Search by keyword: "thermal protection"
Computing Thermal Protection of the Soil-Sampling Mechanism Drive of the Venera-D Automatic Interplanetary Station Exposed to Extreme Operation Conditions
Authors: Koveshnikov A.A., Paleshkin A.V. | Published: 18.09.2024 |
Published in issue: #3(150)/2024 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aircraft Strength and Thermal Modes | |
Keywords: thermal protection, Venera-D, thermodynamics, thermal insulation, heat accumulator, phase transition, mathematical model |
A Wedge witha Heat-Resistant Lining in a High-Speed Airflow: Comparative Estimate of the Thermal State
Authors: Aliev Az.A., Zimin V.N. , Tovstonog V.A., Tomak V.I. | Published: 01.04.2022 |
Published in issue: #1(140)/2022 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aircraft Strength and Thermal Modes | |
Keywords: aircraft, aerodynamic heating, thermal protection, thermal condition, heat-resistant material |
Thermal State of an Aircraft Aerofoil in a High-Velocity Air Flow
Authors: Aliev Az.A., Burkov A.S., Tovstonog V.A., Tomak V.I., Yagodnikov D.A. | Published: 05.09.2021 |
Published in issue: #3(138)/2021 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aircraft Strength and Thermal Modes | |
Keywords: aerodynamic heating, thin aerofoil, oxidising atmosphere, thermal protection, refractory materials, oxides |
Comparative Assessment of Thermal Protective Characteristics of Metal and Ceramic Shields of Flow Paths of High-Temperature Gas Dynamic Facilities
Authors: Tovstonog V.A. | Published: 30.04.2020 |
Published in issue: #2(131)/2020 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aircraft Strength and Thermal Modes | |
Keywords: gas dynamic facilities, high temperatures, thermal protection, metal shields, high-temperature ceramics, volume-reflecting scattering materials |
Study of Hydraulic Characteristics of the Cooling Path of a Model Liquid Rocket Engine Manufactured using Additive Technology of Selective Laser Melting
Authors: Yagodnikov D.A., Aleksandrenkov V.P., Kovalev K.E., Grigoryants A.G., Drenin    A.A. | Published: 20.12.2019 |
Published in issue: #6(129)/2019 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Thermal, Electric Jet Engines, and Power Plants of Aircrafts | |
Keywords: hydraulic characteristics, cooling path, combustion chamber fins, additive technologies, thermal protection |
Method of Calculating Carbon Ablation in the Jet of Liquid Rocket Engine Combustion Products
Authors: Gorskiy V.V., Kovalsky M.G., Resh V.G. | Published: 17.10.2019 |
Published in issue: #5(128)/2019 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aerodynamics and Heat Transfer Processes in Aircrafts | |
Keywords: ablation, thermal protection, carbon materials, combustion products, oxidation, erosion, heat flow |
Conjugate Heat Transfer and Estimation of Thermal State of Elements of the Thermal Protection Shield Package
Authors: Tovstonog V.A. | Published: 05.09.2019 |
Published in issue: #4(127)/2019 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aerodynamics and Heat Transfer Processes in Aircrafts | |
Keywords: radiation heat transfer, radiation shield, emissivity, thermal protection |
Estimating the Thermal State of a Blunted Wedge in a High-Velocity Gas Flow
Authors: Zinin K.М., Aliev Az.A., Tovstonog V.A. | Published: 20.07.2019 |
Published in issue: #3(126)/2019 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aerodynamics and Heat Transfer Processes in Aircrafts | |
Keywords: high-velocity aircraft, aero-dynamic heating, thermal protection, refractory oxide materials, thermal state |
Heat Transfer in a Flattened Pipe with an Ablative Wall
Authors: Tovstonog V.A. | Published: 07.12.2018 |
Published in issue: #6(123)/2018 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aerodynamics and Heat Transfer Processes in Aircrafts | |
Keywords: thermal protection, ablative material, lithium hydride, thermochemical decomposition, flattened pipe, heat transfer by radiation and convection |
Heat Transfer in a Flattened Pipe with an Ablative Wall
Authors: Tovstonog V.A. | Published: 07.12.2018 |
Published in issue: #6(123)/2018 | |
DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aerodynamics and Heat Transfer Processes in Aircrafts | |
Keywords: thermal protection, ablative material, lithium hydride, thermochemical decomposition, flattened pipe, heat transfer by radiation and convection |