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water body inside a horizontally one-dimensional enclosed harbor basin with constant water depth triggered by falling wedges with various horizontal falling positions, initial falling velocities and masses. Based on both Fourier transform analysis and wavelet spectrum analysis for the time series of the free surface elevations inside the harbor basin, it is found for the first time that the wedge falling inside the harbor can directly trigger harbor resonance. The influences of the three factors (including the horizontal falling position, the initial falling velocity, and the mass) on the response amplitudes of the lowest three resonant modes are also investigated. The results show that when the wedge falls on one of the nodal points of a resonant mode, the mode would be remarkably suppressed. Conversely, when the wedge falls on one of the anti-nodal points of a resonant mode, the mode would be evidently triggered. The initial falling velocity of the wedge mainly has a remarkable effect on the response amplitude of the most significant mode, and the latter shows a gradual increase trend with the increase of the former. While for the other two less significant modes, their response amplitudes fluctuate around certain constant values as the initial falling velocity rises. 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