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WASTEWATER ENGINEERING HANDBOOK: Professional Methods for Treatment Processes, Resource Recovery, Biological Systems, Sludge Management, Plant Operations, and Environmental Compliance - Softcover

Lawson, Christopher J

 
9798192177686: WASTEWATER ENGINEERING HANDBOOK: Professional Methods for Treatment Processes, Resource Recovery, Biological Systems, Sludge Management, Plant Operations, and Environmental Compliance

Synopsis

How do you know your spacecraft design actually closes as one system when every major decision affects something else?
Can you prove that your requirements, resource budgets, interfaces, subsystem choices, margins, and verification evidence still make sense together when the design changes?

A spacecraft can look technically sound on paper while hidden interactions create problems elsewhere. A change in battery capacity can affect mass and thermal balance. Antenna placement can influence pointing and structural decisions. Software partitioning can affect reliability, testability, and operations. When these relationships are handled separately, you can spend valuable time correcting problems that should have been visible much earlier.

This handbook gives you a connected framework for working through those decisions. It takes you from mission needs and requirements through operational concepts, architecture selection, trade studies, budgets and margins, interface control, subsystem design, integration, verification, testing, reliability, safety, operations, cost, and program decision-making.

What You Will Be Able to Do
  • Translate mission needs into measurable requirements, allocations, traceability, and verification evidence.

  • Evaluate orbital and environmental conditions and understand how they become design inputs.

  • Build and assess mass, power, energy, data, thermal, propellant, pointing, and communications budgets while accounting for margins and assumptions.

  • Compare architectural alternatives using trade studies, uncertainty, sensitivity, risk, and cross-disciplinary consequences.

  • Control interfaces and understand how changes in one subsystem can propagate into other areas of the vehicle.

  • Analyze structures, mechanisms, propulsion, electrical power, thermal control, avionics, flight software, communications, guidance and control, and payload accommodation.

  • Prepare for integration, environmental testing, verification closure, anomaly resolution, reliability and safety activities, mission operations, and program-level decisions.

What You Will Work With

The book develops mission life-cycle thinking, requirements engineering, Concepts of Operations, orbital analysis, architecture and trade studies, configuration control, technical budgets, margins, interface management, subsystem interactions, payload compatibility, environmental testing, verification, reliability, safety, risk, operations, cost, and schedule. It also includes practical engineering worksheets and templates covering mass properties, power and energy, data, thermal control, propellant, pointing, communications, interfaces, verification compliance, testing, anomalies, hazards, risk, operations, and program control.

Who This Book Is For

This handbook is written for upper-level engineering students, graduate students, practicing aerospace engineers, technical managers, and specialists who need to work across subsystem boundaries. It assumes a foundation in engineering mathematics, mechanics, thermodynamics, electrical engineering, and introductory orbital mechanics.

If you need to understand how technical decisions connect across an entire spacecraft program, this handbook gives you a practical framework for analyzing those connections, controlling interfaces, managing resources, and building credible evidence for engineering decisions.

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