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This bounty of possibilities makes it extremely daunting for scientists who want to test string theory by comparing its predictions to the real world.
It may be that we're too big to test string theory; or that we don't live long enough; or that we live in the wrong part of the universe; or that we lack the required equipment; or that we're too stupid.
To study the interaction between the test string and the riser, and the structural response of a deepwater test string in various operating modes, a model of the nonlinear dynamics for a deepwater test string is developed.
The stress-time history of the test string is obtained to study vibration mechanisms and fatigue development in the test string.
Open image in new window Fig. 1 Schematic diagram for the deepwater test string system.
Figure 3 shows the effects of waves on the deepwater test string system.
Open image in new window Fig. 3 Effects of waves on the deepwater test string system.
Thus, greater top tension could reduce fatigue damage in the test string due to wave action.
(3) Several measures are proposed to improve the operation safety of the deepwater test string.
Open image in new window Fig. 2 The contact model for test string and riser.
The flowhead is a manifold installed at the top of the test string and performs several control functions.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com