1
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Girnik I.S.
,
Okunev B.N.
,
Aristov Y.I.
Dynamics of Pressure- and Temperature-Initiated Adsorption Cycles for Transformation of Low Temperature Heat: Flat Bed of Loose Grains
Applied Thermal Engineering. 2020.
V.165. 114654
:1-8. DOI: 10.1016/j.applthermaleng.2019.114654
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2
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Okunev B.N.
,
Voskresensky N.M.
,
Girnik I.S.
,
Aristov Y.I.
Thermodynamic Analysis of the New Adsorption Cycle “HeCol” for Ambient Heat Upgrading: Ideal Heat Transfer
Journal of Engineering Thermophysics (Russian Journal of Engineering Thermophysics до 2001 года). 2018.
V.27. N3. P.327-338. DOI: 10.1134/s1810232818030086
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РИНЦ
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3
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Voskresenskii N.M.
,
Okunev B.N.
,
Gordeeva L.G.
A Thermodynamic Analysis of a New Cycle for Adsorption Heat Pump “Heat from Cold”: Effect of the Working Pair on Cycle Efficiency
Thermal Engineering. 2018.
V.65. N8. P.524-530. DOI: 10.1134/s0040601518080098
Scopus
РИНЦ
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4
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Воскресенский Н.М.
,
Окунев Б.Н.
,
Гордеева Л.Г.
Термодинамический анализ нового цикла адсорбционного теплового насоса “тепло из холода”: влияние рабочей пары на эффективность цикла
Теплоэнергетика. 2018.
№8. С.39-46. DOI: 10.1134/S004036361808009X
РИНЦ
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5
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Okunev B.N.
,
Aristov Y.I.
Making Adsorptive Chillers Faster by Proper Choice of Adsorption Isobar Shape: Comparison with SWS-1L
Energy. 2014.
V.76. P.400-405. DOI: 10.1016/j.energy.2014.08.031
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РИНЦ
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6
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Okunev B.N.
,
Gromov A.P.
,
Aristov Y.I.
Modelling of Isobaric Stages of Adsorption Cooling Cycle: An Optimal Shape of Adsorption Isobar
Applied Thermal Engineering. 2013.
V.53. N1. P.89-95. DOI: 10.1016/j.applthermaleng.2013.01.018
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РИНЦ
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7
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Okunev B.N.
,
Aristov Y.I.
Modeling of Isobaric Stages of Adsorption Cooling Cycle: Transient and Quasi-Stationary Regimes
Applied Thermal Engineering. 2013.
V.51. N1-2. P.231-238. DOI: 10.1016/j.applthermaleng.2012.08.069
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РИНЦ
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8
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Okunev B.N.
,
Gromov A.P.
,
Zelenko V.L.
,
Glaznev I.S.
,
Ovoshchnikov D.
,
Heifets L.I.
,
Aristov Y.I.
Effect of Residual Gas on the Dynamics of Water Adsorption under Isobaric Stages of Adsorption Heat Pumps: Mathematical Modelling
International Journal of Heat and Mass Transfer. 2010.
V.53. N7-8. P.1283-1289. DOI: 10.1016/j.ijheatmasstransfer.2009.12.040
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РИНЦ
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9
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Gromov A.P.
,
Grigorenko M.A.
,
Glaznev I.S.
,
Okunev B.N.
,
Zelenko V.L.
,
Heifets L.I.
Influence of Nonadsorbable Component on the Dynamics of Water Sorption on Composite Adsorbent
Moscow University Chemistry Bulletin. 2009.
V.64. N4. P.186-191. DOI: 10.3103/S0027131409040038
Scopus
РИНЦ
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10
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Громов А.П.
,
Григоренко М.А.
,
Глазнев И.С.
,
Окунев Б.Н.
,
Зеленко В.Л.
,
Хейфец Л.И.
Влияние несорбирующегося компонента на динамику сорбции воды на композитном адсорбенте
Вестник Московского Университета. Серия 2: Химия. 2009.
Т.50. №4. С.232-237.
RSCI
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11
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Okunev B.N.
,
Gromov A.P.
,
Heifets L.I.
,
Aristov Y.I.
A New Methodology of Studying the Dynamics of Water Sorption/Desorption Under Real Operating Conditions of Adsorption Heat Pumps: Modelling of Coupled Heat and Mass Transfer in a Single Adsorbent Grain
International Journal of Heat and Mass Transfer. 2008.
V.51. N1-2. P.246-252. DOI: 10.1016/j.ijheatmasstransfer.2007.04.009
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РИНЦ
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12
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Okunev B.N.
,
Gromov A.P.
,
Heifets L.I.
,
Aristov Y.I.
Dynamics of Water Sorption on a Single Adsorbent Grain Caused by a Large Pressure Jump: Modeling of Coupled Heat and Mass Transfer
International Journal of Heat and Mass Transfer. 2008.
V.51. N25-26. P.5872-5876. DOI: 10.1016/j.ijheatmasstransfer.2008.01.037
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РИНЦ
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13
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Tokarev M.M.
,
Okunev B.N.
,
Safonov M.S.
,
Kheifets L.I.
,
Aristov Y.I.
Approximation Equations for Describing the Sorption Equilibrium Between Water Vapor and a CaCl2-in-Silica Gel Composite Sorbent
Russian Journal of Physical Chemistry A. 2005.
V.79. N9. P.1490-1493.
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РИНЦ
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14
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Токарев М.М.
,
Окунев Б.Н.
,
Сафонов М.С.
,
Хейфец Л.И.
,
Аристов Ю.И.
Аппроксимирующие уравнения сорбционного равновесия паров воды с композитным сорбентом "СаСl2 в силикагеле"
Журнал физической химии. 2005.
Т.79. №9. С.1680-1683.
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