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1 – Introduction
1-4
© Teledyne TSS
DPN 402196 Issue 4.1
❐
Coil mounting components
❐
Cables you will need to interconnect the sub-sea components of the 440 System.
All sub-sea components of a new installation have a depth rating to the specifications listed in
. The main labels of the SEP and PSU also confirm the depth rating for these
components. Provided you exercise all proper maintenance procedures explained in
, the sub-sea components will retain their specified depth rating throughout
their working life.
section 2.3 "Sub-sea Components" on page 2-5
for descriptions of the main sub-sea
components of the 440 System.
During survey operations, the sub-sea installation measures target co-ordinates. These are:
❐
The vertical range to the target (VRT)
❐
The lateral offset of the target relative to the centre of the coil array (LAT).
❐
The altitude (ALT) of the coil array above the seabed and the depth of target cover (COV). To
make these measurements, the 440 System must receive altitude information from an altime-
ter. Alternatively, where the design of the ROV allows for a constant coil height, you may con-
figure the System with this information instead.
The SEP collects the information and performs the signal processing functions necessary for the SDC
and DeepView for Windows to generate accurate survey data using a powerful algorithm developed
especially for this application.
1.4 Principle of Operation
The Teledyne TSS 440 Pipe and Cable Survey System relies on the principle of ‘Pulse Induction’ to
detect the presence of a target and to measure the range of that target from each of three search coils.
Using an adaptive algorithm the System can locate, using either two or three search coils, the position
of the target.
for a full description of the operating theory.
The pulse induction method of target detection provides four major advantages over other systems
when used in pipe and cable survey applications:
1.
It detects any type of conductive material – including non-ferrous metals such as brass,
bronze, aluminium, and light alloys.
Note that the special characteristics of 316 stainless steel
do not allow the 440 System to detect it reliably
.
2.
Terrestrial magnetism has no effect upon the System operation or its measurement accuracy.
3.
The System can measure and electronically compensate for the local conductive effects of the
ROV, regardless of the ROV heading.
4.
Simplified operating procedures built into the System give it a high degree of measurement
stability.
1.5 Warranty
Teledyne TSS Ltd warrants the 440 Pipe and Cable Survey System to be free of defects in materials or
workmanship for 12 months beginning on the date when the equipment was shipped from the Teledyne
TSS Ltd factory.
Содержание 440
Страница 12: ...List of Figures x Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 16: ...Revision History xiv Teledyne TSS DPN 402196 Issue 4 1 1 0 Feb 19 2003 First Issue Issue No Date Details ...
Страница 18: ...Glossary xvi Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 24: ...1 Introduction 1 6 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 32: ...2 System Overview 2 8 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 66: ...4 Electrical Installation 4 20 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 88: ...5 Operating Software 5 22 Teledyne TSS DPN 402196 Issue 4 1 Figure 5 10 Altimeter Test ...
Страница 144: ...6 Operating Procedure 6 40 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 154: ...7 Operational Considerations 7 10 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 164: ...8 System Specifications 8 10 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 203: ...10 System Drawings DPN 402196 Issue 4 1 Teledyne TSS 10 17 Figure 10 15 SDC10 Dimensions ...
Страница 204: ...10 System Drawings 10 18 Teledyne TSS DPN 402196 Issue 4 1 Figure 10 16 400604 1 Power Supply Chassis Assembly ...
Страница 205: ...10 System Drawings DPN 402196 Issue 4 1 Teledyne TSS 10 19 Figure 10 17 400667 1 Main Chassis Assembly ...
Страница 206: ...10 System Drawings 10 20 Teledyne TSS DPN 402196 Issue 4 1 Figure 10 18 400667 2 Main Chassis Assembly ...
Страница 209: ...10 System Drawings DPN 402196 Issue 4 1 Teledyne TSS 10 23 Figure 10 21 400654 1 PSU Filter Assembly ...
Страница 210: ...10 System Drawings 10 24 Teledyne TSS DPN 402196 Issue 4 1 Figure 10 22 490232 1 Processor Pod Assembly ...
Страница 211: ...10 System Drawings DPN 402196 Issue 4 1 Teledyne TSS 10 25 Figure 10 23 490228 1 Power Supply Pod Assembly 110v version ...
Страница 212: ...10 System Drawings 10 26 Teledyne TSS DPN 402196 Issue 4 1 Figure 10 24 500045 1 Coil Mounting Frame ...
Страница 213: ...10 System Drawings DPN 402196 Issue 4 1 Teledyne TSS 10 27 Figure 10 25 B930892 1 Coil Assembly ...
Страница 214: ...10 System Drawings 10 28 Teledyne TSS DPN 402196 Issue 4 1 Figure 10 26 601004 1 Coil Cable Assembly ...
Страница 215: ...10 System Drawings DPN 402196 Issue 4 1 Teledyne TSS 10 29 Figure 10 27 B930473 1 PSU to ROV PWR COMMS Cable 3 0m ...
Страница 230: ...A Operating Theory A 12 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 242: ...B Options B 12 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 244: ...C Altimeter C 2 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 246: ...D Reference D 2 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 248: ...D Reference D 4 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 250: ...D Reference D 6 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 252: ...D Reference D 8 Teledyne TSS DPN 402196 Issue 4 1 ...
Страница 254: ...D Reference D 10 Teledyne TSS DPN 402196 Issue 4 1 ...