Public Transportation Energy Planning by Network Analysis-A Case Study of Kathmandu Valley

Aprin Bajracharya, A. M. Nakarmi
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Abstract

This paper is an attempt to find out the required optimum number of vehicles in the Top Ten Routes of Kathmandu Valley which was found from the 163 number of routes of our study on the basis of total travel demand measured in passenger-km per year. The transportation optimization model has been prepared on the Microsoft-Excel Spreadsheet & the optimization of distribution of vehicles is done by using Premium Solver. The results clearly show that the requirement of buses at some routes was less than the available buses plying on the route & the requirement of buses at some routes was more than the available buses plying on the route. The optimization is done on the basis of least cost methods fulfilling the travel demands of flow of passengers at different interval of time in a day at each route of our study. More number of required vehicles in the optimized scenario in the route means more transportation cost, more energy consumption & more environmental emissions than the present scenario & Lesser number of required vehicles in the optimized scenario in the route means lesser transportation cost, lesser energy consumption & lesser environmental emissions than the present scenario.
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基于网络分析的公共交通能源规划——以加德满都谷地为例
本文试图从我们研究的163条路线中找出加德满都谷地十大路线所需的最佳车辆数量,并以每年以乘客公里为单位的总旅行需求为基础。在Microsoft-Excel电子表格上建立了运输优化模型,并利用Premium Solver对车辆分布进行了优化。结果清楚地表明,部分线路的公交车需求量小于运行该线路的可用公交车,部分线路的公交车需求量大于运行该线路的可用公交车。优化是基于最小成本法,在满足每天不同时段客流出行需求的基础上进行的。与现有方案相比,优化方案中车辆数量的增加意味着运输成本的增加、能源消耗的增加和环境排放的增加;优化方案中车辆数量的减少意味着运输成本的减少、能源消耗的减少和环境排放的减少。
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