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Appendix C<br />

The periodic counterpart of the<br />

operatorT<br />

Due to the nonlocal definition of the Hilbert trans<strong>for</strong>m, it is necessary to redefine<br />

it when restricting our problem to the periodic domain <strong>for</strong> numerical implementations.<br />

To that end we keep in mind its geometrical interpretation, that is, the<br />

operator that takes a harmonic function’s normal derivative at the boundary and<br />

trans<strong>for</strong>ms it into its tangential derivative at the boundary.<br />

Consider the following problem <strong>for</strong> periodicξ∈Π[0, 2l],<br />

⎧<br />

⎪⎨<br />

φ ξξ +φ ζζ = 0, −h 2 /L≤ζ≤ 0, 0≤ξ≤2l,<br />

φ(0,ζ)=φ(2l,ζ),<br />

φ ζ (ξ, 0)=g(ξ),<br />

⎪⎩<br />

φ ζ (ξ,−h 2 /L)=0.<br />

93

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