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The decision was made at a meeting of the Russian Ministry of Energy working group, chaired by the First Deputy Minister of Energy A.L. Teksler. The national priority status will help reduce the power intensity of the grid systems and scale up power efficient technologies in the industry. Early 2018 is set as a timeframe to rework the regulations, improve the support platform and adapt the development plans of fuel and energy companies to include the solutions.  

The total estimated budget for the current phase of the national project is 2.4 billion rubles. The funds will be allocated first from FGC UES investment program, and if the project is scaled – from the budgets of industrial companies. The project leader is Research and Development Center at FGC UES (R&D Center @FGC UES, JSC). The main participants of the project are Ministry of Energy, Ministry of Industry and Trade, Ministry of Education and Science, National Power Engineering Center (AO NICE), factories of Tolyattinsky Transformer and Electrozavod companies.  

The bottleneck of the current grid system of Russia is a large number of substations that were commissioned in 1950-2000 and do not meet the contemporary power efficiency requirements. The resulting annual expenditures of FGC UES for substation auxiliaries make 1 billion rubles. The project will reduce these costs by as much as 50% at the existing facilities and by 80% at the new ones. It will also cut back power transmission losses by 1/3 to increase, among other things, the environmental safety of the power grid system. The economic effect is estimated to reach 2.7 billion rubles by 2026 for FGC UES alone.  

The project features innovative process solutions, including transformer and reactor cooling systems, switchyard space heating, and premises space heating based on recovery of power equipment heat.  

So far, the process solutions have been introduced at the following substations of FGC UES: 750 kV Vladimirskaya, 500 kV Ochakovo, 500 kV Nizhegorodskaya, and 220 kV Kudma. There are 12 pilot projects in total, the next phase will expand to encompass another 160 existing facilities (the least power efficient ones) and 20 new facilities. The buyback period, with account for R&D costs, is less than 10 years for the pilot projects and 7-8 years for the scale-up phase.   

In the future, introduction of power efficient process solutions within the framework of the national project will become feasible for power facilities of all grid companies, as well as power generating, infrastructural enterprises and industrial consumers.  
[~DETAIL_TEXT] =>
The decision was made at a meeting of the Russian Ministry of Energy working group, chaired by the First Deputy Minister of Energy A.L. Teksler. The national priority status will help reduce the power intensity of the grid systems and scale up power efficient technologies in the industry. Early 2018 is set as a timeframe to rework the regulations, improve the support platform and adapt the development plans of fuel and energy companies to include the solutions.  

The total estimated budget for the current phase of the national project is 2.4 billion rubles. The funds will be allocated first from FGC UES investment program, and if the project is scaled – from the budgets of industrial companies. The project leader is Research and Development Center at FGC UES (R&D Center @FGC UES, JSC). The main participants of the project are Ministry of Energy, Ministry of Industry and Trade, Ministry of Education and Science, National Power Engineering Center (AO NICE), factories of Tolyattinsky Transformer and Electrozavod companies.  

The bottleneck of the current grid system of Russia is a large number of substations that were commissioned in 1950-2000 and do not meet the contemporary power efficiency requirements. The resulting annual expenditures of FGC UES for substation auxiliaries make 1 billion rubles. The project will reduce these costs by as much as 50% at the existing facilities and by 80% at the new ones. It will also cut back power transmission losses by 1/3 to increase, among other things, the environmental safety of the power grid system. The economic effect is estimated to reach 2.7 billion rubles by 2026 for FGC UES alone.  

The project features innovative process solutions, including transformer and reactor cooling systems, switchyard space heating, and premises space heating based on recovery of power equipment heat.  

So far, the process solutions have been introduced at the following substations of FGC UES: 750 kV Vladimirskaya, 500 kV Ochakovo, 500 kV Nizhegorodskaya, and 220 kV Kudma. There are 12 pilot projects in total, the next phase will expand to encompass another 160 existing facilities (the least power efficient ones) and 20 new facilities. The buyback period, with account for R&D costs, is less than 10 years for the pilot projects and 7-8 years for the scale-up phase.   

In the future, introduction of power efficient process solutions within the framework of the national project will become feasible for power facilities of all grid companies, as well as power generating, infrastructural enterprises and industrial consumers.  
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Early 2018 is set as a timeframe to rework the regulations, improve the support platform and adapt the development plans of fuel and energy companies to include the solutions. 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Power Efficient Substation Project of FGC UES Designed to Cut Auxiliary Costs by 80% Gets National Priority Status

12/18/2017 Power Efficient Substation Project of FGC UES Designed to Cut Auxiliary Costs by 80% Gets National Priority Status
The decision was made at a meeting of the Russian Ministry of Energy working group, chaired by the First Deputy Minister of Energy A.L. Teksler. The national priority status will help reduce the power intensity of the grid systems and scale up power efficient technologies in the industry. Early 2018 is set as a timeframe to rework the regulations, improve the support platform and adapt the development plans of fuel and energy companies to include the solutions.  

The total estimated budget for the current phase of the national project is 2.4 billion rubles. The funds will be allocated first from FGC UES investment program, and if the project is scaled – from the budgets of industrial companies. The project leader is Research and Development Center at FGC UES (R&D Center @FGC UES, JSC). The main participants of the project are Ministry of Energy, Ministry of Industry and Trade, Ministry of Education and Science, National Power Engineering Center (AO NICE), factories of Tolyattinsky Transformer and Electrozavod companies.  

The bottleneck of the current grid system of Russia is a large number of substations that were commissioned in 1950-2000 and do not meet the contemporary power efficiency requirements. The resulting annual expenditures of FGC UES for substation auxiliaries make 1 billion rubles. The project will reduce these costs by as much as 50% at the existing facilities and by 80% at the new ones. It will also cut back power transmission losses by 1/3 to increase, among other things, the environmental safety of the power grid system. The economic effect is estimated to reach 2.7 billion rubles by 2026 for FGC UES alone.  

The project features innovative process solutions, including transformer and reactor cooling systems, switchyard space heating, and premises space heating based on recovery of power equipment heat.  

So far, the process solutions have been introduced at the following substations of FGC UES: 750 kV Vladimirskaya, 500 kV Ochakovo, 500 kV Nizhegorodskaya, and 220 kV Kudma. There are 12 pilot projects in total, the next phase will expand to encompass another 160 existing facilities (the least power efficient ones) and 20 new facilities. The buyback period, with account for R&D costs, is less than 10 years for the pilot projects and 7-8 years for the scale-up phase.   

In the future, introduction of power efficient process solutions within the framework of the national project will become feasible for power facilities of all grid companies, as well as power generating, infrastructural enterprises and industrial consumers.  

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