Methodological design support for new-generation airship gas-air system

The research subject is a design process of gas-air system (GAS) of multi-purpose, transport, and high-altitude (including stratospheric) airships. This research objectives are a methodological design support of the new-generation airship GAS; the development of practical recommendations for selecti...

Full description

Bibliographic Details
Main Authors: Alexander Nikolayevich Kirilin, Anna Alexandrovna Boldyreva
Format: Article
Language:Russian
Published: Don State Technical University 2015-03-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/235
_version_ 1797881387550769152
author Alexander Nikolayevich Kirilin
Anna Alexandrovna Boldyreva
author_facet Alexander Nikolayevich Kirilin
Anna Alexandrovna Boldyreva
author_sort Alexander Nikolayevich Kirilin
collection DOAJ
description The research subject is a design process of gas-air system (GAS) of multi-purpose, transport, and high-altitude (including stratospheric) airships. This research objectives are a methodological design support of the new-generation airship GAS; the development of practical recommendations for selecting geometrical and physical parameters of the basic GAS elements. The functionality of the new-type airship GAS is analyzed. The design technique of the multi-purpose, transport, and high-altitude (including stratospheric) airship basic GAS parameters as applied to the adiabatic process of heat exchange of the buoyant gas and air in the airframe with the environment is developed. The algorithm corresponding to the offered technique has been implemented and introduced in the «Aerostatics» block of the updated conceptual software for various types of airships. The algorithm is written in the object-oriented C++ programming. The basic airship GAS parameters depending on their volume, flight altitude, climbing rate, and gas type (air, helium, phlegmatized hydrogen) are studied. The presented table and graphic interpretations of the GAS calculated parameters of the airships of different purpose in a wide range of their dimensions allow develop some practical recommendations for selecting the geometrical and physical parameters of the basic GAS elements. These findings can be used by the aircraft community in developing advanced models of the aeronautic equipment.
first_indexed 2024-04-10T03:19:15Z
format Article
id doaj.art-b698b816b88e4220af020b42c14772f1
institution Directory Open Access Journal
issn 2687-1653
language Russian
last_indexed 2024-04-10T03:19:15Z
publishDate 2015-03-01
publisher Don State Technical University
record_format Article
series Advanced Engineering Research
spelling doaj.art-b698b816b88e4220af020b42c14772f12023-03-13T07:31:25ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532015-03-011519310210.12737/10392235Methodological design support for new-generation airship gas-air systemAlexander Nikolayevich Kirilin0Anna Alexandrovna Boldyreva1Закрытое акционерное общество «Аэростатика», Москва, Российская ФедерацияЗакрытое акционерное общество «Аэростатика», Москва, Российская ФедерацияThe research subject is a design process of gas-air system (GAS) of multi-purpose, transport, and high-altitude (including stratospheric) airships. This research objectives are a methodological design support of the new-generation airship GAS; the development of practical recommendations for selecting geometrical and physical parameters of the basic GAS elements. The functionality of the new-type airship GAS is analyzed. The design technique of the multi-purpose, transport, and high-altitude (including stratospheric) airship basic GAS parameters as applied to the adiabatic process of heat exchange of the buoyant gas and air in the airframe with the environment is developed. The algorithm corresponding to the offered technique has been implemented and introduced in the «Aerostatics» block of the updated conceptual software for various types of airships. The algorithm is written in the object-oriented C++ programming. The basic airship GAS parameters depending on their volume, flight altitude, climbing rate, and gas type (air, helium, phlegmatized hydrogen) are studied. The presented table and graphic interpretations of the GAS calculated parameters of the airships of different purpose in a wide range of their dimensions allow develop some practical recommendations for selecting the geometrical and physical parameters of the basic GAS elements. These findings can be used by the aircraft community in developing advanced models of the aeronautic equipment.https://www.vestnik-donstu.ru/jour/article/view/235воздухоплаваниедирижабльвоздушно - газовая системаметодика расчетаадиабатический процесспрограммное обеспечениеформирование облика дирижабляaerostaticsairshipgas - air systemcalculation methodadiabatic processsoftwareairship conceptual design
spellingShingle Alexander Nikolayevich Kirilin
Anna Alexandrovna Boldyreva
Methodological design support for new-generation airship gas-air system
Advanced Engineering Research
воздухоплавание
дирижабль
воздушно - газовая система
методика расчета
адиабатический процесс
программное обеспечение
формирование облика дирижабля
aerostatics
airship
gas - air system
calculation method
adiabatic process
software
airship conceptual design
title Methodological design support for new-generation airship gas-air system
title_full Methodological design support for new-generation airship gas-air system
title_fullStr Methodological design support for new-generation airship gas-air system
title_full_unstemmed Methodological design support for new-generation airship gas-air system
title_short Methodological design support for new-generation airship gas-air system
title_sort methodological design support for new generation airship gas air system
topic воздухоплавание
дирижабль
воздушно - газовая система
методика расчета
адиабатический процесс
программное обеспечение
формирование облика дирижабля
aerostatics
airship
gas - air system
calculation method
adiabatic process
software
airship conceptual design
url https://www.vestnik-donstu.ru/jour/article/view/235
work_keys_str_mv AT alexandernikolayevichkirilin methodologicaldesignsupportfornewgenerationairshipgasairsystem
AT annaalexandrovnaboldyreva methodologicaldesignsupportfornewgenerationairshipgasairsystem