http://www.ineffableisland.com/2013/12/china-reveals-hypersonic-airplane.html
China Reveals Hypersonic Airplane Design, Could Reach 6600 MPH, Fly From
Beijing To New York In 2
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2:01 AM  Alton Parrish  No
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How do you design a hypersonic airplane that can travel from Beijing to New
York in only two hours at 6600 miles per hour?



 Dr. Cui Kai and his group from State Key Laboratory of High Temperature
Gas Dynamics, Institute of Mechanics, Chinese Academy of Sciences set out
to tackle this problem. After three years of innovative research, they
presented a body-wing-blending configuration with double flanking air
inlets layout to aim at design requirements of high lift-to-drag ratio as
well as high volumetric efficiency of next generation hypersonic airplanes.



This is a design example of hypersonic airplanes.

Credit: ©Science China Press



Moreover, a novel forebody design methodology which by rotating and
assembling two waverider-based surfaces is firstly introduced. Their work,
entitled "Conceptual design and aerodynamic evaluation of hypersonic
airplane with double flanking air inlets", was published in SCIENCE CHINA
Technological Sciences 2013(8)issue.

Air-breathing hypersonic vehicles has been much concerned by United States
and other developed countries since the mid-20th century, and a series of
research projects has been proposed since 1980s. The completely integrated
design of the airframe and propulsion system is generally adopted for the
air-breathing hypersonic vehicles, however, as both the aerodynamic
performance for the airframe and the engine intake/exhaust requirements
shall be taken into account simultaneously, the design difficulty increased
dramatically. The current aerodynamic design for hypersonic vehicles is
mainly for the demonstration vehicles which focused on minimizing
resistance and the optimal matching between airframe and engine, and the
forebody and engine inlet integrated design is the key issues for the
configuration design.

The current air-breathing hypersonic vehicles can be mainly divided into
two categories according to the different inlet layouts, i.e. with nose
inlet and with ventral inlet. The hypersonic vehicle with nose inlet
layout, such as the U.S. HyFly hypersonic demonstration vehicle, can
efficiently achieve uniformly distributed airflow with high total pressure
recovery coefficient for the engine by decreasing the interference of
airframe to the maximum extent.



<http://4.bp.blogspot.com/-nDDmrV_0aOw/UrFGB2N9_iI/AAAAAAAAW5Q/rM8n6s1OG6U/s1600/hyfly.PNG>

Credit: Boeing



The popular internal waverider inlet is also suited to the nose inlet
layout. The ventral inlet layout is the most commonly used layout for
hypersonic vehicles, the U.S. X-43 and X-51 etc. demonstration hypersonic
vehicles are all designed with ventral inlets. It is characterized with
engine mounted on the abdomen, and the forebody is designed as a waverider
or lifting-body which not only provides high-quality airflow for the engine
inlet but also generates great lift force to improve the lift-to-drag ratio
and pitching-balance performances of the vehicle.



X-51 Waverider

<http://1.bp.blogspot.com/-I37XBwK-_8o/UrFGi2aOWnI/AAAAAAAAW5Y/aMG3Mc6oZJE/s1600/X-51A_Waverider.jpg>

Credit: Boeing


With the progress of scramjet research, various air-breathing hypersonic
vehicles are bound to gradually enter the practical stage. As the
air-breathing hypersonic vehicle can be considered as a development of
modern high-speed airplanes with the extended flight speed and flight
altitudes, the researchers deem that the existing design ideas/experience
of high speed airplanes should be retained or referred to some typical high
speed airplanes.



By drawing on the merits of the existing airplane configuration design
philosophy, a novel forebody design methodology which by rotating and
assembling two waverider-based surfaces is firstly introduced, and a
body-wing-blending configuration with double flanking air inlets layout is
also presented. On this basis, a conceptual hypersonic airplane powered by
double symmetric scramjet is proposed.

Since numerical simulation has become a powerful tool of aerodynamic
performance analysis, some typical configurations of forebodies and the
whole airplanes with different wing leading edges are evaluated by CFD. The
results for forebodies analysis show that large air mass flow, high
lift-to-drag ratio, and uniformly distributed flowfield at the inlet cross
section can be assured simultaneously. The results of the whole airplanes
analysis show that high lift-to-drag ratio depends on the shape of the wing
leading edge to a large extent.

Further work for the design of the engine inlet and the optimization design
of wing leading edge will be carried out based on this study. As the
forebody with double waverider-based surfaces retains advantages of the
waverider, such as high mass flow, high lift-to-drag ratio, etc., the
existing ventral inlet design experience can be useful for the inlet
design. In addition, the optimization of the wing leading edge shall focus
on the cruise flight condition, and the target shall be the reduction of
wave drag and efficient capture of the high pressure caused by side
compression.

This research project was supported by a grant from the National Natural
Science Foundation of China.


Contacts and sources: <[email protected]>
Yan Bei <[email protected]>
Science China Press <http://zh.scichina.com/english/>




Citation: Cui K, Hu S C, Li G L, et al. Conceptual design and aerodynamic
evaluation of hypersonic airplane with double flanking air inlets. Sci
China Tech Sci, 2013, 56(8): 1980-1988,
http://tech.scichina.com:8082/sciEe/EN/Y2013/V56/I8/1980

Science China Press Co., Ltd. (SCP) is a scientific journal publishing
company of the Chinese Academy of Sciences (CAS). For 60 years, SCP takes
its mission to present to the world the best achievements by Chinese
scientists on various fields of natural sciences researches.


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