Global patterns of woody residence time and its influence on model simulation of aboveground biomass
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Explore the source record for details and available documents.
Explore the source record for details and available documents.
Supersonic wind tunnel testing - scout vehicle fin load and tip control hinge moments
Theta pinch shock implosion calculations by computer simulation of collisionless ion Vlasov equation
Semiempirical solution and mathematical model for jet efflux induced flow fields of V/STOL aircraft
A model for a memory organization for a multiprocessor with look-ahead and interleaved multimodule main memory is presented. The model is used to determine the extent of look-ahead and depth of interleaving that provide the most prolific speed match between processors and main memory.
A mathematical model of an ecosystem is developed. Secondary productivity is evaluated in terms of man related and controllable factors. Information from an existing physical parameters model is used as well as pertinent biological measurements. Predictive information of value to estuarine management is presented. Biological, chemical, and physical parameters measured in order to develop models of ecosystems are identified.
Ground processing and operation activities for selected automated and sortie payloads are evaluated. Functional flow activities are expanded to identify payload launch site facility and support requirements. Payload definitions are analyzed from the launch site ground processing viewpoint and then processed through the expanded functional flow activities. The requirements generated from the evaluation are compared with those contained in the data sheets. The following payloads were included in the evaluation: Long Duration Exposure Facility; Life Sciences Shuttle Laboratory; Biomedical Experiments Scientific Satellite; Dedicated Solar Sortie Mission; Magnetic Spectrometer; and Mariner Jupiter Orbiter. The expanded functional flow activities and descriptions for the automated and sortie payloads at the launch site are presented.
For abstract, see N75-20432.
For abstract, see N75-20432.
For abstract, see N75-20432.
For abstract, see N75-20432.
For abstract, see N75-20432.
A computer program used to process the equations is presented, and a full description of equation implementation is given. The model was implemented in the IBM 360 and CDC series computer systems.
For abstract, see N78-20137.
The JPL energy consumption computer program developed as a useful tool in the on-going building modification studies in the DSN energy conservation project is described. The program simulates building heating and cooling loads and computes thermal and electric energy consumption and cost. The accuracy of computations are not sacrificed, however, since the results lie within + or - 10 percent margin compared to those read from energy meters. The program is carefully structured to reduce both user's time and running cost by asking minimum information from the user and reducing many internal time-consuming computational loops. Many unique features were added to handle two-level electronics control rooms not found in any other program.