Revision as of 17:31, 16 January 2016 editThe Anomebot2 (talk | contribs)Bots, Extended confirmed users1,043,658 edits Adding geodata: {{coord missing|Armenia}}← Previous edit | Revision as of 20:32, 6 March 2016 edit undoBeagel (talk | contribs)Autopatrolled, Extended confirmed users, Pending changes reviewers, Rollbackers90,411 edits merged from Spandaryan Hydro Power Plant, Spandaryan Reservoir, Shamb Hydroelectric Power Station and Tatev Hydroelectric Power StationTag: nowiki addedNext edit → | ||
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| name = Vorotan Cascade | | name = Vorotan Cascade | ||
| name_official = | | name_official = | ||
| image = | | image = {{Location map+|Armenia | ||
| |
|caption = | ||
|float = right | |||
| image_caption = Vorotan Complex's scheme | |||
| |
|places = | ||
{{Location map~|Armenia | |||
| |
|label = Tatev | ||
|position = bottom | |||
| location_map_caption = | |||
|lat_deg=39|lat_min=25|lat_sec=39 | |||
| location_map_alt = | |||
|lon_deg=46|lon_min=22|lon_sec=15 | |||
| lat_d = | |||
|type = landmark | |||
|region = AM | |||
|name = Tatev | |||
}} | |||
| long_d = | |||
{{Location map~|Armenia | |||
| long_m = | |||
|label = Shamb | |||
|position = top | |||
|lat_deg=39|lat_min=26|lat_sec=13 | |||
| coordinates_type = type:landmark | |||
|lon_deg=46|lon_min=09|lon_sec=00 | |||
| coordinates_display = inline,title | |||
|type = landmark | |||
|region = AM | |||
|name = Shamb | |||
}} | |||
{{Location map~|Armenia | |||
|label = Spandaryan | |||
|position = top | |||
|lat_deg=39|lat_min=38|lat_sec=59 | |||
|lon_deg=45|lon_min=51|lon_sec=11 | |||
|type = landmark | |||
|region = AM | |||
|name = Spandaryan | |||
}} | |||
}} | |||
| image_caption = Locations of the Vorotan Cascade power stations in Armenia | |||
| country = ] | | country = ] | ||
| location = | | location = ] | ||
| purpose = ]<br/>Irrigation | | purpose = ]<br/>Irrigation | ||
| status = O | | status = O | ||
| construction_began = 1961 | | construction_began = 1961 | ||
| |
| cost = | ||
| owner = State of Armenia | |||
| operator = The Vorotan Cascade of Hydroelectric Power Plants CJSC (parent: ContourGlobal Hydrocascade) | |||
| website = {{url|www.vorotancascade.am}} | |||
| extra = | |||
{{Infobox dam | |||
| name = Spandaryan HPP | |||
| lat_d = 39 | |||
| lat_m = 39 | |||
| lat_s = 00 | |||
| lat_NS = N | |||
| long_d = 45 | |||
| long_m = 51 | |||
| long_s = 00 | |||
| long_EW = E | |||
| coordinates_type = type:landmark | |||
| coordinates_display = inline | |||
| location = ] | |||
| status = O | |||
| construction_began = | |||
| opening = 1989 | |||
| demolished = | | demolished = | ||
| cost = | | cost = | ||
| |
| dam_type = Embankment type, mixed rockfill and earthfill | ||
| |
| dam_crosses = | ||
| dam_height_foundation= {{convert|89|m|abr=on}} | |||
| dam_type = | |||
| dam_height_thalweg = {{convert|83|m|abr=on}} | |||
| dam_length = {{convert|315|m|abr=on}} | |||
| dam_elevation_crest = | |||
| dam_width_crest = {{convert|10|m|abr=on}} | |||
| dam_width_base = | |||
| dam_volume = | |||
| spillway_count = | |||
| spillway_type = | |||
| spillway_capacity = | |||
| res_name = ] | |||
| res_capacity_total = {{convert|257000000|m3|acre feet|abr=on}} | |||
| res_capacity_active = {{convert|218000000|m3|acre feet|abr=on}} | |||
| res_capacity_inactive= | |||
| res_surface = {{convert|10.8|km2|abbr=on}} | |||
| res_max_length = {{convert|7|km|abbr=on}} | |||
| res_max_width = {{convert|3|km|abbr=on}} | |||
| res_max_depth = {{convert|73|m|abbr=on}} | |||
| res_elevation = {{convert|2060|m|abbr=on}} | |||
| res_tidal_range = | |||
| plant_commission = | |||
| plant_decommission = | |||
| plant_type = | |||
| plant_hydraulic_head = | |||
| plant_turbines = 2 X 38 MW | |||
| plant_capacity = 76 MW | |||
| plant_capacity_factor= | |||
| plant_annual_gen = 210 GWh | |||
}} | |||
{{Infobox dam | |||
| name = Shamb HPP | |||
| lat_d = 39 | |||
| lat_m = 26 | |||
| lat_s = 13 | |||
| lat_NS = N | |||
| long_d = 46 | |||
| long_m = 09 | |||
| long_s = 00 | |||
| long_EW = E | |||
| coordinates_type = region:AM_type:landmark_source:kolossus-nowiki | |||
| coordinates_display = inline | |||
| location = ] | |||
| status = O | |||
| construction_began = | |||
| opening = 1978 | |||
| cost = | |||
| dam_type = Concrete spillway dam (Angeghakot Dam)<br/>Embankment dam, sandy gravel and soil (Tolors Dam) | |||
| dam_crosses = | | dam_crosses = | ||
| dam_height_foundation= | | dam_height_foundation= | ||
| dam_height_thalweg = | | dam_height_thalweg = {{convert|23.4|m|abbr=on}} (Angeghakot Dam)<br/>{{convert|69|m|abbr=on}} (Tolors Dam) | ||
| dam_length = | | dam_length = {{convert|188|m|abbr=on}} (Tolors Dam) | ||
| dam_elevation_crest = | | dam_elevation_crest = | ||
| dam_width_crest = | | dam_width_crest = | ||
Line 43: | Line 124: | ||
| spillway_type = | | spillway_type = | ||
| spillway_capacity = | | spillway_capacity = | ||
| res_name = | | res_name = Angeghakot Reservoir<br/>Tolors Reservoir | ||
| res_capacity_total = {{convert|3400000|m3|acre feet}} (Angeghakot Reservoir)<br/>{{convert|96000000|m3|acre feet|abbr=on}} (Tolors Reservoir) | |||
| res_capacity_total = | |||
| res_capacity_active = | | res_capacity_active = {{convert|80000000|m3|acre feet|abbr=on}} (Tolors Reservoir) | ||
| res_capacity_inactive= | | res_capacity_inactive= | ||
| res_catchment = | | res_catchment = | ||
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| res_max_width = | | res_max_width = | ||
| res_max_depth = | | res_max_depth = | ||
| res_elevation = | | res_elevation = {{convert|1651.1|m|abbr=on}} | ||
| res_tidal_range = | | res_tidal_range = | ||
| plant_operator = | |||
| plant_commission = | | plant_commission = | ||
| plant_decommission = | | plant_decommission = | ||
| plant_type = | | plant_type = | ||
| plant_hydraulic_head = | | plant_hydraulic_head = | ||
| plant_turbines = | | plant_turbines = 2 X 85.5 MW | ||
| plant_capacity = |
| plant_capacity = 171 MW | ||
| plant_capacity_factor= | | plant_capacity_factor= | ||
| plant_annual_gen = |
| plant_annual_gen = 320 GWh | ||
| website = {{url|www.vorotancascade.am}} | |||
| extra = | |||
}} | }} | ||
{{Infobox dam | |||
] | |||
| name = Tatev HPP | |||
| lat_d = 39 | |||
The '''Vorotan Complex''' ({{lang-hy|Որոտան}}) is a cascade on the ] in the region of ], ]. It is built to produce ] and provide irrigation water. The complex consists of three hydroelectric power plants and four reservoirs. It is one of the main ] complexes in Armenia. | |||
| lat_m = 25 | |||
| lat_s = 39 | |||
| lat_NS = N | |||
| long_d = 46 | |||
| long_m = 22 | |||
| long_s = 15 | |||
| long_EW = E | |||
| coordinates_type = type:landmark_region:AM | |||
| coordinates_display = inline | |||
| location = ] | |||
| status = O | |||
| construction_began = | |||
| opening = 1970 | |||
| demolished = | |||
| cost = | |||
| dam_type = Embankment type, sandy gravel | |||
| dam_crosses = | |||
| dam_height_foundation= | |||
| dam_height_thalweg = {{convert|41|m|abr=on}} | |||
| dam_length = {{convert|107|m|abr=on}} | |||
| dam_elevation_crest = | |||
| dam_width_crest = | |||
| dam_width_base = | |||
| dam_volume = | |||
| spillway_count = | |||
| spillway_type = | |||
| spillway_capacity = {{convert|312|m3/s|abr=on}} | |||
| res_name = Tatev Reservoir | |||
| res_capacity_total = {{convert|13600000|m3|acre feet|abr=on}} | |||
| res_capacity_active = {{convert|1800000|m3|acre feet|abr=on}} | |||
| res_capacity_inactive= | |||
| res_catchment = | |||
| res_surface = | |||
| res_max_length = | |||
| res_max_width = | |||
| res_max_depth = | |||
| res_elevation = {{convert|1335.4|m|abbr=on}} | |||
| res_tidal_range = | |||
| plant_commission = | |||
| plant_decommission = | |||
| plant_type = | |||
| plant_hydraulic_head = {{convert|568.8|m|abbr=on}} | |||
| plant_turbines = 3 x 52.4 MW ]s | |||
| plant_capacity = 157.2 MW | |||
| plant_capacity_factor= | |||
| plant_annual_gen = 670 GWh | |||
}} | |||
}} | |||
The '''Vorotan Cascade''' is a cascade on the ] in ], ]. It was built to produce ] and provide irrigation water. The Vorotan Cascade consists of three hydroelectric power plants and five reservoirs. It is one of the main ] complexes in Armenia.<ref name=minenergy> | |||
{{Cite web | |||
| title = Vorotan HPPs Cascadе | |||
| url = http://www.minenergy.am/en/page/450 | |||
| publisher = Ministry of Energy and Natural Resources of Armenia | |||
| accessdate = 2015-12-12}} | |||
</ref><ref name=ifc-vorotan> | |||
{{Cite web | |||
| title = Vorotan Hydros. Environmental & Social Review Summary | |||
| url = http://ifcext.ifc.org/ifcext/spiwebsite1.nsf/651aeb16abd09c1f8525797d006976ba/e79e83b2de03575485257c7b00755835?OpenDocument | |||
| publisher = ] | |||
| accessdate = 2016-03-06}} | |||
</ref> | |||
== History == | == History == | ||
The planning process of the Cascade began just after the Conference of the State Planning Commission held in 1951. In 1954, it was highlighted that with proper infrastructure and careful planning, Armenia's energetic hydro resources might allow it to become an electricity importer to neighbouring energy deficit areas like Azerbaijan and Iran. It was anticipated that the activation of the Cascade would cut the import of oil products to the country by half. The design work of the Complex began in 1954 and it was constructed between 1961 and 1989. The Tatev hydroelectric power plant (HPP) was completed in December 1970, the Shamb HPP in 1978, and the Spandaryan HPP] in 1989.<ref name=history> | |||
] | |||
{{cite web | |||
| title = The History of Vorotan Complex | |||
| url = http://www.vorotancascade.am/en/history.html | |||
| publisher = Vorotan Complex | |||
| accessdate = 9 December 2015}} | |||
</ref> Despite the plans, Azerbaijan was against the import of electricity from Armenia, thus hindering the scheduled renovation and capacity expansion to take place at the end of 1970's. The Vorotan Cascade continued to supply electricity mainly to non-ferrous metallurgy industry in nearby ].{{cn}} | |||
Modernization of the cascade stared in 2003 by help of the €2.7 million grant of the European Union which was used for rehabilitation of the Tatev HPP of the Vorotan Cascade, and the ].<ref name=ichd/> Rehabilitation works were conducted by ].<ref name=ichd/><ref name=voithhydro709/> Next rehabilitation project was launched in 2010, financed by the €51 million credit from the German development bank ].<ref name=arka100615/><ref name=arka211010> | |||
The design work of the Complex began in 1954 and it was constructed between 1961 and 1989. The first station, ] was completed in December 1970, the second one, the ] in 1978, and finally the last one named ] in 1989.<ref name=history>{{cite web|title=Vorotan Complex of HPP|url=http://www.vorotancascade.am/en/history.html|publisher=Vorotan Complex|accessdate=9 December 2015}}</ref> | |||
{{Cite news | |||
| title = http://asbarez.com/87187/german-bank-loans-armenia-51-million-euros-to-repair-vital-hydro-electric-plant/ | |||
| url = http://asbarez.com/87187/german-bank-loans-armenia-51-million-euros-to-repair-vital-hydro-electric-plant/ | |||
| agency = ARKA | |||
| date = 2010-10-21 | |||
| accessdate = 2016-03-06}} | |||
</ref> Rehabilitation works started in 2012.<ref name=arka100615> | |||
{{Cite news | |||
| title = KfW's 51 million euro loan to be handed to new owner of Vorotan hydropower plant, minister | |||
| url = http://arka.am/en/news/technology/kfw_s_51_million_euro_loan_to_be_handed_to_new_owner_of_vorotan_hydropower_plant_minister_/ | |||
| agency = ARKA | |||
| date = 2015-06-10 | |||
| accessdate = 2016-03-06}} | |||
</ref> | |||
In 2015, ContourGlobal purchased the Vorotan Cascade operating company for US$180 million.<ref> | |||
In 2015, ContourGlobal purchased the Vorotan Complex for US$180 million.<ref>{{Cite press release |title = ContourGlobal and the Republic of Armenia Announce Purchase of the Vorotan Hydroelectric Facility |url = http://www.contourglobal.com/press/1981| publisher = ContourGlobal | date = 2015-08-10 |accessdate = 2015-12-12}}</ref> The new owner of the complex is Ara Hovspeyan, who is the Armenian representative of ContourGlobal.{{clarify|date=December 2015}} ContourGlobal has started a six-year refurbishment program to modernize the plants and improve their operational performance, as well as safety, reliability, and efficiency, with the total investment of $70 million. Although there were several complaints regarding to the sale of the Spendarian Reservoir, which leads to the annual loss of {{convert|160|m3}} of water of ], the Public Services Regulatory Commission has approved the tariff plan for the consistent exploitation of the Vorotan Cascade by ContourGlobal. This is the biggest investment US investment in Armenia. The project aims to enhance electricity supply reliability and strengthen the country’s power sector. The ], a member of the ], did 20% of the total investment. | |||
{{Cite press release | |||
| title = ContourGlobal and the Republic of Armenia Announce Purchase of the Vorotan Hydroelectric Facility | |||
| url = http://www.contourglobal.com/press/1981 | |||
| publisher = ContourGlobal | |||
| date = 2015-08-10 | |||
| accessdate = 2015-12-12}} | |||
</ref> ContourGlobal has started a six-year refurbishment program to modernize the plants and improve their operational performance, as well as safety, reliability, and efficiency, with the total investment of $70 million.<ref name=arka100615/><ref name=kavkazoved> | |||
{{cite web | |||
| title = Воротанский каскад ГЭС в Армении: ом стоительстбо до продажи... | |||
| trans_title = Vorotan Cascade of HPPs in Armenia: from the construction to the sale ... | |||
| url = http://www.kavkazoved.info/news/2015/08/12/vorotanskij-kaskad-ges-v-armenii-ot-stroitelstva-do-prodazhi.html | |||
| publisher = Scientific Society of Caucasian studies | |||
| date= 12 August 2015 | |||
| accessdate=12 December 2015 | |||
| language = Russian}} | |||
</ref> Although there were several complaints regarding to the sale of the Spandaryan Reservoir, which leads to the annual loss of {{convert|160|m3}}{{dubious}} of water of ], the Public Services Regulatory Commission has approved the tariff plan for the consistent exploitation of the Vorotan Cascade by ContourGlobal. This is the biggest investment US investment in Armenia. The project aims to enhance electricity supply reliability and strengthen the country's power sector. The ], a member of the ], did 20% of the total investment.{{cn}} | |||
== Specifications == | == Specifications == | ||
Vorotan River has length of {{convert|178|km}}, the fall of {{convert|1223|m}}, and the natural annual flow of {{convert|18.6|m3/s}} for the link of Tatev. The source of the river is on {{convert|3045|m}} of the height and starts like a stream, accepting numerous ponds and streams. |
The Vorotan River has length of {{convert|178|km}}, the fall of {{convert|1223|m}}, and the natural annual flow of {{convert|18.6|m3/s}} for the link of Tatev. The source of the river is on {{convert|3045|m}} of the height and starts like a stream, accepting numerous ponds and streams. | ||
The Vorotan Cascade includes a system of five reservoirs which are Spandaryan, Angeghakot, Tolors, Tatev and a daily regulation reservoir.<ref name=ifc-vorotan/> The Spandaryan Reservoir in the vicinity of ] and Gorhayq villages, is the starting point of the complex. From there water flows through a pressurized tunnel to the Spandaryan HPP. From the Spandaryan HPP water flows to the Angeghakot Reservoir and continues its journey to the Tolors Reservoir which is located in the area of ] and Ayri. From that reservoir the water flows to the Shamb HPP. From Shamb reservoir that was constructed beyond the Shamb HPP water reaches the regulation pool, from where it proceeds to the Tatev HPP via a turbine pipe.<ref name=history/> | |||
There are three power stations in the Vorotan Complex.<ref>{{Cite web|title = Vorotan HPPs Cascadе - Hydroelectric power plants - Generating plants - Power system - www.minenergy.am|url = http://www.minenergy.am/en/page/450|website = www.minenergy.am|accessdate = 2015-12-12}}</ref> The Tatev HPP has installed capacity of 157.2 MW, the Shamb HPP has installed capacity of 171 MW, and the Spandaryan HPP has installed capacity of 76 MW.<ref name=history/> Total installed capacity of Vorotan Cascade is 404.2 MW and it generates 1.16 GWh of electricity annually. | |||
The Vorotan Cascade is one of the main power generation complexes in Armenia. It provides both ] and ] power. It is used also for the grid stabilization.<ref name=ifc-vorotan/> The Tatev HPP has installed capacity of 157.2 MW, the Shamb HPP has installed capacity of 171 MW, and the Spandaryan HPP has installed capacity of 76 MW.<ref name=history/> Total installed capacity of Vorotan Cascade is 404.2 MW and it generates 1.16 GWh of electricity annually.{{cn}} | |||
The highest pressing station is the Tatev HPP. The turbine in the shape of a ladle is the unique feature of this system. The price of 1KW/h electricity produced in the power plant is the lowest in Armenia. The water stores of the Vorotan Complex are also used for irrigation in nearby village and town areas. System consists of four storage lakes: long-term, seasonal, for daily regulation and weekly regulation. | |||
The water stores of the Vorotan Complex are also used for irrigation in nearby village and town areas.<ref name=minenergy/> | |||
== Power stations == | |||
===Tatev HPP=== | |||
The Tatev HPP is located near the ] village on the left bank of the Vorotan River at the altitude of {{convert|730|m}}.<ref name=ichd> | |||
{{cite web | |||
| url = https://ichd.org/download.php?f=339&fc=Energy_rus_eng.pdf | |||
| title = Directions of Effective Integration of the Energy Systems of the South Caucasus Countries | |||
| year = 2004 | |||
| publisher = ] | |||
| format = PDF | |||
| pages = 222; 233; 238 | |||
| accessdate = 2016-03-05}} | |||
</ref> It is one of Armenia's largest hydroelectric power plants, with installed capacity of {{convert|157.2|MW}} and annual generation of 670 GWh.<ref name=history/> Power is generated by three ]s of {{convert|52.4|MW}} each.<ref name=voithhydro709> | |||
{{cite news | |||
| url = http://www.voithhydro.com/media/hypow_7_09.pdf | |||
| title = Modernization of the Vorotan cascade | |||
| publisher = ] | |||
| accessdate = 29 January 2011 | |||
| archive-url = http://web.archive.org/web/20110717230530/http://www.voithhydro.com/media/hypow_7_09.pdf | |||
| archive-date = 2011-07-17 | |||
| dead-url = yes}} | |||
</ref> The plant is unique has it is the highest-head hydroelectric power plant in the territory of the former Soviet Union and by using Pelton turbines.<ref name=history/> | |||
The plant includes the Tatev Dam which is a {{convert|41|m|adj=on}} high and {{convert|107|m|adj=on}} embankment type dam of sandy gravel. It includes also the daily regulation reservoir.<ref name=ifc-vorotan/> The dam creates the Tatev Reservoir.<ref name=history/> | |||
The water intake on the left bank of the Vorotan River has capacity of {{convert|25|m3/s}} and the spillway has total capacity of {{convert|312|m3/s}}. Water runs from the water intake through the {{convert|18|km|adj=on}} long free-flow diversion tunnel to the delivery chamber. The {{convert|139.4|m|adj=on}} long and {{convert|4|m|adj=on}} high tail-water canal is connected with an irrigation water outlet. The pressure chamber has a diameter of {{convert|20|m}} and the threshold level of {{convert|1293.05|m}}. It is connected to the plant by a {{convert|1855|m|adj=on}} pressure conduit, and to the {{convert|80000|m3|acre feet|adj=on}} daily regulation reservoir by the sluice-feeder. The rated head of the plant is {{convert|568.8|m}}.<ref name=history/> | |||
===Shamb HPP=== | |||
The Shamb HPP is located near the village of ] on the right bank of the Vorotan River at the altitude of {{convert|1328|m}}.<ref name=ichd/> It is one of the largest hydroelectric power plant having an installed capacity of {{convert|171|MW}} and annual generation of 320 GWh.<ref name=history/> | |||
Shamb HPP includes the Angeghakot and Tolors dams which create the Angeghakot and Tolors reservoirs. The Angeghakot Dam is a {{convert|23.4|m|adj=on}} high concrete spillway dam.<ref name=history/> The Tolors Dam is a {{convert|69|m|adj=on}} high and {{convert|188|m|adj=on}} long embankment type dam of sandy gravel and soil.<ref name=history/><ref name=ifc-vorotan/> The Angeghakot and Tolors reservoirs are connected by a {{convert|10.5|km|adj=on}} free-flow tunnel which has throughput capacity of {{convert|23|m3/s}}. Water runs from the Tolors Reservoir to the plant through a {{convert|6.9|km|adj=on}} diversion pressure tunnel which turns into a {{convert|1260|m|adj=on}} single-lane penstock.<ref name=history/> | |||
===Spandaryan HPP=== | |||
] | |||
The Spandaryan HPP is located near ] at the altitude of {{convert|1694|m}}.<ref name=ichd/> It is the upper hydroelectric power plant on the cascade commissioned in 1989. The plant has an installed capacity of 76 MW and a projected annual electricity generation of 210 GWh.<ref name=history/> | |||
The Spandaryan Dam creates the cascade's upper reservoir, the Spandaryan Reservoir. The {{convert|83|m|adj=on}} high and {{convert|315|m|adj=on}} long Spandaryan dam is an embankment type, mixed rockfill and earthfill with clayey soiled bottom.<ref name=ifc-vorotan/> | |||
Its water intake infrastructures includes a pressure tunnel, a spillway culvert, and the Vorotan–Arpa tunnel for releasing water into ]. The structures have {{convert|30.5|m3/s}}, {{convert|80|m3/s}} and {{convert|15|m3/s}} water outlays respectively. The last, the fourth structure is a surface spillway with a {{convert|160|m3/s}} installed capacity and inclining drop. The pressure tunnel is {{convert|8.2|km}} long and it ends with a surge tank with capacity of {{convert|1900|m3}}. The surge tank is connected to plant by {{convert|2168|m|adj=on}} penstock.<ref name=history/> | |||
== Reservoirs == | |||
===Spandaryan Reservoir=== | |||
] | |||
Spandaryan Reservoir is located southeast of Gorayk, in Spandaryan in the Vorotan River basin. It is connected to ] and Arpa River basin by a {{convert|9|mi|adj=on}} long tunnel.<ref name="Engineering news-record">{{cite book|title=Engineering news-record|url=http://books.google.com/books?id=CGBIAQAAIAAJ|accessdate=15 October 2011|year=1981|publisher=McGraw-Hill}}</ref> It reportedly has a breeding colony of ]s, the only known in Armenia.<ref>{{cite web|url=http://www.armeniabirding.info/wwb.html|title=Where to Watch Birds in Armenia|publisher=Armenia Birding|accessdate=15 October 2011}}</ref> | |||
The reservoir's length is {{convert|7|km}}, its width varies from {{convert|2.5|to|3|km}}, and its depth is {{convert|73|m}}. The surface area of the reservoir is {{convert|10.8|km2}}.<ref>{{cite book|last1=Mkrtchyan|first1=Anzhela|title=RA Natural Resources|date=2013|publisher=ANAU|location=Yerevan|isbn=978-9939-54-613-1|page=95|accessdate=12 December 2015}}</ref> It has {{convert|218000000|m3|acre feet}} active and {{convert|257000000|m3|acre feet}} total capacities. The normal elevation of water level is {{convert|2060|m}} while {{convert|2030|m}} is the absolute minimum.<ref name=history/> | |||
===Angeghakot Reservoir=== | |||
] | |||
The Angeghakot Reservoir has {{convert|3400000|m3|acre feet}} of total capacity. The reservoir has throughput capacity of {{convert|500000|m3/s}} and the spillway has capacity of {{convert|198|m3/s}}.<ref name=history/> | |||
===Tolors reservoir=== | |||
The Tolors Reservoir has a total capacity of {{convert|96000000|m3|acre feet}} and active capacity of {{convert|80000000|m3|acre feet}}. The normal elevation of water level is {{convert|1651.1|m}} while {{convert|1625.5|m}} is the minimum.<ref name=history/> | |||
===Tatev Reservoir=== | |||
The Tatev Reservoir has total capacity of {{convert|13600000|m3|acre feet}} and active capacity of {{convert|1800000|m3|acre feet}}. The normal elevation of water level is {{convert|1335.4|m}} while {{convert|1333.8|m}} is the minimum.<ref name=history/> | |||
== References == | == References == | ||
{{Reflist}} | {{Reflist}} | ||
{{coord missing|Armenia}} | |||
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Revision as of 20:32, 6 March 2016
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Vorotan Cascade | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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TatevShambSpandaryanLocations of the Vorotan Cascade power stations in Armenia | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Country | Armenia | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Location | Syunik Province | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Purpose | Hydroelectricity Irrigation | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Status | Operational | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Construction began | 1961 | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Owner(s) | State of Armenia | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Operator(s) | The Vorotan Cascade of Hydroelectric Power Plants CJSC (parent: ContourGlobal Hydrocascade) | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Website www | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Dam in Tsghuk
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The Vorotan Cascade is a cascade on the Vorotan River in Syunik Province, Armenia. It was built to produce hydroelectric power and provide irrigation water. The Vorotan Cascade consists of three hydroelectric power plants and five reservoirs. It is one of the main power generation complexes in Armenia.
History
The planning process of the Cascade began just after the Conference of the State Planning Commission held in 1951. In 1954, it was highlighted that with proper infrastructure and careful planning, Armenia's energetic hydro resources might allow it to become an electricity importer to neighbouring energy deficit areas like Azerbaijan and Iran. It was anticipated that the activation of the Cascade would cut the import of oil products to the country by half. The design work of the Complex began in 1954 and it was constructed between 1961 and 1989. The Tatev hydroelectric power plant (HPP) was completed in December 1970, the Shamb HPP in 1978, and the Spandaryan HPP] in 1989. Despite the plans, Azerbaijan was against the import of electricity from Armenia, thus hindering the scheduled renovation and capacity expansion to take place at the end of 1970's. The Vorotan Cascade continued to supply electricity mainly to non-ferrous metallurgy industry in nearby Agarak.
Modernization of the cascade stared in 2003 by help of the €2.7 million grant of the European Union which was used for rehabilitation of the Tatev HPP of the Vorotan Cascade, and the Argel HPP. Rehabilitation works were conducted by Voith Siemens Hydro Power Generation. Next rehabilitation project was launched in 2010, financed by the €51 million credit from the German development bank KfW. Rehabilitation works started in 2012.
In 2015, ContourGlobal purchased the Vorotan Cascade operating company for US$180 million. ContourGlobal has started a six-year refurbishment program to modernize the plants and improve their operational performance, as well as safety, reliability, and efficiency, with the total investment of $70 million. Although there were several complaints regarding to the sale of the Spandaryan Reservoir, which leads to the annual loss of 160 cubic metres (5,700 cu ft) of water of Lake Sevan, the Public Services Regulatory Commission has approved the tariff plan for the consistent exploitation of the Vorotan Cascade by ContourGlobal. This is the biggest investment US investment in Armenia. The project aims to enhance electricity supply reliability and strengthen the country's power sector. The International Finance Corporation, a member of the World Bank Group, did 20% of the total investment.
Specifications
The Vorotan River has length of 178 kilometres (111 mi), the fall of 1,223 metres (4,012 ft), and the natural annual flow of 18.6 cubic metres per second (660 cu ft/s) for the link of Tatev. The source of the river is on 3,045 metres (9,990 ft) of the height and starts like a stream, accepting numerous ponds and streams.
The Vorotan Cascade includes a system of five reservoirs which are Spandaryan, Angeghakot, Tolors, Tatev and a daily regulation reservoir. The Spandaryan Reservoir in the vicinity of Tsghuk and Gorhayq villages, is the starting point of the complex. From there water flows through a pressurized tunnel to the Spandaryan HPP. From the Spandaryan HPP water flows to the Angeghakot Reservoir and continues its journey to the Tolors Reservoir which is located in the area of Sisyan and Ayri. From that reservoir the water flows to the Shamb HPP. From Shamb reservoir that was constructed beyond the Shamb HPP water reaches the regulation pool, from where it proceeds to the Tatev HPP via a turbine pipe.
The Vorotan Cascade is one of the main power generation complexes in Armenia. It provides both peak and base load power. It is used also for the grid stabilization. The Tatev HPP has installed capacity of 157.2 MW, the Shamb HPP has installed capacity of 171 MW, and the Spandaryan HPP has installed capacity of 76 MW. Total installed capacity of Vorotan Cascade is 404.2 MW and it generates 1.16 GWh of electricity annually.
The water stores of the Vorotan Complex are also used for irrigation in nearby village and town areas.
Power stations
Tatev HPP
The Tatev HPP is located near the Tatev village on the left bank of the Vorotan River at the altitude of 730 metres (2,400 ft). It is one of Armenia's largest hydroelectric power plants, with installed capacity of 157.2 megawatts (210,800 hp) and annual generation of 670 GWh. Power is generated by three Pelton turbines of 52.4 megawatts (70,300 hp) each. The plant is unique has it is the highest-head hydroelectric power plant in the territory of the former Soviet Union and by using Pelton turbines.
The plant includes the Tatev Dam which is a 41-metre (135 ft) high and 107-metre (351 ft) embankment type dam of sandy gravel. It includes also the daily regulation reservoir. The dam creates the Tatev Reservoir.
The water intake on the left bank of the Vorotan River has capacity of 25 cubic metres per second (880 cu ft/s) and the spillway has total capacity of 312 cubic metres per second (11,000 cu ft/s). Water runs from the water intake through the 18-kilometre (11 mi) long free-flow diversion tunnel to the delivery chamber. The 139.4-metre (457 ft) long and 4-metre (13 ft) high tail-water canal is connected with an irrigation water outlet. The pressure chamber has a diameter of 20 metres (66 ft) and the threshold level of 1,293.05 metres (4,242.3 ft). It is connected to the plant by a 1,855-metre (6,086 ft) pressure conduit, and to the 80,000-cubic-metre (65 acre⋅ft) daily regulation reservoir by the sluice-feeder. The rated head of the plant is 568.8 metres (1,866 ft).
Shamb HPP
The Shamb HPP is located near the village of Shamb on the right bank of the Vorotan River at the altitude of 1,328 metres (4,357 ft). It is one of the largest hydroelectric power plant having an installed capacity of 171 megawatts (229,000 hp) and annual generation of 320 GWh.
Shamb HPP includes the Angeghakot and Tolors dams which create the Angeghakot and Tolors reservoirs. The Angeghakot Dam is a 23.4-metre (77 ft) high concrete spillway dam. The Tolors Dam is a 69-metre (226 ft) high and 188-metre (617 ft) long embankment type dam of sandy gravel and soil. The Angeghakot and Tolors reservoirs are connected by a 10.5-kilometre (6.5 mi) free-flow tunnel which has throughput capacity of 23 cubic metres per second (810 cu ft/s). Water runs from the Tolors Reservoir to the plant through a 6.9-kilometre (4.3 mi) diversion pressure tunnel which turns into a 1,260-metre (4,130 ft) single-lane penstock.
Spandaryan HPP
The Spandaryan HPP is located near Tsghuk at the altitude of 1,694 metres (5,558 ft). It is the upper hydroelectric power plant on the cascade commissioned in 1989. The plant has an installed capacity of 76 MW and a projected annual electricity generation of 210 GWh.
The Spandaryan Dam creates the cascade's upper reservoir, the Spandaryan Reservoir. The 83-metre (272 ft) high and 315-metre (1,033 ft) long Spandaryan dam is an embankment type, mixed rockfill and earthfill with clayey soiled bottom.
Its water intake infrastructures includes a pressure tunnel, a spillway culvert, and the Vorotan–Arpa tunnel for releasing water into Lake Sevan. The structures have 30.5 cubic metres per second (1,080 cu ft/s), 80 cubic metres per second (2,800 cu ft/s) and 15 cubic metres per second (530 cu ft/s) water outlays respectively. The last, the fourth structure is a surface spillway with a 160 cubic metres per second (5,700 cu ft/s) installed capacity and inclining drop. The pressure tunnel is 8.2 kilometres (5.1 mi) long and it ends with a surge tank with capacity of 1,900 cubic metres (67,000 cu ft). The surge tank is connected to plant by 2,168-metre (7,113 ft) penstock.
Reservoirs
Spandaryan Reservoir
Spandaryan Reservoir is located southeast of Gorayk, in Spandaryan in the Vorotan River basin. It is connected to Arpa River and Arpa River basin by a 9-mile (14 km) long tunnel. It reportedly has a breeding colony of lesser kestrels, the only known in Armenia.
The reservoir's length is 7 kilometres (4.3 mi), its width varies from 2.5 to 3 kilometres (1.6 to 1.9 mi), and its depth is 73 metres (240 ft). The surface area of the reservoir is 10.8 square kilometres (4.2 sq mi). It has 218,000,000 cubic metres (177,000 acre⋅ft) active and 257,000,000 cubic metres (208,000 acre⋅ft) total capacities. The normal elevation of water level is 2,060 metres (6,760 ft) while 2,030 metres (6,660 ft) is the absolute minimum.
Angeghakot Reservoir
The Angeghakot Reservoir has 3,400,000 cubic metres (2,800 acre⋅ft) of total capacity. The reservoir has throughput capacity of 500,000 cubic metres per second (18,000,000 cu ft/s) and the spillway has capacity of 198 cubic metres per second (7,000 cu ft/s).
Tolors reservoir
The Tolors Reservoir has a total capacity of 96,000,000 cubic metres (78,000 acre⋅ft) and active capacity of 80,000,000 cubic metres (65,000 acre⋅ft). The normal elevation of water level is 1,651.1 metres (5,417 ft) while 1,625.5 metres (5,333 ft) is the minimum.
Tatev Reservoir
The Tatev Reservoir has total capacity of 13,600,000 cubic metres (11,000 acre⋅ft) and active capacity of 1,800,000 cubic metres (1,500 acre⋅ft). The normal elevation of water level is 1,335.4 metres (4,381 ft) while 1,333.8 metres (4,376 ft) is the minimum.
References
- ^ "Vorotan HPPs Cascadе". Ministry of Energy and Natural Resources of Armenia. Retrieved 2015-12-12.
- ^ "Vorotan Hydros. Environmental & Social Review Summary". International Finance Corporation. Retrieved 2016-03-06.
- ^ "The History of Vorotan Complex". Vorotan Complex. Retrieved 9 December 2015.
- ^ "Directions of Effective Integration of the Energy Systems of the South Caucasus Countries" (PDF). International Center for Human Development. 2004. pp. 222, 233, 238. Retrieved 2016-03-05.
- ^
"Modernization of the Vorotan cascade" (PDF). Voith Hydro. Archived from the original (PDF) on 2011-07-17. Retrieved 29 January 2011.
{{cite news}}
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suggested) (help) - ^ "KfW's 51 million euro loan to be handed to new owner of Vorotan hydropower plant, minister". ARKA. 2015-06-10. Retrieved 2016-03-06.
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"http://asbarez.com/87187/german-bank-loans-armenia-51-million-euros-to-repair-vital-hydro-electric-plant/". ARKA. 2010-10-21. Retrieved 2016-03-06.
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- "ContourGlobal and the Republic of Armenia Announce Purchase of the Vorotan Hydroelectric Facility" (Press release). ContourGlobal. 2015-08-10. Retrieved 2015-12-12.
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"Воротанский каскад ГЭС в Армении: ом стоительстбо до продажи..." (in Russian). Scientific Society of Caucasian studies. 12 August 2015. Retrieved 12 December 2015.
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: Unknown parameter|trans_title=
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suggested) (help) - Engineering news-record. McGraw-Hill. 1981. Retrieved 15 October 2011.
- "Where to Watch Birds in Armenia". Armenia Birding. Retrieved 15 October 2011.
- Mkrtchyan, Anzhela (2013). RA Natural Resources. Yerevan: ANAU. p. 95. ISBN 978-9939-54-613-1.
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