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I’m a student currently working on my graduation project. The topic assigned by my teacher is \"Analysis of the lateral vibration of tower equipment under wind loads.\" I would appreciate any help from those who are more experienced. 1. Tasks and requirements for this graduation project: In industries such as chemicals, petroleum refining, pharmaceuticals, and food processing, tower equipment represents an important type of unit operation device. It is widely used in large quantities, and most of these devices are installed outdoors and operate there. Tower equipment is subjected to complex loads. Among them, the destructive effect of wind load cannot be underestimated. Numerical calculation methods such as finite element analysis are used to model the tower equipment, analyze the effect of wind loads, determine the inherent properties of the tower equipment, and examine its lateral vibration. 2. Specific tasks involved in the graduation project (including original data, technical requirements, work requirements, etc.): (1) Review relevant materials and learn the theoretical knowledge of tower equipment design, including the structure and loads of such equipment ; (2) Review relevant materials, learn and master the modeling and solution steps of the ANSYS finite element analysis software ; (3) Learn and master the basic knowledge of flow fields ; (4) For tower equipment, an FEM model is established using ANSYS ; (5) Perform a force analysis of the tower equipment under wind load, and apply constraint conditions and loads to the model ; (6) Using the established ANSYS finite element model, study the relationship between the inherent properties of the tower equipment and its lateral vibration ; (7) Translate a foreign-language document of over 3,000 words ; (8) Complete the graduation project report. 3. Requirements for the results of the graduation project (including the graduation project report, drawings, physical samples, etc.): (1) Graduation project report; (2) 3D model of the tower equipment; (3) Finite element model and analysis results