基于场景优化的越南柔性路面设计轴载调查数据选择案例研究

Quy Le Xuan, Dung Chu Tien, Anh Vu Tuan
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引用次数: 0

摘要

越南独特的交通模式具有车辆类型、车轴配置和超载混合的特点,这给当前的柔性路面设计方法带来了挑战。本研究探讨了选择不同的车辆轴载调查数据如何影响越南道路路面设计和修复的准确性。利用越南现行的柔性路面计算程序,评估各种数据选择方法及其对路面响应的影响。通过比较每种方案下计算出的路面设计标准,本研究旨在为工程师选择合适的轴载数据进行路面设计提供明确的指导。反过来,这将有助于设计和维护更耐用、更可持续的路面,最终促进越南更高效、更有弹性的交通基础设施。研究方法包括分析各种轴载调查数据方案,包括代表典型交通状况、超载车辆和特定车辆类型的方案。然后对每种情况下计算出的路面响应进行比较,以评估数据选择对设计结果的影响。这项研究的结果有望为越南的路面工程师提供有价值的见解,使他们能够选择适当的轴载数据来进行准确的路面设计和修复。这将有助于建设更耐用、更可持续的道路基础设施,从而形成更高效、更有弹性的交通网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A case study on scenario-based optimization for axle load survey data selection for flexible pavement design in Vietnam
The unique traffic patterns in Vietnam, characterized by a mix of vehicle types, axle configurations, and overloading, pose challenges to current flexible pavement design methods. This study investigates how selecting different vehicle axle load survey data scenarios impacts the accuracy of pavement design and rehabilitation for roads in Vietnam. Evaluation of various data selection methods and their influence on pavement response using the current flexible pavement calculation procedure in Vietnam. By comparing the pavement design criteria calculated under each scenario, this research aims to provide clear guidelines for engineers choosing appropriate axle load data for pavement design. This, in turn, will lead to the design and maintenance of more durable and sustainable pavements, ultimately promoting a more efficient and resilient transportation infrastructure in Vietnam. The research approach involves analyzing various axle load survey data scenarios, including those representing typical traffic conditions, overloaded vehicles, and specific vehicle types. The calculated pavement responses under each scenario are then compared to assess the impact of data selection on design outcomes. This study's findings are expected to provide valuable insights for pavement engineers in Vietnam, enabling them to select appropriate axle load data for accurate pavement design and rehabilitation. This will contribute to building more durable and sustainable road infrastructure, resulting in a more efficient and resilient transportation network
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