作者的详细信息

Костюков, А. В

栏目 标题 文件
卷 12, 编号 3 (2018) Articles Comparison of the analytical solutionof efficieтcy regenerative rotating heatexchangethe device with resultsof numericalcalculations PDF
(Rus)
卷 11, 编号 3 (2017) Articles Optimization and debugging of a low-toxic combustion chamber with the use of numerical modeling of intrachamber processes PDF
(Rus)
卷 11, 编号 3 (2017) Articles Optimization of the turbine diffuser of a multipurpose microturbine PDF
(Rus)
卷 12, 编号 3 (2018) Articles Investigation of the main factors of the process of ignition of a homogeneous mixture from compression in an ICE PDF
(Rus)
卷 8, 编号 4-1 (2014) Articles Modern requirements for impeller machines for microturbine energy systems PDF
(Rus)
卷 8, 编号 4-1 (2014) Articles Multi-purpose high-performance micro-turbines PDF
(Rus)
卷 8, 编号 1-1 (2014) Articles Study of the process of heat transfer in mesh matrix of rotary heat exchanger PDF
(Rus)
卷 8, 编号 4-1 (2014) Articles Carbon materials for parts of gas-turbine engines and internal combustion engines, problems and prospects PDF
(Rus)
卷 7, 编号 2-1 (2013) Articles Diagonal fan with optimized geometry of rotor blades for the cooling system of a turbo-diesel PDF
(Rus)
卷 7, 编号 1-1 (2013) Articles Development and research of a high-performance fan for a liquid-cooling system of a truck turbo diesel PDF
(Rus)
卷 7, 编号 1-1 (2013) Articles Computer-aided designing of turbine blades with parabolic contours PDF
(Rus)
卷 7, 编号 1-1 (2013) Articles Cooling of rotary heat exchanger frame PDF
(Rus)
卷 6, 编号 2-1 (2012) Articles Simulation of a mixture formation in a cylinder of the engine running on Otto-Diesel cycle PDF
(Rus)
卷 6, 编号 2-1 (2012) Articles Development of test-benches for control and research tests of turbochargers PDF
(Rus)
卷 6, 编号 2-1 (2012) Articles Investigation of the heat transfer process in a mesh matrix of a rotary heat exchanger PDF
(Rus)
卷 6, 编号 2-1 (2012) Articles Investigation of combustion modes of energy-accumulating materials PDF
(Rus)
卷 6, 编号 2-1 (2012) Articles Microturbine with efficiency of over 43% PDF
(Rus)
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