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Clusters with Minimum Transportation Cost to Centers: A Case Study in Corn Production Management

机译:中心运输成本最低的集群:以玉米生产管理为例

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In Northern Thailand, the size and topographical structure of farmland makes it necessary for operators of small-scale waste management systems to be able to reach their clients in an effective manner. Over the past decades, corn contract farming has increased, and the chief method for eliminating waste from these farms has chiefly been open burning on the fields, which produces enormous amounts of greenhouse gases (GHG) and Polycyclic Aromatic Hydrocarbons (PAHs). To find a way to reduce GHG emissions in the corn production system, this work focuses on finding clusters with minimum transportation time from waste disposal centers. To solve the clustering problems, four models are created and solved on AIMMS and MATLAB. Simulation results indicate that the number of clients essentially affects the performance of the procedure. The case studies are on corn production management in Chiang Mai, the region’s economic capital, as well as in 9 provinces in Northern Thailand, including Chiang Mai, whose combined corn production comprises 32.73 percent of the national production. With roughly 15% of the corn cobs and husks involved in the study, we found that by changing the waste elimination process, the total CO 2 emissions can be reduced by up to 12,008.40 tons per year in Chiang Mai and up to 180,198.14 tons per year in the 9 provinces of Northern Thailand.
机译:在泰国北部,农田的大小和地形结构使小规模废物管理系统的运营商必须能够有效地到达其客户。在过去的几十年中,玉米合同制种植有所增加,消除这些农场废物的主要方法主要是在田间进行露天焚烧,这会产生大量的温室气体(GHG)和多环芳烃(PAHs)。为了找到减少玉米生产系统中温室气体排放的方法,这项工作着重于从废物处理中心寻找运输时间最短的集群。为了解决聚类问题,在AIMMS和MATLAB上创建并求解了四个模型。仿真结果表明,客户端数量实质上影响了过程的性能。该案例研究涉及该地区经济首都清迈以及泰国北部9个省(包括清迈)的玉米生产管理,该省的玉米总产量占全国产量的32.73%。通过大约15%的玉米芯和果壳参与研究,我们发现,通过改变废物消除过程,清迈每年可以减少多达12008.40吨的二氧化碳排放总量,每年最多可以减少180198.14吨。在泰国北部的9个省。

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