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Tsunami Warning

System

By: Kyle And Indiana

Tsunami Warning System

Introduction

In this project you want to construct a tsunami system that can give people enough time to evacuate, has a minimal false alarms, and has a low cost. We decided to place our shallow sensors at the coordinates of C4 and K6. We didn't use Earthquake sensors. The deep sensors were located at D6, H9, and J7.

False Alarms

For false alarms our goal was zero false alarms. We ended up meeting this goal by trading off warning time for false alarms and cost.

False Alarms

Comparison with another design False Alarms

When we compared the design our last design version 11 is like version 12 because, they both received all necessary warnings. Both also had a very low amount of false alarms version 11, had 1 and, version 12 had zero false alarms.

50-Year Cost

The final result of our average total 50-year cost was 82,218,000 and the goal was less than 90,000,000.

50 Year Cost

Comparison With Another Design 50 Year Cost

When we related this version to a different version than version 11. Version 12 relates to version 1 because both had very close costs. With version 1 costing 83,088,000 and version 12 costing 82,218,00.

Comparison with Another Design 50 Year Cost

Average Warning Time

The final result was 42.75 minutes and the goal was more than 60 minutes.

Average Warning Time

Comparison to another design Warning time

Comparison to another design Warning Time

To compare this version to another version I chose to compare it to version 11. Version 11 relates to version 12 because both had moderate but not the best warning times. With version 11 having 34 minutes and version 12 having 42.75 minutes.

Conclusion

In Conclusion, you should pick this warning system because it has an average of zero false alarms, a moderate cost, and high warning time. Please consider our design.

Conclusion

How Tsunamis and Warning Systems Work

https://www.youtube.com/watch?v=Wx9vPv-T51I&t=153s

Video

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