A useful decision matrix for quantifying and comparing alternatives in the design trade-off process is the Pugh Matrix (or Pugh Concept Selection Matrix). This matrix allows teams to evaluate various design concepts against a set of criteria, such as supportability, producibility, and testability, by scoring each alternative relative to a baseline. By assigning weights to each criterion based on their importance, teams can calculate a total score for each design, facilitating an objective comparison that aids in selecting the most viable option. This structured approach ensures that decisions are data-driven and aligned with project goals.
A producible design is the output of the product development and design engineering systems that focus on manufacturability and cost-effectiveness. It integrates requirements from various disciplines, including materials science, assembly processes, and quality assurance, to ensure that the design can be efficiently produced at scale. Additionally, collaboration with manufacturing teams during the design phase helps identify potential production challenges and optimizes the design for practical implementation.
Yes, producible design is indeed an output of the systems engineering process, as it ensures that a product can be efficiently manufactured while meeting specified requirements and constraints. This design phase focuses on integrating technical and operational aspects to facilitate production, thereby bridging the gap between engineering and manufacturing. By emphasizing manufacturability, systems engineering helps optimize both the design and production processes, ultimately leading to higher quality and cost-effective products.
to demonstrate an affordable, supportable, interoperable, and producible system in its intended environment.
Fossil fuels are not increasing year by year. However, the known reserves of fossil fuels may be increasing, depending on the success of exploration efforts and the rate of depletion of the reserves. Also, reserves are divided into producible and non-producible portions, with the distinction based on what is considered economical to extract given current prices. As the producible portion is used up and as extraction technology improves, the dividing line between producible and non-producible moves and the producible portion may grow.
Jessica Brier has written: 'Infinitely producible'
Producible
Introduce variability in the manufacturing process
Producible
Tradeoffs in cost involve examining the development of alternative designs, _________________ and the required industrial base capability.
Oil is flowing from an oil deposit, up the well and into the gulf water. So, I think you are asking how much producible oil is in the reservoir. BP indicated that the producible oil is approximately 50 million barrels or 2,100 million gallons. So, letting the well flow until all the oil in the reservoir is gone is not an option.
Yes, a producible design is indeed the output of the systems engineering process, as it ensures that the design meets both functional requirements and manufacturing capabilities. Systems engineering integrates various disciplines and stakeholders to create a design that can be efficiently produced and maintained. By focusing on manufacturability early in the design process, it helps to minimize costs, reduce time to market, and enhance product quality.
They normally live and die in the same year. If your thinking of a composting box don't worry they normally producible 60 to 80 kids per mate.
A producible design is the output of the product development and design engineering systems that focus on manufacturability and cost-effectiveness. It integrates requirements from various disciplines, including materials science, assembly processes, and quality assurance, to ensure that the design can be efficiently produced at scale. Additionally, collaboration with manufacturing teams during the design phase helps identify potential production challenges and optimizes the design for practical implementation.
1. Stable product design and associated manufacturing processes 2. Quicker product introduction 3. Increased product quality cost 4. Lower overall costs