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新型铝合金型材日光温室结构静力性能分析

李泽志 赵林 李方慧 王成海 王震 马志涛

农业与技术2026,Vol.46Issue(5):54-61,8.
农业与技术2026,Vol.46Issue(5):54-61,8.DOI:10.19754/j.nyyjs.20260530009

新型铝合金型材日光温室结构静力性能分析

Static Performance Analysis of a New Aluminum Alloy Profile Solar Greenhouse Structure

李泽志 1赵林 1李方慧 1王成海 1王震 1马志涛1

作者信息

  • 1. 黑龙江大学建筑工程学院,哈尔滨 150086
  • 折叠

摘要

Abstract

To assess the applicability of a new type of aluminum alloy profile in the structural skeleton of solar greenhouses,a structural model of an aluminum alloy profile greenhouse was established using finite element software.First,nine typical load cases,including dead loads,snow loads,wind loads,crop loads,and maintenance loads,were considered to systematically analyze the displacement and stress distribution patterns of the frame and identify the most unfavorable load condition.Second,the arc-length method was employed to trace the entire nonlinear instability process of the frame under non-uniform snow load.Finally,the influence of structural span(8 m,10 m,12 m)and profile wall thickness(1.9 mm,2.9 mm,4.3 mm)on the ultimate bearing capacity was investigated.The results indicate that non-uniform snow load is the most unfavorable factor governing structural design,inducing a maximum vertical displacement of 20.45 mm and a maximum bending stress of 57.19 MPa in the frame,significantly exceeding those under other load cases.Structural instability initiates at the front roof base and the ridge connection,and the ultimate bearing capacity is reached when the basic snow pressure attains 1.94 kN·m-2.The ultimate bearing capacity is highly sensitive to span variation;increasing the span from 8 m to 12 m results in a substantial capacity reduction of 60.82%.While increasing wall thickness enhances the bearing capacity,the mechanical efficiency diminishes.Increasing the thickness from 1.9 mm to 4.3 mm yields only a 28.87%improvement in capacity,alongside a 26.7%increase in material consumption.This study provides a theoretical basis for the disaster-resistant design and optimization of aluminum alloy profile solar greenhouses.

关键词

铝合金温室/荷载/静力分析/承载力

Key words

aluminum alloy greenhouse/loads/static analysis/bearing capacity

分类

农业科技

引用本文复制引用

李泽志,赵林,李方慧,王成海,王震,马志涛..新型铝合金型材日光温室结构静力性能分析[J].农业与技术,2026,46(5):54-61,8.

基金项目

国家自然科学基金项目"光伏屋面体系风吹雪机理及其雪荷载研究"(项目编号:52478546) (项目编号:52478546)

2025年度省属本科高校基本科研业务费(编号:2025-KYYWF-ZR0445) (编号:2025-KYYWF-ZR0445)

农业与技术

1671-962X

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