Pengaruh Variasi Stuktur Rangka Terhadap Kekuatan Pembebanan Pada Stasiun Pengisian Daya Listrik dengan Panel Surya

Ade Suparman, Ade Sunardi, Mohamad Zaenudin
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Abstract

The use of solar panels in electric power charging stations is becoming increasingly popular as part of efforts to adopt renewable energy sources. In this context, the structural framework supporting the solar panels plays a crucial role in maintaining the stability and reliability of the system. Therefore, this thesis aims to investigate the influence of various structural framework variations on the strength of static loading in solar-powered electric charging stations. The research methodology employed simulation of static loading at three different load levels, namely 40 kg, 50 kg, and 60 kg. The analysis was conducted by comparing the equivalent stresses and total deformations between "Design 1" and "Design 2" at each load level. The research findings reveal significant differences in equivalent stresses and total deformations between the two designs at each load level. Design 1, with a stiffer structural framework, exhibited higher equivalent stresses and greater total deformations compared to Design 2. Consequently, this study provides a deeper understanding of the influence of various structural framework variations on the strength of static loading in solar panel support structures. These findings can serve as a basis for optimizing the structural design of solar-powered electric charging systems.
框架结构变化对太阳能电池板充电站负载强度的影响
作为采用可再生能源努力的一部分,在充电站中使用太阳能电池板正变得越来越流行。在这种情况下,支撑太阳能电池板的结构框架对保持系统的稳定性和可靠性起着至关重要的作用。因此,本论文旨在研究各种结构框架变化对太阳能充电站静载荷强度的影响。研究方法采用了三种不同负载水平(即 40 千克、50 千克和 60 千克)下的静态负载模拟。分析方法是比较 "设计 1 "和 "设计 2 "在每个负载水平下的等效应力和总变形。研究结果表明,两种设计在每个荷载水平下的等效应力和总变形量都存在显著差异。与 "设计 2 "相比,"设计 1 "的结构框架更坚固,表现出更高的等效应力和更大的总变形。因此,这项研究加深了人们对各种结构框架变化对太阳能电池板支撑结构静载荷强度影响的理解。这些发现可作为优化太阳能电动充电系统结构设计的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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