Introduction to Sustainable Civil Engineering Design
Introduction to Sustainable Civil Engineering Design
1st Edition
ISBN: 9780134013916
Author: Neumann
Publisher: PEARSON
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Chapter 3, Problem 11EDDS
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List three options that can be examined to cope with the situation of low lying area threatened by rise in sea level. Find the cost associated with these three methods.

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Two alternatives are under consideration for maintenance of a bridge. Select the mostcost-effective alternative using present worth analysis. Assume an interest rate of10% per year and a design life of 50 years for each alternative.Alternative A consists of annual maintenance costs of $5,000 per year for the designlife except for:Year 20, in which bridge deck repairs will cost $20,000Year 30, in which a deck overlay and structural repairs will cost $105,000Alternative B consists of annual maintenance costs of $3,000 per year for the designlife except for:Year 20, in which bridge deck repairs will cost $35,000Year 30, in which a deck overlay and structural repairs will cost $85,000
Question 3. Calculate the risk for each option below. a) A dam shall be constructed to withstand a flood that occurs once every 10,000 years. The dam is expected to have an economic life of 100 years. What is the probability of a flood exceeding the design flood over the life of the dam? b) The intended design life of a bridge is 120 years and it is designed for a flood expected to occur once in 100 years. What is the probability of seeing a flood greater than the expected one in 100 years during the bridge's design life? c) One bridge foot will be built inside the temporary cofferdam. If the cofferdam is designed for a flood that is expected to occur once in 20 years and will remain in the river for two winters, what is the probability of a flood greater than the design flood?
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Introduction to Sustainable Civil Engineering Design

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