The considerable influence of the soil backfill properties and that of the method of compacting it on the stiffness of soilsteel
structures is characteristic of the latter. The above factors (exhibiting randomness) become apparent in shell deformation measurements
conducted during construction and proof test loading. A definition of soil-shell structure stiffness, calculated on the basis of
shell deflection under the service load, is proposed in the paper. It is demonstrated that the stiffness is the inverse of the deflection
influence function used in structural mechanics. The moving load methodology is shown to be useful for testing, since it makes it
possible to map the shell deflection influence line also in the case of group loads (concentrated forces), as in bridges. The analyzed
cases show that the shell’s span, geometry (static scheme) and the height of earth fill influence the stiffness of the structure. The soilsteel
structure’s characteristic parameter in the form of stiffness k is more suitable for assessing the quality of construction works
than the proposed in code geometric index ω applied to beam structures. As shown in the given examples, parameter k is more effective
than stiffness parameter λ used to estimate the deformation of soil-steel structures under construction. Although the examples
concern railway structures, the methodology proposed in the paper is suitable also for road bridges.
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