Knowledge (XXG)

Boguchany Dam

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agreed to develop the project jointly. Construction restarted in 2007. The first turbine was dispatched in 2008. The dam began to fill its reservoir in May 2012. The filling required relocating various small settlements and flooded the valleys of several tributaries, including the Koda river.
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The climatic conditions in the vicinity may be described as continental. Summers are short and warm, whilst winters are prolonged and severe. Annual average temperature ranges between −2.6 to −4.3 °С, with the average July high of +18.5 °С and the average January low of −27.4 °С.
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The downstream part of the river has a shallow channel too and stays unavailable for large seaworthy ships. According to various sources related to this subject, there are plans to build additional dams in the lower part of Angara river or, according to original
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Andrzej Jagus and Martyna Rzetala (2013): "Environmental Consequences of the Construction of the Boguchany Dam – Present Change and Projections". Proc. 13th International Multidisciplinary Scientific Geoconference (SGEM 2013), volume I.
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By August 2012 the first two turbines were installed. They later became operational on 15 October 2012. The third generator began operations later the same month and the fourth was commissioned on 13 January 2013.
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In 2012, the present design of all dams on the Angara river doesn't allow passage of any ships. Additionally the river was not navigable within the section between Boguchany Dam and
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intrusions. The valley's width barely exceeds 1 mile here, with rocky asymmetric bluffs overhanging the riverstream. The region is potentially seismic, with up to 7 degrees
1197: 424:. It has an installed capacity of 2,997 MW. Construction of the power plant was completed when a ninth and final generator was brought online in January 2015. 951: 1034: 1055: 440:
Preparatory works for the dam started in 1974, with construction of roads and a support point at the Koda seasonal settlement. The design was performed by
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below its join with Angara. The latter variant presumes construction of the largest hydro power plant in Russia with an annual production of over 40 TWh.
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Construction of the power station started in 1980 but was suspended in 1994 due to the lack of financing. Work on the project resumed in 2005 when
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upstream. It will flood the last section of the Angara channel, which was inaccessible for safe navigation because of shallow rapids in the river.
1171: 595: 591: 1161: 1166: 1207: 816:Готовность каменно-набросной плотины Богучанской ГЭС по укладке асфальтобетона к вводу первой очереди станции достигла 100 процентов 102: 41: 785: 1202: 1123: 657: 594:. After its completion in 2012-2013 the reservoir of the Boguchany Dam will be 375 km (233 mi) long and will reach 1067: 902: 818: 790: 516: 499:
with a capacity of 333 MW each. It generates 17.6 TWh of electricity per year. Turbines are manufactured by
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until 2010, later it was closed and its former location was included in concrete gravity section.
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The Boguchany Dam is a 2,587 m (8,488 ft) long dam of combined type, which includes
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G. K. Sukhanov and M. I. Levitskii "Angara Sequence of Hydroelectric Stations".
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area accounts for 831,000 km3. The river's supply is greatly dependent on the
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segment for power station building and 1,813 m (5,948 ft) long
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gorge, 444 km upstream from the river mouth, and are surrounded by
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Gigantic hydroelectric power station got handed over after 40 years
852:(in Russian). Центр по экологической оценке «Эколайн», Москва, 2006 28: 539:. The Angara flows in latitudinal direction here, cutting through 536: 452: 431: 515:, who also built it. Energy from the plant is partly used by the 952:"Power Machines pushes ahead with Boguchanskaya, La Yesca units" 603: 1112: 844: 488:
diaphragm throughout all its length. The dam was equipped with
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earthquake chance (1 in 5000 years possible recurrence).
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dams. The Angara's discharge amounts to 16,210 m³/s.
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Archived from 808: 806: 250:11,078 m/s (391,216 cu ft/s) 1131: 1117: 1109: 27: 18: 714:Downstream view of machine hall, May 2011 289:831,000 km (320,851 sq mi) 946: 944: 802: 617: 271:58.2 km (47,183,508 acre⋅ft) 1198:Hydroelectric power stations in Russia 663:One of the wicket gate blades for the 627:Rock-filled section of the dam in 2011 507:Boguchanskaya GES, a joint venture of 547:sedimentary massif interspersed with 279:2.31 km (1,872,747 acre⋅ft) 48: 7: 558:As it reaches the dam, The Angara's 436:One of the nine turbines of the dam. 495:The power station consists of nine 297:2,326 km (898 sq mi) 56:Location of Boguchany Dam in Russia 1066:Vasilyeva, Nataliya (2009-08-19). 14: 1033:. 15 October 2012. Archived from 726:Mockup tests of the dam spillways 586:Navigation conditions improvement 566:and superincumbent reservoirs of 1155: 786:List of power stations in Russia 768: 754: 740: 719: 707: 695: 683: 671: 656: 644: 632: 620: 472:774 m (2,539 ft) long 47: 40: 16:Dam in Kodinsk, Krasnoyarsk Krai 1015:10.5593/SGEM2013/BE5.V1/S20.051 882:Gidrotekhlcheskoe Stroltel'stvo 678:Rotor of one of nine generators 240:surface-stepped and penstocks, 1: 451:(then owner of RusHydro) and 302:Maximum water depth 905:. Kommersant. Archived from 208:2,587 m (8,488 ft) 791:Boguchany Aluminium Smelter 517:Boguchany Aluminium Smelter 1224: 702:Penstocks spillway section 1150: 639:Upstream view in May 2011 401: 347:65.5 m (215 ft) 35: 26: 1208:Dams on the Angara River 1104:Boguchany Dam Photostory 845: 690:Surface spillway section 232:212 m (696 ft) 903:"Lords of the Stations" 776:Renewable energy portal 369:Installed capacity 305:75 m (246 ft) 200:96 m (315 ft) 134:Construction began 1203:Dams completed in 2012 437: 379:Annual generation 247:Spillway capacity 220:20 m (66 ft) 435: 170:Type of dam 118:58.69472°N 99.14889°E 334:Commission date 276:Active capacity 470:reinforced concrete 285:Catchment area 268:Total capacity 263:Boguchany Reservoir 145:2012, complete 2015 114: /  1140:Hydroelectric dams 1037:on 25 January 2013 890:10.1007/BF02304338 821:2011-08-09 at the 651:Power station hall 438: 237:Spillway type 229:Rock-fill section: 217:Rock-fill section: 213:Width (crest) 123:58.69472; 99.14889 1185: 1184: 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132: 127: 99: 95: 92: 88: 85: 81: 78: 75: 71: 67: 65:Official name 63: 43: 34: 30: 25: 22:Boguchany Dam 20: 1176: 1144:Angara River 1075:. 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Retrieved 839: 833:, 2010/10/05 829: 813:(in Russian) 762:Water portal 600: 589: 580: 557: 526: 494: 467: 458: 446: 442:Hydroproject 439: 410:Angara River 393: 391: 362:Francis-type 228: 216: 191:Angara River 985:Datamonitor 564:Lake Baikal 560:river basin 464:Description 315:Operator(s) 150:Operator(s) 121: / 97:Coordinates 1192:Categories 1172:Ust-Ilimsk 1077:2009-08-20 1041:20 October 1031:HydroWorld 995:2009-08-20 966:2009-08-20 934:2009-08-20 913:2009-08-20 856:2012-02-15 797:References 576:Ust-Ilimsk 545:Ordovician 531:river, in 482:asphaltene 444:in 1976. 109:99°08′56″E 106:58°41′41″N 1177:Boguchany 490:ship lock 478:rock-fill 255:Reservoir 180:rock-fill 174:Combined 831:RusHydro 819:Archived 732:See also 541:Cambrian 509:RusHydro 486:concrete 373:2,997 MW 357:9 × 333 353:Turbines 324:RusHydro 319:RusHydro 187:Impounds 154:RusHydro 83:Location 1162:Irkutsk 1142:on the 614:Gallery 568:Irkutsk 549:diabase 533:Kodinsk 474:gravity 449:RAO UES 428:History 414:Kodinsk 408:on the 398:Russian 322:Owner: 260:Creates 176:gravity 87:Kodinsk 73:Country 1167:Bratsk 604:soviet 572:Bratsk 553:MSK-64 529:Angara 523:Locale 422:Russia 205:Length 197:Height 77:Russia 850:(PDF) 537:taiga 513:Rusal 453:Rusal 383:17.6 328:Rusal 158:Rusal 1043:2012 827:PJSC 574:and 543:and 511:and 392:The 337:2012 178:and 156:and 137:1974 1011:doi 886:doi 505:JSC 412:in 385:TWh 182:dam 1194:: 1070:. 1029:. 983:. 954:. 943:^ 825:, 805:^ 570:, 519:. 420:, 416:, 400:: 359:MW 89:, 1132:e 1125:t 1118:v 1080:. 1045:. 1013:: 998:. 969:. 937:. 916:. 888:: 859:. 484:- 396:( 326:/

Index


Boguchany Dam is located in Russia
Russia
Kodinsk
Krasnoyarsk Krai
58°41′41″N 99°08′56″E / 58.69472°N 99.14889°E / 58.69472; 99.14889
RusHydro
Rusal
Type of dam
gravity
rock-fill
Angara River
Catchment area
RusHydro
RusHydro
Rusal
Hydraulic head
Turbines
MW
Francis-type
Installed capacity
Annual generation
TWh
Russian
hydroelectric dam
Angara River
Kodinsk
Krasnoyarsk Krai
Russia

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