The results from the new pressure test design were consistent with degradation of soil, as the slope angle decreased by 3.83%. The measurements from the height, slope, and bottom did not change as expected. The slope actually decreased instead of increasing, the bottom increased very slightly, and the height remained almost exactly the same. We think the change in angle came from a compression of the soil rather than the soil sliding but both are issues within soil erosion. The measurements were taken from immediately after bricks were placed and after 30 minutes of them being on top of the soil.
This new style of testing can have improvements in the future, such as where to place the bricks. If we decide to continue using the new design of slope, it will be carried on through toe wall and rain simulation testing.
Tuesday, May 17, 2016
New Pressure Test Design
In previous trials a small ledge was made at the top of the slope to create a place to place bricks, like so:
This structure is actually very stable and shows little changes, so the group decided to try another form of test test slope:
This structure is actually very stable and shows little changes, so the group decided to try another form of test test slope:
Not only is there more immediate change, bu the measurements are slightly easier, though there are more. The bricks are placed on the slop and allowed to shift the soil downward. measurements are taken before the placement, immediately after the placement and 30 mins after placement. This test is still in the trial stage, so moving forward it may or may not be the standard.
Current Research
The strength of the wall varies depending on factors such as the materials used, the design of the wall and the type of soil behind the wall. However, one factor remains constant between all walls, water pressure behind the wall. This factor can make or break most walls. The toe wall's defense is proper irrigation.Without this system, the wall is bound to have a short lifespan.
"Built right, he says, a retaining wall can outlast most people. But like any structure, their lifespan depends on how they're built. A wall built of railroad ties isn't likely to last as long as one made of concrete blocks, but even a concrete block wall can fail early. A lot of factors play into lifespan including: the soil type behind the wall, drainage around the wall, the material the wall is made of, and how strong the wall's foundation is.
"There's a lot of different ways to design [walls]," he says. "Ensuring that there's low water and water pressure behind [the wall] is critical.""
Walls Come Tumbling Down, J. Adrian Stanley, (Article found Here)
"Built right, he says, a retaining wall can outlast most people. But like any structure, their lifespan depends on how they're built. A wall built of railroad ties isn't likely to last as long as one made of concrete blocks, but even a concrete block wall can fail early. A lot of factors play into lifespan including: the soil type behind the wall, drainage around the wall, the material the wall is made of, and how strong the wall's foundation is.
"There's a lot of different ways to design [walls]," he says. "Ensuring that there's low water and water pressure behind [the wall] is critical.""
Walls Come Tumbling Down, J. Adrian Stanley, (Article found Here)
Rain Control Test
Last week, 3 tests were preformed, 2 pressure and 1 rain test. Unfortunately measurement errors made during the pressure tests that made the data unusable. The rain test data, however, was viable. The test preformed without pressure or an upper shelf on the slope. The rate of rain was 1.5 inches per hour and the slope was subjected to the rain simulation for 30 minutes. Measurements showed that that the angle of the left slope decreased by 8.8% and the right side angle of the slope by 9.4%. Qualitative investigation showed that there was erosion, but on very small, and near impossible to measure scale. This team has the ability to perform a test that will simulate approximately 6.5 inch/hour rain. this simulation may be subjected to the slope.
Week 8 Lab
The goal for the lab today is to test the toe wall and grid system under pressure to see if there is a difference from the control data.
Thursday, May 12, 2016
First Successful Applied Load Test
This week in lab we were able to get results from our applied load testing. After 30 minutes, there was no visible change but the calculations prove shifting took place. Initially, the angle was calculated to be 35.8 degrees. The calculated angle after applying the bricks was 32.5 degrees. A decrease in angle is consistent with soil degradation because the slope becomes gradually flatter.
Tuesday, May 10, 2016
Week 7 Lab
For today's lab, we are testing the rain simulator again to get a slower rate and to make a slope that will collapse under the pressure of the weight
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