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Eldred, Charles H.

Publications and source records attributed to Eldred, Charles H..

Aerobraking technology studies

For a Mars Expedition, aerobrakes can play a vital role in several major mission events, including aerocapture to achieve orbit and descent to the planetary surface both at Mars and upon return to Earth. The feasibility of aerobrake designs will depend upon material and structures technologies because they will serve as a key factor in determining: (1) aerobrake mass and mass fraction; (2) the extent to which aerobrakes can survive the thermal environment. This is especially important for reusable aerobrakes. With the cancellation of the Aeroassist Flight Experiment, the effort to validate aerobrake designs has focused on laboratory test and analysis; (3) the feasibility of assembling and/or deploying large aerobrakes. On-orbit assembly is a critical issue for all spacecraft intended for Mars exploration missions. Current studies are addressing options related to inspace assembly and construction; and (4) configuration lift-to-drag (L/D) ratio. High L/D increases convective heating, whereas low L/D emphasizes radiative heating. In general, the lowest L/D design that can satisfy mission requirements is preferred.

Eldred, Charles H.

Aerobraking systems for manned Mars missions

This paper presents a synopsis of aerobraking uses, benefits, performance requirements, design issues, and technology requirements for manned Mars missions. Aerobraking can provide significant advantages in several key mission functions: Mars orbit capture, Mars entry from orbit, and earth orbit capture or direct entry. The resulting range of aerobraking performance requirements are described. Study results show that none of the aerobrake unique concerns are show stoppers but are issues having reasonable design solutions and operational impacts.

Eldred, Charles H.

Alternative scenarios utilizing nonterrestrial resources

A collection of alternative scenarios that are enabled or substantially enhanced by the utilization of nonterrestrial resources is provided. We take a generalized approach to scenario building so that our report will have value in the context of whatever goals are eventually chosen. Some of the topics covered include the following: lunar materials processing; asteroid mining; lunar resources; construction of a large solar power station; solar dynamic power for the space station; reduced gravity; mission characteristics and options; and tourism.

Eldred, Charles H.

Aerobraking for space exploration

Aerobraking may be used in place of rocket thrust to decelerate the spacecraft on arrival at Mars as well as on return to earth. Depending on the specifics of propulsion system design and mission objectives, aerobraking can provide very substantial savings in initial mass in LEO, in virtue of the fact that the mass of the aerobrake system is typically much less than that of the propellant required to conduct the equivalent maneuver. Attention is presently given to both chemically propelled and nuclear thermal propulsion vehicles employing aerobraking.

Eldred, Charles H.

The Orbit-on-Demand and Shuttle II Studies at NASA Langley

This paper reviews advanced space transportation studies that have been conducted at the Langley Research Center recently. The Orbit-on-Demand Vehicle Study focused on concepts capable of rapid launch. The Shuttle II Study considered concepts with the potential to reduce the cost of transportation to orbit for payloads in the Shuttle class or less.

Martin, James A.

Advanced manned earth-to-orbit vehicle

Advanced manned launch vehicle concepts which are designed to meet the space transportation architecture and mission needs for the early 21st century are described. Concepts are described which are based both on modest (evolutionary) and revolutionary advancements in performance technologies but with emphasis on defining operations cost. Design options feature fully reusable, vertical-takeoff, horizontal-landing, rocket-powered concepts and include a variety of possible staging arrangements depending on the desired mission emphasis and the available technologies.

Eldred, Charles H.