A multifunctional unmanned-boat twin-
hull boat structure comprises a boat body, a supporting frame, a box body, a clamp, a
propeller, a supporting board, four connecting boards, bolts and nuts. The four connecting boards are adopted to be connected with the two boat bodies to form a twin-
hull boat structure, the boat bodies and the supporting frame are welded and fixed into a whole, remaining components are connected through bolts, and then the multifunctional unmanned-boat twin-
hull boat structure can be dismounted conveniently and is beneficial to transportation. A streamline form is adopted by the surfaces of the boat bodies, the body bodies are wide and flat, and the head portions, left sides and right sides of the boat bodies are slightly sharp. The inclined angle between two sides of the supporting frame is 90 degrees, the supporting frame is L-shaped, the supporting board is respectively connected with two sides, with an inclined degree of 90 degrees, of the supporting frame through bolts, and then two gestures of the boat bodies can be adjusted. When the multifunctional unmanned-boat twin-hull boat structure is at a shallow position, the wide and flat sides of the boat bodies are floated above the water surface, namely, the boat bodies stand on the water surface transversely, the draft depth can be reduced, and the multifunctional unmanned-boat twin-hull boat structure is not grounded at the shallow position. When the multifunctional unmanned-boat twin-hull boat structure is at a deep position, the slightly-sharp ends of the boat bodies are floated above the water surface, namely, the boat bodies stand on the water surface vertically, the draft depth can be increased, and the stability of the unmanned boat on the water surface is improved.