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CONTENTS
WATERTREATMENT AND WATER PURIFICATION | 4 |
Bushuev E.N, Larin A.B., Eremina N.A., Loginova A.Yu. Problems of modernization of water treatment systems of russian CHPP | 4 |
ENERGYSAVING TECHNOLOGIES | 10 |
Kirpichnikova I.M., Shestakova V.V. Electrical properties of dust and their effect on the operation of solar modules | 10 |
Shulga R.N. Green energy-saving energy | 15 |
Grankina N.A., Masenko A.V., Shchebeteev V.A., Oshatinsky A.V., Kalyuta M.A. On question of selecting the optimal network configuration and voltage levels | 22 |
Vedruchenko V.R., Lazarev E.S., Shtib A.V. Forecasting the prospects of fuel use on diesel rolling stock | 25 |
Amerkhanov R.A., Bliashko I.I. Analysis of the characteristics of potential sites in the regions of Russia and the principles of choosing equipment for SHPP | 31 |
Dambiev C.C., Safronov P.G., Sidorov P.V. Assessment of the efficiency of fuel combustion when switching off the general-station LDPE at the CHP | 38 |
RESEARCH, DESIGN, CALCULATIONS | 41 |
Bratoshevskaya V.V. Formation of the structure of residential development of the city, taking into account the natural and climatic conditions of the area | 41 |
Kuznetsov V.M., Ostretsov I.N., Yurchevsky E.B. On solving the problem of spent nuclear fuel and depleted uranium in the light of the prospects for mastering nuclear relativistic technology. Part 1. Spent nuclear fuel and depleted uranium — an unlimited resource for new nuclear energy | 45 |
Kuznetsov V.M., Ostretsov I.N., Yurchevsky E.B. On solving the problem of spent nuclear fuel and depleted uranium in the light of the prospects for mastering nuclear relativistic technology. Part 2. Situation with primary energy resources today and in the near future. Conceptual approach to nuclear relativistic technologies | 55 |
Lukovenko A.S., Zenkov I.V. Using the Lagrange multiplier model to simulate FACTS device installations | 63 |
STUDENT WORKS | 69 |
Mironova Y.A., Danysh A.V., Goryachev S.V. Trackers for a floating solar power plant | 69 |
Goryachev S.V., Droshin A.D., Snegirev D.G. Vertical-axis folding wind turbines | 75 |