|
Breus V.I., Shestakov N.S., Leykam A.E., Smirnov A.A., Andrienko V.G.
The organization of burning of water coal fuel suspensions in the technological chamber of combustion |
3 |
|
Tyurina E.A., Izhganaytis M.I., Voronkov V.V.
Technological evaluation of various coal compositions, including waste coal preparation, used for binding of sulfur oxides and to improve environmental performance of power stations |
8 |
|
Leykin V.Z., Ageev V.A.
Study of new boiler crushing plants and a gas generator with fluidized bed and grate type |
15 |
|
Ryabov G.A., Khaneev K.V.
Operating experience of CFB boilers in China |
22 |
|
Ryabov G.A., Dolgushin I.A., Gutorov V.F.
Developments in the background of a new coal CHP generation |
31 |
|
Kuznetsov A.S., Dudenko I.I., Kulibaba V.K.
Технологические и экономическиеаспекты модернизации малой и средней теплоэнергетики на основе применения водоугольного топлива |
37 |
|
Kovalev E.T.
Main directions of energy chemical coal |
40 |
|
Troshenkin B.A., Yanko S.V., Troshenkin V.B.
Underground coal combustion correlations |
45 |
|
Bystryy A.I., Kvitsinskiy V.A., Kryvosheev S.I., Makarchuk V.N., Topal A.I., Khilko I.N.
Определение полей скоростей и концентраций частиц вкипящем слое |
50 |
|
Korchevoy Yu.P., Fateev A.I., Nekhamin M.M., Muzalevskaya N.I.
The influence of mixing and temperature of water environment on cleaning salt coal from harmful impurities |
56 |
|
Pivnyak G.G., Pilov P.I., Pilova E.P.
Снижение выбросов оксида серы при использовании на тепловых электростанциях обогащенного угля |
60 |
|
Potapov V.N., Kostyunin V.V., Khanova A.S., Sautchenko N.I., Zimovets I.A., Ochaykin K.V.
Анализ схем подачи генераторного газа из биомассы и отходов для сжигания в камерных топках котлов |
66 |
|
Tkach S.M., Gavrilov V.L.
Problems of use of local coals for power supply of the arctic areas of Yakutia |
73 |
|
Dudnik A.N., Strizhak P.E., Tripolskiy A.I., Sokolovskaya I.S., Kalishin E.Yu.
Conversion of solid organic wastes using microchannal reactor |
80 |
|
Maystrenko A.Yu., Topal A.I., Lavarko A.V.
The experience of implementation of circulating fluidized bed technology for combustion of solid fuel in energy sector of Ukraine |
84 |
|
Dudnik A.N.
Concepts of new thermal coal-fired plants with carbon dioxide removal and hydrogen production |
91 |
|
Babakhodzhaev R.P., Khuzhanov R.A., Sharipov A.M., Turgunov F., Eshkuvvatov L.M.
Development of the scheme of using solar energy at thermal stations for heating of network water |
98 |
|
Mysak I.S., Zayats M.F.
Enhancement of boiler efficiency by upgrading of regenerative air preheater |
101 |
|
Bespalova S.V., Zhikalyak N.V., Osetrov V.V., Shestavin N.S.
Capture and geological storage of carbon dioxide as a perspective for energy of Ukraine |
107 |
|
Chernyavskiy N.V., Provalov A.Yu., Kosyachkov A.V.
The main directions of fuel efficiency improving at Ukrainian thermal power plants |
114 |
|
Gordeev S.I., Valtsev N.V., Bogatova T.F., Ryzhkov A.F., Osipov P.V., Mikula V.A.
Computational and experimental basis of the project of hybrid CCPP |
122 |
|
Orlovskaya S.G.
External heat and mass transfer influence on carbon dusts ignition, burning and extinction |
130 |
|
Chernyavskiy N.V., Bondzik D.L.
The dynamics of the coal matter thermal dissociation during high thermal shock |
135 |
|
Balakin V.V., Bulychev D.A., Dergunov I.M., Kuznetsov A.V., Khokhlov A.V.
Методика расчета теплообмена в топочной камере при сверхкритических параметрах рабочего тела с использованием ansys fluent |
143 |
|
Balakin V.V., Bulychev D.A., Dergunov I.M., Kuznetsov A.V., Nesiolovskiy O.V., Khokhlov A.V.
Расчет теплообмена в топочной камере при сверхкритических параметрах рабочего тела с использованием ansys fluent на примере котла p-67 березовской грэс |
148 |
|
Shemyakin V.N., Khomenok L.A.
Some aspects of the use of coal in the industrial and municipal engineering |
154 |