heaters near the opti

Strany 52 - A.2.10 Pressure Sensor

Appendix A. EC150 Settings FIGURE A-4. Main screen of ECMon FIGURE A-5. Setup screen in ECMon A-8

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Appendix A. EC150 Settings A.4 Device Configuration Utility The Device Configuration Utility software may also be used to change settings, although

Strany 54 - A.2.10.2 Pressure Offset

Appendix A. EC150 Settings The instruction syntax is: EC100Configure(Result,SDMAddress,C onfigCmd,DestSource) Result is a variable that contains a

Strany 55 - A.3 ECMon

Appendix A. EC150 Settings TABLE A-2. ConfigCmd Values for Setting and Retrieving Settings ConfigCmd Variable Setting Description (some settings lis

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Appendix A. EC150 Settings complete. To perform CO2 span, the CO2 Span Concentration setting (ConfigCmd 12) must be written to the proper value in p

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Appendix B. Filter Bandwidth and Time Delay The EC100 measures CO2 and H2O from the EC150 gas analyzer head. It will also measure wind velocity and

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Appendix B. Filter Bandwidth and Time Delay FIGURE B-2. Frequency response comparison of EC100 10-Hz bandwidth and a 50-msec moving average The ide

Strany 60 - A.6 Example CRBasic Program

Appendix B. Filter Bandwidth and Time Delay provides a constant time delay for all spectral components within each filter’s pass band. TABLE B-1. Fi

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Appendix B. Filter Bandwidth and Time Delay B-4

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Appendix C. Alternate EC100 Outputs C.1 USB or RS-485 Output C.1.1 Specifications Digital RS-485 Data type: ASCII Output Rateviii: 5 to 50 Hz

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Appendix C. Alternate EC100 Outputs TABLE C-1. USB and RS-485 Output Elements Data Element Description Units or comments 5 Sonic Diagnostic Flag 6

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Appendix C. Alternate EC100 Outputs //signature(), signature algorithm. // Standard signature is initialized with a seed of 0xaaaa. // Returns sign

Strany 65 - C.1 USB or RS-485 Output

Appendix C. Alternate EC100 Outputs TABLE C-2. Multipliers and Offsets for Analog Outputs Density (mg·m-3) Voltage Output Multiplier (mg·m-3 V-1) O

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Appendix D. Useful Equations The following table lists all the variables and constants used in the equations below: TABLE D-1. Variables and Consta

Strany 67 - C.2 Analog Output

Table of Contents PDF viewers: These page numbers refer to the printed version of this document. Use the PDF reader bookmarks tab for links to spec

Strany 68 - Analog Outputs

Appendix D. Useful Equations ( )15.2731000++−=TRMXPXPdvvdρ (D-4) ( )+−+=vvddXXTRPM1000115.273ρ (D-5) Dew Point from Molar

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Appendix D. Useful Equations Vapor Pressure from Molar Mixing Ratio and Water Vapor Density vvXPXe+=1000 (D-12) ( )vvMTRe15.273+=ρ (D-13) Equation

Strany 70 - 109.5102.300072.1 PTPf

Appendix D. Useful Equations D-4

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Appendix E. Material Safety Data Sheets (MSDS) E.1 Magnesium Perchlorate MSDS E-1

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Appendix E. Material Safety Data Sheets (MSDS) E-2

Strany 73 - Sheets (MSDS)

Appendix E. Material Safety Data Sheets (MSDS) E-3

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Appendix E. Material Safety Data Sheets (MSDS) E-4

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Appendix E. Material Safety Data Sheets (MSDS) E-5

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Appendix E. Material Safety Data Sheets (MSDS) E-6

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Appendix E. Material Safety Data Sheets (MSDS) E-7

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Table of Contents 7.2 Zero and Span Procedure ... 23 8. Maintenance and Troubleshooti

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Appendix E. Material Safety Data Sheets (MSDS) E.2 Decarbite MSDS E-8

Strany 80 - E.2 Decarbite MSDS

Appendix E. Material Safety Data Sheets (MSDS) E-9

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Appendix E. Material Safety Data Sheets (MSDS) E-10

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Appendix F. Packing Information F.1 EC150-GH Packing Information F-1

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Appendix F. Packing Information F.2 EC150-SH Packing Information F-2

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Campbell Scientific Companies Campbell Scientific, Inc. (CSI) 815 West 1800 North Logan, Utah 84321 UNITED STATES www.campbellsci.com • info@campbe

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Table of Contents D. Useful Equations .............. D-1 E. Material Safety Data Sheets (MSDS) .....

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