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Bus for urban public transport: energy performance optimization

机译:城市公共交通巴士:能源性能优化

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摘要

Nowadays many people use public transports in urban centers. Consequently, every day a lot of buses move within cities, trying\udto ensure the best service to citizens. During the year buses become crowded places and using an air conditioning system in\udconstant operation, it tries to ensure a certain condition of comfort for the passengers on board. The aim of this study is to\udanalyze and optimize the energy performance of a bus shell, identifying practical solutions have not yet been adopted in order to\udreduce the impact of air conditioning on bus’ consumption and, therefore, on air pollution. For this reason it was decided to\udconduct a thermal analysis of a bus for public transport, in order to understand the behavior of the bus shell and to deduce\udpossible optimization measures that have not yet been made until now. The analysis was carried out considering the hottest day\udof July and the coldest day of January, considering the operating conditions based on the most common graphics TGM (Average\udDaily Traffic) able to define the concentration of traffic city during the 24 hours per day. The study was done using the dynamic\udsimulation software TRNSYS. With this software it was possible to recreate faithfully the structure of the bus and the external\udenvironmental conditions, assessing the impact of different technical solutions for an improvement of internal conditions and a\udreduction of the cooling capacity required. As the presence of passengers on public transport are considered like a “benefit”\udduring the winter, the analysis is started with the identification of a summer solution and the subsequent evaluation of this\udsolution for the winter time. The aim of this study was to optimize the bus shell and select the most appropriate solutions.\udRegarding the transparent surfaces it has been given importance to factors such as the thermal transmittance and the solar gain\udfactor (g-value). Aware of the influence given by the solar radiation on the energy loads, bus energy performance were\udsimulated also considering different types of paintwork with high reflectance.
机译:如今,许多人在城市中心使用公共交通工具。因此,每天都有许多公交车在城市内移动,以确保为公民提供最佳服务。在这一年中,公共汽车变得拥挤,并且在非常规运行中使用空调系统,它试图确保机上乘客的舒适度。这项研究的目的是\分析和优化公交车厢的能源性能,确定尚未采用的实际解决方案以\降低空调对公交车的消耗以及因此对空气污染的影响。因此,决定对公交车进行热分析,以了解公交车外壳的性能并推导出迄今为止尚未采取的优化措施。分析是在考虑最热的7月\ ud和1月的最冷日的基础上进行的,并根据最常见的图形TGM(Average \ udDaily Traffic)来确定运行条件,该图形能够定义每天24小时内的交通城市集中度。该研究是使用动态仿真软件TRNSYS完成的。使用该软件,可以忠实地重建总线的结构和外部\环境条件,评估不同技术解决方案对改善内部条件和减少制冷量的影响。由于在冬季,公共交通中乘客的存在被认为是一种“好处”,因此从确定夏季解决方案并随后在冬季对该解决方案进行评估开始进行分析。这项研究的目的是优化母线壳并选择最合适的解决方案。\ ud关于透明表面,它已经被重视,例如热透射率和太阳增益\ udfactor(g值)。考虑到太阳辐射对能量负荷的影响,我们还考虑了不同类型的高反射率涂料,模拟了公交车的能源性能。

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