Maxon MODMAX MM-6280IND Especificaciones

Busca en linea o descarga Especificaciones para Redes Maxon MODMAX MM-6280IND. Maxon MODMAX MM-6280IND Specifications Manual de usuario

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Indice de contenidos

Pagina 1

Aaron Hawdon, Rex Keen and Jamie VleeshouwerCSIRO Land and Water Science Report 24/09 April 2009 A Remote Automated Water Quality Stream

Pagina 2

A Remote Automated Water Quality Stream Gauging System Design 4 42.1.8. Telemetry The telemetry system uses the mobile phone network where availab

Pagina 3 - ACKNOWLEDGEMENTS

A Remote Automated Water Quality Stream Gauging System Design 5 5 Figure 1 Examples of small platform design (a) at Thornton Creek and large platfo

Pagina 4 - EXECUTIVE SUMMARY

A Remote Automated Water Quality Stream Gauging System Design 6 6Ventilation is provided with two weather resistant vents located on either side of

Pagina 5 - CONTENTS

A Remote Automated Water Quality Stream Gauging System Design 7 7 The standard mount is comprised of three components, a forward facing mount for t

Pagina 6

A Remote Automated Water Quality Stream Gauging System Design 8 8 Figure 3 Example of a soft substrate installation. 3.1.2. Hard substrate A shall

Pagina 7 - 1. INTRODUCTION

A Remote Automated Water Quality Stream Gauging System Design 9 9 Figure 4 Starflow velocity probe mount (a) and turbidity probe mount (b). The tur

Pagina 8 - 2.1. Electronic components

A Remote Automated Water Quality Stream Gauging System Design 10 10 Figure 5 B&R enclosure located to the rear of the pier to store excess cabl

Pagina 9 - 2.1.7. Power system

A Remote Automated Water Quality Stream Gauging System Design 11 11 Figure 6 Pipe installation at Keelbottom Creek (left) and Scrubby Creek (righ

Pagina 10 - 2.2. Infrastructure

A Remote Automated Water Quality Stream Gauging System Design 12 12The studs can be tightened after the adhesive has cured. Loading time is approxi

Pagina 11 - Large platform

A Remote Automated Water Quality Stream Gauging System Design 13 13A length of light 15 mm steel pipe is attached to the stand to protect the cable

Pagina 12 - 2.2.5. Sensor mount

CSIRO Land and Water Science Report series ISSN: 1834-6618 Copyright and Disclaimer © 2008 CSIRO To the extent permitted by law, all rights are re

Pagina 13 - 3.1. In-stream

A Remote Automated Water Quality Stream Gauging System Design 14 14 Figure 7 Example of logger enclosure setup from Myuna station. Silica gel desi

Pagina 14 - 3.1.2. Hard substrate

A Remote Automated Water Quality Stream Gauging System Design 15 15 Figure 8 Flow chart of monitoring station program. The program actually uses

Pagina 15 - 3.3. Routing cable

A Remote Automated Water Quality Stream Gauging System Design 16 164.1. Initialisation On initialisation, the program loads the variables used to c

Pagina 16

A Remote Automated Water Quality Stream Gauging System Design 17 17 If a pump is installed at the site, the pump is turned on for a preset period o

Pagina 17 - 3.4. Platform assembly

A Remote Automated Water Quality Stream Gauging System Design 18 185. DATA RETRIEVAL 5.1. Automatic downloading Data is automatically downloaded

Pagina 18 - 3.5. Rain gauge stand

A Remote Automated Water Quality Stream Gauging System Design 19 19 Figure 10 Example of a Data Report page.

Pagina 19 - 3.6. Power system

A Remote Automated Water Quality Stream Gauging System Design 20 206. SAMPLE RETRIEVAL 6.1. Collection When sample bottles are retrieved from a s

Pagina 20 - 4. SYSTEM PROGRAMMING

A Remote Automated Water Quality Stream Gauging System Design 21 217. CONCLUSION All installations continue to provide the most detailed water qua

Pagina 21

A Remote Automated Water Quality Stream Gauging System Design 22 22 8. APPENDICES Appendix 1 – Modem Setup Wavecom Fastrack GSM modem 1. Enter th

Pagina 22 - 4.4. Sample collection

A Remote Automated Water Quality Stream Gauging System Design 23 2311. Check all codes are entered correctly (Should be exactly the same as the cod

Pagina 23 - 4.4.3. Sample identification

A Remote Automated Water Quality Stream Gauging System Design iii iiiACKNOWLEDGEMENTS The authors would like to acknowledge funding from Meat and L

Pagina 24 - 5.2. Data processing

A Remote Automated Water Quality Stream Gauging System Design 24 24Appendix 2 – Design plans

Pagina 25

A Remote Automated Water Quality Stream Gauging System Design 25 25

Pagina 26 - 6.2. Submission

A Remote Automated Water Quality Stream Gauging System Design 26 26

Pagina 27 - 7. CONCLUSION

A Remote Automated Water Quality Stream Gauging System Design 27 27

Pagina 28 - Appendix 1 – Modem Setup

A Remote Automated Water Quality Stream Gauging System Design 28 28

Pagina 29

A Remote Automated Water Quality Stream Gauging System Design 29 29

Pagina 30 - Appendix 2 – Design plans

A Remote Automated Water Quality Stream Gauging System Design 30 30

Pagina 31

A Remote Automated Water Quality Stream Gauging System Design 31 31

Pagina 32

A Remote Automated Water Quality Stream Gauging System Design 32 32

Pagina 33

A Remote Automated Water Quality Stream Gauging System Design 33 33

Pagina 34

A Remote Automated Water Quality Stream Gauging System Design iv iv EXECUTIVE SUMMARY The decline in the quality of water exported into the Great B

Pagina 35

A Remote Automated Water Quality Stream Gauging System Design 34 34

Pagina 36

A Remote Automated Water Quality Stream Gauging System Design 35 35 Appendix 3 - Wiring Diagram

Pagina 37

A Remote Automated Water Quality Stream Gauging System Design 36 36Appendix 4 - Stream Gauge State Diagram

Pagina 38

A Remote Automated Water Quality Stream Gauging System Design 37 37 9. REFERENCES Reports Bartley, R., Hawdon, A. and Keen, R. (2007). Sediment and

Pagina 39

A Remote Automated Water Quality Stream Gauging System Design 38 38Technical Documents CR10x manual http://www.campbellsci.com.au/documents/manuals

Pagina 40

A Remote Automated Water Quality Stream Gauging System Design 39 39

Pagina 41 - Appendix 3 - Wiring Diagram

A Remote Automated Water Quality Stream Gauging System Design v vCONTENTS 1. Introduction ...

Pagina 42

A Remote Automated Water Quality Stream Gauging System Design vi vi7. Conclusion...

Pagina 43 - Reports

A Remote Automated Water Quality Stream Gauging System Design Page 1 1. INTRODUCTION The Burdekin River has the second largest catchment (~130,000

Pagina 44 - Technical Documents

A Remote Automated Water Quality Stream Gauging System Design 2 2 2. SYSTEM OVERVIEW The three principal elements that comprise the standard str

Pagina 45

A Remote Automated Water Quality Stream Gauging System Design 3 3probes can be customised to measure up to 3000NTU. In the standard gauging system

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