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Cathodic Protection - index
Cathodic Protection - ufc_3_570_02a0001
Unified Facilities Criteria (UFC) - ufc_3_570_02a0002
Foreword - ufc_3_570_02a0003
Chapter 1 Introduction to Cathodic Protection
Figure 1-2 (a) Galvanic and (b) Impressed Current Systems for Cathodic Protection
Chapter 2 Cathodic Protection Design
Table 2-2. Typical current density requirements for cathodic protection of uncoated steel
Figure 2-1. Design Sequence for Cathodic Protection Systems
Table 2-3. Weights and dimensions of selected high-potential magnesium-alloy anodes for use in soil or water
Impressed current cathodic protection system design
Table 2-4. Weights and dimensions of selected circular high silicon chromium-bearing cast iron anodes
Calculate rectifier voltage
Appendix B Current Requirement Testing - ufc_3_570_02a0016
Appendix B Current Requirement Testing - ufc_3_570_02a0017
Appendix C Examples of Galvanic Cathodic Protection Design
Table C-1. Outside area of liquid fuel pipes
Table C-2. Requirements for anode spacing
Figure C-2. Galvanic Anode Cathodic Protection for Underground Steel Storage Tank
Figure C-3. Layout of gas Piping in Residential District
Table C-3. Dimensions for finding outside area of pipe
Table C-4. Galvanic anode size factor (f)
Table C-6. Dimensions for finding anode division
Appendix D Examples of Impressed Current Cathodic Protection Design
Design data - ufc_3_570_02a0027
Computations - ufc_3_570_02a0028
Figure D-2. Impressed Current Cathodic Protection for Heating Conduit System
Table D-1. Dimensions for finding steam conduit area: heat distribution system
Table D-3. Conduit area: heat distribution system
Table D-4. Anode division: heat distribution system
Computations - ufc_3_570_02a0033
Figure D-4. Fringe Factor for Stub Anodes
Figure D-5. Dimension for an Elevated Steel Water Tank
Design data - ufc_3_570_02a0036
Figure D-6. Cathodic Protection for Tanks Using rigid-Mounted
Figure D-7. Segmented Elevated Tank for Area Calculations
Computations - ufc_3_570_02a0039
Figure D-8. Anode Spacing for Elevated Steel Water Tank
Table D-.5. Technical data--commonly used HSCBCI anodes
Figure D-9. Anode Suspension Arrangement for Elevated Steel Water Tank
Figure D-10. Equipment Diameter Factor for Anodes in a Circle in Water Tank
Find the current division between main and stub anodes
Select the stub anodes
Choose a stub anode circuit variable resistor
Find the voltage drop in the riser anode circuit
Select the riser anode circuit variable resistor
Figure D-11. Elevated Steel Water Tank Showing Rectifier and Anode Arrangement
Figure D-12. Hand Hole and Anode Suspension Detail for Elevated Water Tank
Discussion of design
Appendix E Specifications for Ceramic Anode
Dissolution rate
Appendix F Rectifier Current Interference
Figure F-2 Cathodic Interference Testing
After the permanent test station has been installed
Bond installation
Bibliography - ufc_3_570_02a0058
Glossary - ufc_3_570_02a0059
Glossary - Cont'd - ufc_3_570_02a0060