Offshore anemometry platform capable of being reused and use method thereof
A technology of wind measurement and platform, which is applied in the field of wind measurement platform, can solve the problems of difficult construction technology and high construction cost, increased difficulty and cost of towage, unfavorable delay stability, etc., to achieve improved towage stability, increased rigidity, The effect of lowering the center of gravity
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Embodiment 1
[0042] Such as figure 1 As shown, the reusable offshore wind-measuring platform of this embodiment includes a hull 1 and a wind-measuring tower 2 for installing wind-measuring equipment, and the hull 1 includes a buoyancy tank 11 and a working platform 12 fixed on the buoyancy tank 11 , the wind measuring tower 2 is installed and fixed on the working platform 12 .
[0043] In this embodiment, the wind measuring tower 2 is composed of a multi-section boom 21. In this embodiment, six sections are used, and of course it can also be two sections, three sections, four sections, five sections, seven sections or more. The invention is not limited thereto. At least two adjacent booms can be folded or unfolded.
[0044] Specifically, in this embodiment, the wind measuring tower 2 adopts a folding boom structure, which is specifically composed of six booms 21 hinged to each other. A folding driving cylinder 23 is installed between adjacent booms 21. By folding the driving cylinder 23 ...
Embodiment 2
[0062] This embodiment is basically the same as the first embodiment, the main difference being that the structure of the wind measuring tower 2 is different. Such as Image 6 As shown, the wind measuring tower 2 in this embodiment is a telescopic structure, which is composed of multi-section box-shaped booms 21, and at least two adjacent booms 21 are provided with a telescopic mechanism. This embodiment preferably Using a single-cylinder bolt telescopic mechanism, it should be noted that the single-cylinder bolt telescopic mechanism is a commonly used telescopic drive mechanism for booms, so its specific structure will not be repeated here, and under the premise of this technical inspiration, there is no doubt that this Those skilled in the art can also use other types of boom telescopic drive methods as required, such as oil cylinders, air cylinders, rope rows and other drive mechanisms that can realize telescopic. The principle is the same as this embodiment, so it will not...
Embodiment 3
[0064] This embodiment is basically the same as the first embodiment, the main difference being that the structure of the wind measuring tower 2 is different. Such as Figure 7 As shown, the wind measuring tower 2 in this embodiment is a truss structure, which is composed of multi-section truss-type booms 21, and at least two adjacent booms 21 are provided with a telescopic mechanism. The telescopic mechanism can It can be an oil cylinder, an air cylinder, etc., or other driving mechanisms that can realize telescoping.
[0065] Specifically, in this embodiment, a self-elevating tower crane jib is adopted, and the self-elevating tower crane jib includes a basic section, a standard section and a climbing frame, and the wind measuring tower can be realized by continuously installing the standard section through the climbing frame. 2, the self-installation function of the jib of the self-elevating tower crane is used to realize the expansion and contraction of the arm, and the ex...
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