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锡虞加油站透视效果图:
中海石化加油站夜景效果图制作:
华润燃气站效果图制作:
筑创加油站沿街透视图:
中海石化加油站3D效果图制作:
筑创加油站夜景效果图:
加油站内部商店装修效果图:
中石化加油站夜景效果图:
佰龙石化报批效果图制做:
华润加油站投标效果图制做:
华润燃气CNG加气加氢站的效果图:
锡虞加油站鸟瞰图设计:
东升加油站三维效果图制做:
湖州胜隆练溪路加油站3D效果图制做:
湖州胜隆练溪路加油站俯视效果图制做:
钱桥镇一路顺加油站鸟瞰图制做:
江阴市西石桥农机燃料配件供应站加油站改造效果图制作:
江阴市新时代加油站有限公司加油站迁建项目:
十里甸加油站效果图制作:
加油站规划设计效果图技术分析报告
一、设计要素分析
功能分区规划
采用"四区分离"布局:加油区(含6-8个独立加油岛)、油罐区(地下卧式储罐间距≥0.8m)、车行道(转弯半径≥9m)及辅助区(含便利店、洗车设施)形成明确动线
案例参考:中国石化一号加油站通过南北双动线设计实现人车分流,加油棚与站房采用折板结构增强视觉通透性
安全技术指标
防火间距:油罐区距站房≥4m,加油机距出口≥6m,符合GB50156-2002规范要求
防爆设计:效果图需标注防爆电气设备安装点位及静电接地装置
形象设计趋势
檐口采用立体铝塑板配合LED背光,品牌标识夜间可见距离≥200m
色彩方案:中燃石油白蓝主色调、道森加油站蓝绿海洋风等差异化设计案例
二、效果图专项审查要点
三维建模规范
油罐区需体现双层防渗结构及泄漏检测井三维模型
加油棚净高≥4.5m,立柱间距按6m模数设计
场景模拟验证
车流模拟:需验证高峰时段12辆/分钟通过能力
消防演练区:在效果图中标注35KW配电室与消防水池位置
环保设施可视化
油气回收装置管道走向标记
污水处理区与垃圾分类收集点布局
三、典型问题改进建议
常见缺陷:83%项目存在车行道坡度>6%的设计超标
优化方案:采用BIM技术进行地形高程模拟,调整填土高度至0.3-0.5m
(附图说明:建议补充总平面布局图、立面效果图、管网综合图三类图纸的彩色渲染版本)
一、规划基础要求
选址标准
城区站需临近主干道交叉口,郊区站应距公路出入口≤500m,用地坡度需≤6%且避开地质灾害区
示例:淮安清涟大道加油站选址于城市干道交叉口,用地面积4413㎡满足三级站标准
安全间距
油罐区距站房≥4m,加油机距出入口≥6m,配备油气回收系统时可缩减50%间距
实体围墙高度≥2.2m,罩棚有效高度≥4.5m(轿车专用站可降至3.6m)
二、功能分区设计
加油区
加油岛宽度≥1.2m,高出地坪0.2m,预埋M14×130地脚螺栓配合管线地坑
双车道宽度≥6.5m,停车区禁用沥青铺装
储油区
地下卧式钢罐直埋,36m³LNG储罐需单独设置潜液泵
双层防渗结构+泄漏检测井为强制要求
三、建筑设计要点
站房
室内地坪高于加油区0.2m,配电间门窗朝非爆炸危险区外开
楚雄东瓜镇案例显示:建筑密度26.28%、绿地率22.25%为典型参数
环保设施
油气回收管道与污水处理系统需在总图中明确标注
采用非燃烧材料铺装地面,排水坡度≥0.5%
四、发展趋势
智能化:增加充电桩与无感支付系统,车流量模拟需达12辆/分钟
绿色化:2024年设计趋势显示3D渲染技术与渐变色彩应用提升视觉体验
来源:专业的效果图公司,追求卓越18年的三维图制作经验,承接厂房/车间/仓储/别墅/民宿/农庄/加油站/办公楼/会所/景观/园林/古建/祠堂/工程/亮化/道路/桥梁/幕墙/展馆/室内类效果图制做,覆盖拌合站工程|工业|产品|机械|设备|生产流水线|钢结构领域的3d效果图制做,结合3D动画全景图交互渲染技术助力,提升设计方案创新和互动的的品质!—高维设计
Technical Analysis Report on Planning and Design Rendering of Gas Station
1、 Design element analysis
Functional Zoning Planning
Adopting a "four zone separation" layout: refueling area (including 6-8 independent refueling islands), oil tank area (underground horizontal storage tank spacing ≥ 0.8m), roadway (turning radius ≥ 9m), and auxiliary area (including convenience stores and car washing facilities) form a clear flow line
Case reference: Sinopec No.1 gas station achieves pedestrian and vehicle separation through the design of a north-south dual flow line. The fuel shed and station building adopt a folded plate structure to enhance visual transparency
Safety technical indicators
Fire separation distance: The distance between the oil tank area and the station building is ≥ 4m, and the distance between the refueling machine and the outlet is ≥ 6m, in accordance with the requirements of GB50156-2002 standard
Explosion proof design: The rendering should indicate the installation points of explosion-proof electrical equipment and static grounding devices
Image design trends
The eaves are made of three-dimensional aluminum-plastic panels with LED backlight, and the brand logo can be seen at a distance of ≥ 200m at night
Color scheme: Differentiated design cases such as Zhongran Petroleum white blue main color scheme and Dawson gas station blue-green ocean wind
2、 Key points for special review of renderings
3D Modeling Specification
The oil tank area needs to reflect a double-layer anti-seepage structure and a three-dimensional model of the leakage detection well
The net height of the refueling shed is ≥ 4.5m, and the spacing between columns is designed according to a module of 6m
Scene simulation verification
Traffic simulation: Need to verify the passing capacity of 12 vehicles per minute during peak hours
Fire drill area: Mark the location of the 35KW distribution room and fire water pool in the rendering
Visualization of environmental protection facilities
Pipeline route marking of oil and gas recovery unit
Layout of sewage treatment area and garbage classification collection points
3、 Typical problem improvement suggestions
Common defects: 83% of projects have design deviations with roadway slopes greater than 6%
Optimization plan: Use BIM technology to simulate terrain elevation and adjust the filling height to 0.3-0.5m
(Attached image description: It is recommended to supplement the color rendering versions of three types of drawings: general layout, elevation rendering, and comprehensive pipe network diagram.)
1、 Basic requirements for planning
siting criteria
Urban stations should be located near the intersection of main roads, while suburban stations should be ≤ 500m away from highway entrances and exits. The land slope should be ≤ 6% and avoid geological hazard areas
Example: The Huai'an Qinglian Avenue gas station is located at the intersection of urban main roads, with a land area of 4413 square meters, meeting the standards of a third level station
Clearance
The distance between the oil tank area and the station building is ≥ 4m, and the distance between the refueling machine and the entrance and exit is ≥ 6m. When equipped with an oil and gas recovery system, the distance can be reduced by 50%
The height of the physical fence is ≥ 2.2m, and the effective height of the canopy is ≥ 4.5m (which can be reduced to 3.6m for car dedicated stations)
2、 Functional zoning design
Refueling area
The width of the refueling island is ≥ 1.2m, with a height of 0.2m above the ground level. M14 × 130 anchor bolts are pre embedded to match the pipeline pit
Two lane width ≥ 6.5m, asphalt pavement is prohibited in parking areas
oil storage area
Underground horizontal steel tank buried directly, 36m ³ LNG storage tank requires separate submersible pump installation
Double layered anti-seepage structure+leak detection well is a mandatory requirement
3、 Key points of architectural design
station building
The indoor floor is 0.2m higher than the refueling area, and the doors and windows of the distribution room face outside the non explosive danger zone
The case study of Donggua Town in Chuxiong shows that building density of 26.28% and green space ratio of 22.25% are typical parameters
Environmental protection facilities
The oil and gas recovery pipeline and sewage treatment system need to be clearly marked in the overall plan
Using non combustible materials to pave the ground, with a drainage slope of ≥ 0.5%
4、 Development Trends
Intelligence: Increase charging stations and contactless payment system, with a simulated traffic flow of up to 12 vehicles per minute
Greening: 2024 Design Trends Display 3D Rendering Technology and Gradient Color Applications to Enhance Visual Experience
Source: A professional rendering company that pursues excellence with 18 years of experience in 3D rendering. We undertake the production of 3D renderings for factories, workshops, warehouses, villas, homestays, farms, gas stations, office buildings, clubs, landscapes, gardens, ancient architecture, ancestral halls, engineering, lighting, roads, bridges, curtain walls, exhibition halls, and indoor spaces. We cover the fields of mixing station engineering, industry, products, machinery, equipment, production lines, and steel structures, and combine 3D animation panoramic interactive rendering technology to enhance the quality of design innovation and interaction! - High dimensional design