Evaluation of Field Performance and Energy Consumption of a Medium-sized Combine Harvester for Harvesting Glutinous Rice in Malaysia

IF 0.6 Q3 MULTIDISCIPLINARY SCIENCES Pertanika Journal of Science and Technology Pub Date : 2024-04-04 DOI:10.47836/pjst.32.3.22
Nazmi Mat Nawi, Bomoi Muhammad Isa, S. Abd Aziz, Mohamad Saufi Mohd Kassim
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Abstract

A medium-sized combine harvester has been recently deployed to harvest newly introduced high-value glutinous rice in Malaysia. Thus, efficient utilisation of combine harvesters during harvest is essential to minimise operating costs and grain loss. This study evaluated a medium-sized combine harvester’s performance and energy consumption for harvesting glutinous rice. The experiment was carried out on a one-hectare paddy field with three sub-plots using a central composite design (CCD). A time-motion study was conducted during the harvesting operation to determine the combine harvester’s performance parameters, which included field operating speed (FS), field efficiency (FE), theoretical field capacity (TFC), effective field capacity (EFC), grain throughput capacity (GTC), fuel consumption (FC) and field machine index (MI). The energy expended during the operation, which included machinery energy (ME), fuel energy (FCE), human energy (HE), and total energy (TE) input, were also computed. The average FS, FE, TFC, EFC, FC, and MI values were 2.42 km/h, 59.78%, 0.56 ha/h, 0.33 ha/h, 14.89 l/ha, and 0.30, respectively. The mean values of ME, FCE, HE, and TE were 305.35, 711.69, 3.62, and 1020.66 MJ/ha, respectively. The combine harvester achieved an average grain throughput capacity (GTC) of 1796.91 kg/h, demonstrating its effectiveness in handling glutinous rice harvesting. The average time distribution for the harvesting operation, such as effective harvesting time, turning/reversing time, and unloading time, was 1.85 h/ha, 0.38 h/ha, and 1.05 h/ha, respectively. Based on the results, it is concluded that the medium-sized combine harvester is technically and economically suitable for harvesting glutinous rice.
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马来西亚收割糯米的中型联合收割机的现场性能和能耗评估
最近,马来西亚使用中型联合收割机收割新引进的高价值糯米。因此,在收割过程中有效利用联合收割机对于最大限度地降低运营成本和谷物损失至关重要。本研究对中型联合收割机收割糯米的性能和能耗进行了评估。实验在一块一公顷的水稻田上进行,采用中央综合设计(CCD),有三个子地块。在收割作业期间进行了时间运动研究,以确定联合收割机的性能参数,包括田间作业速度(FS)、田间效率(FE)、理论田间能力(TFC)、有效田间能力(EFC)、谷物吞吐能力(GTC)、燃料消耗(FC)和田间机器指数(MI)。此外,还计算了作业过程中消耗的能量,包括机械能(ME)、燃料能(FCE)、人力能(HE)和总输入能(TE)。FS、FE、TFC、EFC、FC 和 MI 的平均值分别为 2.42 公里/小时、59.78%、0.56 公顷/小时、0.33 公顷/小时、14.89 升/公顷和 0.30。ME、FCE、HE 和 TE 的平均值分别为 305.35、711.69、3.62 和 1020.66 兆焦/公顷。联合收割机的平均谷物吞吐能力(GTC)为 1796.91 千克/小时,这表明其在处理糯稻收割方面非常有效。收割作业的平均时间分布,如有效收割时间、翻转/倒转时间和卸载时间,分别为 1.85 小时/公顷、0.38 小时/公顷和 1.05 小时/公顷。根据这些结果,可以得出结论:中型联合收割机在技术和经济上都适合收割糯稻。
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来源期刊
Pertanika Journal of Science and Technology
Pertanika Journal of Science and Technology MULTIDISCIPLINARY SCIENCES-
CiteScore
1.50
自引率
16.70%
发文量
178
期刊介绍: Pertanika Journal of Science and Technology aims to provide a forum for high quality research related to science and engineering research. Areas relevant to the scope of the journal include: bioinformatics, bioscience, biotechnology and bio-molecular sciences, chemistry, computer science, ecology, engineering, engineering design, environmental control and management, mathematics and statistics, medicine and health sciences, nanotechnology, physics, safety and emergency management, and related fields of study.
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