ACCC_Conductors Taihan

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Information about ACCC_Conductors Taihan
Product-Training-Manuals

Published on January 5, 2017

Author: HikmatAyer

Source: authorstream.com

slide 1: The World’s Most Efficient High Capacity Transmission Conductor • Twice the Capacity of ACSR • 3040 Reduction in Line Losses • Proven Reliability Worldwide ACCC conductor slide 2: ACCC conductor ACCC Conductor advantages ▣ Ampacity Carry twice the current of a conventional conductor. Lighter core allows the use of 28 more aluminum without a weight penalty. ▣ Reduced Line Loss Under equal load conditions reduces line losses by 30 to 40 compared to conductors of the same diameter and weight. ▣ Longer Spans Greater strength effective self-damping and superior fatigue resistance allows increased spans between fewer or shorter structures. ▣ Strength/Weight Hybrid Carbon Composite Core is stronger and lighter than steel core. Overview of ACCC Conductor The Aluminum Conductor Composite CoreACCC conductor consists of a hybrid carbon and glass fiber composite core which utilizes a high-temperature epoxy resin matrix to bind hundreds of thousands of individual fibers into a unified load-bearing tensile member. The central carbon fiber core is surrounded by high-grade boron-free glass fibers to improve flexibility and toughness while preventing galvanic corrosion between the carbon fibers and the aluminum strands. The composite core is surrounded by aluminum strands are generally fully annealed aluminum and trapezoidal in shape to provide the greatest conductivity and lowest possible electrical resistance for any given conductor diameter. The ACCC conductor is rated for continuous operation at up to 180 ℃ 200℃ short-term emergency and operates significantly cooler than round wire conductors of similar diameter and weight under equal load conditions due to its increased aluminum content and the higher conductivity aluminum. high strength hybrid composite core fully annealed aluminum trapezoidal wires slide 3: ACCC conductor ACCC Conductor Performance The ACCC Conductors combine efficiency and increased current carrying capacity to deliver more power with less losses based on equal conductor size and weight. Summary of ACCC Solution The ACCC conductors are a technology solution to many of the challenges facing the utility industry today 1. Replacing existing conductors with ACCC on a “brownfield” development can double capacity reducing congestion and improving system reliability. 2. Utilizing ACCC conductors on a “greenfield” development can produce very significant capital cost savings and is the most visual / environmental solution. ACCC conductors are 30 40 more energy efficient leading to very significant CO 2 reductions. 3. ACCC conductors have other qualities including greater corrosion resistance lighter weight higher strength vibration dampening and low thermal expansion that offer functional benefits and reliability. slide 4: ACCC conductor ACCC Mechanical Specifications Electrical Specifications Aluminum Diameter Weight Conductor Rated Strength 1 Nominal resistance AC current rating 2 Nominal cross- sectional area Layers Number of wires Conductor Core Total Aluminum DC 20℃ AC 180℃ 100℃ 180℃ ASTM Size ㎟ - ㎜ ㎜ ㎏/㎞ ㎏/㎞ kN ohm/㎞ ohm/㎞ A A PASADENA 154.4 2 16 15.65 5.97 478 424.5 68.9 0.1793 0.2968 528 778 LINNET 218.1 2 16 18.29 5.97 655 601.3 72.5 0.1277 0.2104 654 968 ORIOLE 222.3 2 16 18.82 7.11 689 613.0 98.3 0.1255 0.2065 665 986 WASO 230.1 2 16 19.56 7.75 721 634.7 114.8 0.1212 0.2009 683 1012 LAREDO 268.5 2 16 20.50 7.11 816 740.1 101.0 0.1038 0.1721 747 1109 IRVING 308.8 2 20 22.40 8.76 965 851.8 147.7 0.0903 0.1499 820 1222 HAWK 309.8 2 16 21.79 7.11 930 853.8 103.2 0.0900 0.1452 823 1231 DOVE 361.6 2 20 23.55 7.75 1083 996.5 122.3 0.0771 0.1273 902 1346 GROSBEAK 416.2 2 20 25.15 8.13 1245 1147 135.2 0.0672 0.1116 981 1468 LUBBOCK 458.0 2 20 26.42 8.76 1375 1262.2 156.1 0.0608 0.1012 1045 1566 GALVESTON 512.5 3 36 27.69 8.76 1525 1412.2 158.8 0.0544 0.0905 1119 1681 DRAKE 519.7 2 22 28.14 9.53 1565 1432.6 183.3 0.0536 0.0888 1134 1706 CURLEW 523.4 2 22 28.96 10.54 1610 1446.2 218.0 0.0536 0.0887 1142 1722 PLANO 536.9 3 36 28.63 8.76 1597 1484 160.1 0.0522 0.0870 1150 1733 CORPUS CHRISTI 558.9 3 36 29.11 8.76 1656 1543.3 161.5 0.0501 0.0836 1179 1777 ARLINGTON 583.2 3 36 29.90 9.53 1745 1612.6 186.4 0.0480 0.0801 1213 1830 CARDINAL 619.1 3 36 30.43 8.76 1823 1710.2 165.0 0.0452 0.0750 1258 1902 FORT WORTH 658.9 3 36 31.50 9.53 1952 1819.6 190.8 0.0425 0.0712 1305 1975 EL PASO 684.0 3 36 31.80 8.76 2001 1888.2 168.6 0.0409 0.0674 1332 2018 BEAUMONT 723.9 3 36 32.87 9.53 2136 2003.6 194.4 0.0387 0.0650 1381 2096 SAN ANTONIO 747.4 3 36 33.40 9.78 2212 2068.6 204.2 0.0375 0.0609 1432 2176 BITTERN 801.4 3 36 34.16 8.76 2331 2217.4 175.3 0.0352 0.0589 1465 2229 DALLAS 909.5 3 36 36.88 9.78 2670 2527.2 213.1 0.0309 0.0520 1585 2430 HOUSTON 976.7 3 46 38.25 10.54 2878 2714.1 243.3 0.0285 0.0483 1660 2554 LAPWING 987.6 4 54 38.20 9.78 2887 2743.7 217.5 0.0285 0.0485 1660 2547 FALCON 1036.3 4 56 39.24 10.54 3043 2879.6 246.4 0.0271 0.0739 1719 2639 CHUKAR 1135.8 4 56 40.74 10.03 3303 3155.3 234.4 0.0247 0.0423 1808 2785 BLUEBIRD 1388.7 4 68 44.75 10.54 4022 3858.0 266.4 0.0203 0.0356 2010 3130 ▣ ASTM Size 1 Strength at ambient temperature 2 Conditions: 0.61m/s wind 0m Elevation 0.5 Emis. 0.5 absorp. 40℃ Ambient temperature 1033W/sq.m sun radiation 3 Maximum continuous operating temperature of ACCC is 180℃ and a maximum emergency temperature of 200℃ slide 5: ACCC conductor ACCC Mechanical Specifications Electrical Specifications Aluminum Diameter Weight Conductor Rated Strength 1 Nominal resistance AC current rating 2 Nominal cross- sectional area Layers Number of wires Conductor Core Total Aluminum DC 20℃ AC 180℃ 100℃ 180℃ International Size ㎟ - ㎜ ㎜ ㎏/㎞ ㎏/㎞ kN ohm/㎞ ohm/㎞ A A HELSINKI 150.6 2 16 15.65 5.97 471.2 417.2 68.9 0.1862 0.3064 519 765 COPENHAGEN 219.9 2 16 18.29 5.97 661 607 72.8 0.1272 0.2094 656 971 REYKJAVIK 223.1 2 16 18.82 7.11 693.6 617.6 98.3 0.1256 0.2067 665 986 MONTE CARLO 228.5 2 28 20.78 10.54 798.7 634.7 201.2 0.1230 0.2024 691 1027 GLASGOW 236.7 2 16 19.53 7.75 731.3 645.3 115.0 0.1184 0.1949 692 1027 CASABLANCA 273.6 2 16 20.50 7.11 834.4 758.4 101.1 0.1024 0.1686 754 1120 OSLO 313.8 2 20 22.40 8.76 980.2 867.2 147.8 0.0893 0.1469 828 1234 LISBON 315.5 2 16 21.79 7.11 947.6 871.6 103.5 0.0887 0.1461 823 1227 AMSTERDAM 367.4 2 20 23.55 7.75 1101.6 1015.6 122.4 0.0762 0.1256 907 1355 BRUSSELS 421.4 2 20 25.15 8.13 1264.8 1166.8 135.7 0.0666 0.1099 987 1479 STOCKHOLM2L 463.3 2 22 26.40 8.76 1394.3 1281.3 156.2 0.0605 0.0999 1049 1576 STOCKHOLM3L 453.7 3 36 26.40 8.76 1367.8 1254.8 155.7 0.0617 0.1019 1039 1560 WARSAW 507.5 3 36 27.72 8.76 1519.8 1406.8 158.7 0.0553 0.0914 1112 1673 DUBLIN 524.5 2 36 28.14 9.53 1583.0 1451.0 183.3 0.0534 0.0883 1136 1711 HAMBURG 546.4 3 36 28.62 8.76 1626.9 1513.9 160.9 0.0514 0.0850 1163 1752 KOLKATA 543.5 3 34 28.62 9.53 1643.2 1511.2 184.0 0.0517 0.0855 1160 1748 MILAN 567.7 3 36 29.10 8.76 1686.1 1573.1 162.1 0.0494 0.0818 1191 1797 ROME 592.5 3 36 29.89 9.53 1773.8 1641.8 187.1 0.0474 0.0785 1225 1850 VIENNA 629.2 3 36 30.42 8.76 1852.3 1739.3 165.5 0.0445 0.0738 1269 1918 BUDAPEST 668.3 3 36 31.50 9.53 1983.9 1851.9 191.4 0.0420 0.0697 1318 1996 PRAGUE 690.7 3 36 31.77 8.76 2029.8 1916.8 169.0 0.0407 0.0676 1340 2032 MUMBAI 685.4 3 38 31.77 9.53 2034.9 1902.9 192.0 0.0410 0.0681 1336 2025 MUNICH 733.2 3 36 32.85 9.53 2169.5 2037.5 195.0 0.0384 0.0638 1392 2113 LONDON 759.0 3 36 33.40 9.78 2248.1 2105.1 204.8 0.0370 0.0616 1424 2164 PARIS 813.7 3 36 34.16 8.76 2365.4 2252.4 175.9 0.0345 0.0576 1480 2254 BORDEAUX 880.9 3 36 35.76 10.54 2766.2 2602.2 237.9 0.0318 0.0531 1560 2381 ANTWERP 944.9 3 36 36.85 9.78 2759.1 2616.1 215.2 0.0297 0.0498 1623 2483 BERIN MADRID-ICE 1006.5 3 46 38.20 10.54 2948.8 2784.8 245.0 0.0278 0.0467 1692 2594 MADRID 1013.1 4 54 38.20 9.78 2947.8 2804.8 219.1 0.0276 0.0464 1696 2602 ATHENS 1409.7 4 68 44.75 10.54 4065.7 3901.7 267.6 0.0199 0.0343 2050 3189 ▣ International Size 1 Strength at ambient temperature 2 Conditions: 0.61m/s wind 0m Elevation 0.5 Emis. 0.5 absorp. 40℃ Ambient temperature 1033W/sq.m sun radiation 3 Maximum continuous operating temperature of ACCC is 180℃ and a maximum emergency temperature of 200℃ slide 6: One of world’s largest cable manufacturing plants currently built to suit the global demand in the field of Energy and Telecommunications. It is also a nation’s leading environment-friendly plant that can not only manufacture wide of power cables from MV/LV to EHV but is also able to produce all sort of HTLS telecommunication cables and industrial products at all levels. Through more than 60 years of its core business in the field of power and telecommunication cables THIHAN is gearing up to be a global leading solution provider.

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