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New proposal could better protect space crews from radiation during long-term missions  (Source: www.luther.edu)
NASA believes active electrostatic radiation shielding is the best form of radiation protection during long-term missions

NASA is searching for a potential partner in the development of a proposal for radiation shielding during long-term space flights.

Radiation protection currently used, which is based on materials shielding, has several issues that need to be addressed and improved before it can be utilized in space. A major issue is that current materials shielding does not fully prevent long-term exposure to radiation. There is also a lack of data and studies associated with long-term tissues exposure to radiation with materials shielding in place, which further hinders any progress for this particular technology. In addition, cost is a problem that prohibits the use of current radiation protection for long periods of time. 

To address the above-mentioned problems, NASA is looking for candidates who would like to create a proposal along with NASA scientists and engineers. More specifically, NASA would like a potential partner that can develop a proposal that will utilize active electrostatic radiation shielding, which is believed to be the best radiation protection for long-term missions. This active electrostatic radiation shielding should make use of state-of-the-art evolutionary materials shielding technologies as well, according to NASA's specifications. 

Active electrostatic radiation shielding stops ions from hitting a spacecraft, which reduces unknown harmful effects due to long-term radiation exposure by 70 percent for galactic cosmic rays. As far as solar particle events go, the use of active electrostatic radiation shielding "practically eliminates" it. 

Those looking to work with NASA LaRC must have expertise in assessments of radiation exposure dose, experience with modeling and simulation, fabricated expandable structures for space-related needs, and have worked with electrons accelerators and charged ions. Those looking to work with the NASA Innovative Advanced Concepts (NIAC), where the NASA Research Announcement (NRA) "solicits" studies that research mission, system or architecture-related concepts, must be innovative and very early in development when it comes to the validation of active electrostatic radiation shielding. 

Partners will be chosen based on experience, past performance, technical capability, key personnel availability and demonstration of work on modeling and simulation, fabricated expandable structures for space-related needs, electrons accelerators and charged ions. If chosen, partners will be expected to create electrostatic active radiation shielding configurations, make simulation investigations, assess exposure for these configurations, fabricate expandable structures and prepare laboratory validation. 


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RE: If they partner with...
By randomly on 3/23/2011 6:26:55 PM , Rating: 2
The voltage needs to be extremely high, but the current will be very low. It should not take a great deal of power to run an electrostatic system.

Out to the orbit of Mars or even the asteroid belt Solar panels can achieve a considerably higher power to weight ratio than nuclear power (an order of magnitude better). Nuclear power becomes necessary at Jupiter and beyond, or if your craft suffers day/night cycles.

NASA wants to move to ASRG (Advanced Sterling Radioisotope Generator) anywhere the extreme reliability of RTGs is not needed. ASRG are around 25% efficient, produce more power, weigh less, and cost less. They also use only 1/4 as much Plutonium 238 which is currently in extremely short supply and is no longer in production anywhere in the world. NASA is already constrained in future missions due to the shortage of PU238.


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