Refine Your Search

Search Results

Viewing 1 to 2 of 2
Technical Paper

OCAM - A CELSS Modeling Tool: Description and Results

1992-07-01
921241
Controlled Ecological Life Support System (CELSS) technology is critical to the Space Exploration Initiative. NASA's Kennedy Space Center (KSC) has been performing CELSS research tor several years, developing data related to CELSS design. We have developed OCAM (Object-oriented CELSS Analysis and Modeling), a CELSS modeling tool, and have used this tool to evaluate CELSS concepts, using this data. In using OCAM, a CELSS is broken down into components, and each component is modeled as a combination of containers, converters and gates which store, process and exchange carbon, hydrogen, and oxygen on a daily basis. Multiple crops and plant types can be simulated. Resource recovery options modeled include combustion, leaching, enzyme treatment, aerobic or anaerobic digestion, and mushroom and fish growth. Simulation results include printouts and time-history graphs of total system mass, biomass, carbon dioxide, and oxygen quantities; energy consumption; and manpower requirements.
Technical Paper

Reliability of Biological Systems Based on CBF Data

1996-07-01
961498
The reliability of biological life support systems, critical for long-duration human space missions, has been questioned. We propose that properly engineered biological components are inherently reliable, and support this view with data from nine years of operation of the CELSS Breadboard Facility (CBF) at Kennedy Space Center. Reliability problems in a bioregenerative life support system will generally be caused by support system failures, they will generally not be catastrophic, and the crew will have ample time to respond. Thus, biological system reliability can be good, and the impact of low component reliability would generally be to increase system cost rather than to risk mission failure.
X