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Aerospace Engineering on the Back of an Envelope by Irwin E. Alber Book Details
Book Name | Aerospace Engineering on the Back of an Envelope |
Author | Irwin E. Alber |
Category | Aeronautical Engineering Books, Education Books |
Book Language | English |
Publisher | Praxis Publishing |
Pages | 347 |
ISBN | 9783642225369 |
Country | India |
Book Size | 7 MB |
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About Aerospace Engineering on the Back of an Envelope by Irwin E. Alber Book
Aerospace Engineering on the Back of an Envelope is a phrase often used metaphorically to describe the simplified calculations, estimations, or rough engineering sketches that engineers might jot down on the back of an envelope or a scrap of paper in order to quickly analyze or solve a problem related to aerospace engineering. The phrase highlights the notion that even complex aerospace engineering concepts can sometimes be distilled down to basic principles and equations that can be quickly sketched out for initial analysis.
In practice, aerospace engineers often engage in detailed and rigorous calculations, simulations, and designs using specialized software and tools. However, the idea of performing quick estimations on the back of an envelope can be a valuable skill, especially when making initial assessments, feasibility studies, or rough comparisons between different design options.
Some basic concepts that might be tackled "on the back of an envelope" in aerospace engineering could include:
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Orbital Mechanics: Estimating orbital velocities, periods, and trajectories based on simplified equations like the vis-viva equation or Kepler's laws.
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Aerodynamics: Quick calculations of lift, drag, and other forces for basic aircraft or spacecraft shapes using principles from fluid dynamics.
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Propulsion: Estimations of thrust, specific impulse, and fuel consumption for simple rocket propulsion systems.
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Structural Analysis: Rough calculations for determining stresses and load distributions on basic structures under different conditions.
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Trajectory Analysis: Basic calculations for determining launch trajectories, reentry angles, and vehicle landing positions.
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Energy Requirements: Estimations of energy needs for various aerospace systems, such as power requirements for onboard systems or solar panel efficiency.
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Cost Estimations: Quick assessments of costs for materials, manufacturing, and launch based on rough quantities and available data.
It's important to note that while these envelope-style calculations can provide useful insights and initial guidance, they are often oversimplifications and might not capture all the complexities and nuances of real-world aerospace engineering problems. They can, however, serve as a starting point for more detailed analysis and decision-making processes.
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