使用 Bentley Culvert Master 软件分析和设计箱形暗渠

A. Dawood, Dana K. Mawlood
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箱涵适用于自然溪流与公路和铁路线交汇的情况。这项研究利用数字高程模型和水模型系统软件评估了主要河谷的集水区,并确定了造成科什塔帕市洪水泛滥的因素。研究涉及对现有暗渠的分析,并为新暗渠的设计生成必要的数据。尽管存在现有暗渠,但在 2021-2022 年的上一次洪水事件中,洪水位仍上升到高出埃尔比勒-基尔库克路面标高 1 米以上。研究收集了研究区域的水文和气候数据,使用世界土壤数据库统一软件进行了土壤类型分析,并使用水文工程中心-水文模型系统软件进行了水力计算,估算了 50 年、100 年和 200 年洪水重现期河谷的最大泄洪量,以选择最佳经济替代方案。新暗渠的设计使用了 Bentley Culvert Master 软件,以确保洪水能够流过暗渠而不会上升到街道水平面。结果表明,新暗渠的设计超过了现有暗渠的容量。结果表明,最经济的水力设计方案是第一种方案,即 100 年一遇的 201 立方米/秒;新设计的暗渠横截面积为 52.5 平方米。
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Analysis and Design of a Box Culvert Using Bentley Culvert Master Software
Box culverts are utilized in situations where natural stream flow intersects with roads and railway lines. This research utilizes a digital elevation model and the water Modeling System software to assess the catchment area of the primary valley and identify the factors contributing to flooding in Qoshtapa City. The study involves an analysis of the existing culvert and generated the necessary data for the design of a new culvert. Despite the presence of the existing culvert, floodwater levels rose to over 1 m above the roadway elevation of Erbil-Kirkuk during the last flood event in 2021–2022. The research collected hydrological and climatic data for the study area, conducted soil type analysis using the Harmonized World Soil Database software, and performed hydraulic calculations to estimate the maximum flood discharge of the valley using the Hydrological Engineering Center-Hydrological Modeling System software for flood return periods of 50, 100, and 200 years, for design, to select the best economic alternative. The new culvert design was executed using Bentley Culvert Master software to ensure that floodwaters can flow through the culvert without rising to street level. The results indicated that the new culvert design surpasses the capacity of the existing one. The results show that the best economic alternative hydraulic design is the first alternative capacity of 201 m3/s of a 100-year return period; the new design cross-section area of the culvert is 52.5 m2.
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