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      실작업시 주행속도에 따른 자주식 마늘 수집기 소요 동력 분석 = Analysis of power requirements for self-propelled garlic collector by travel speed under actual operation condition

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      https://www.riss.kr/link?id=A109414705

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      This study aims to measure and analyze the power requirements of a self-propelled garlic collector under various travel speed conditions. The research utilized a 40.2 kW-class garlic collector, which consists of three main components: a collecting part, a conveying part, and a crawler-type driving part. Field experiments were conducted to gather load data for each component at three different travel speeds, specifically focusing on the power required by the driving, collecting, and conveying parts. The findings revealed total power requirements of 6.87 kW, 8.88 kW, and 12.33 kW at travel speeds of 0-0.15 m/s, 0.15-0.30 m/s, and 0.30-0.45 m/s, respectively. The power requirement increased by 29.3% when the travel speed increased from 0-0.15 m/s to 0.15-0.30 m/s, and by an additional 38.8% at the highest speed. These results indicate a significant rise in overall power requirements as travel speed increases. The data provide essential insights into the load requirements for each main component at different speeds, serving as foundational information for the optimal design and development of simulation models for garlic collector in the future.
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      This study aims to measure and analyze the power requirements of a self-propelled garlic collector under various travel speed conditions. The research utilized a 40.2 kW-class garlic collector, which consists of three main components: a collecting par...

      This study aims to measure and analyze the power requirements of a self-propelled garlic collector under various travel speed conditions. The research utilized a 40.2 kW-class garlic collector, which consists of three main components: a collecting part, a conveying part, and a crawler-type driving part. Field experiments were conducted to gather load data for each component at three different travel speeds, specifically focusing on the power required by the driving, collecting, and conveying parts. The findings revealed total power requirements of 6.87 kW, 8.88 kW, and 12.33 kW at travel speeds of 0-0.15 m/s, 0.15-0.30 m/s, and 0.30-0.45 m/s, respectively. The power requirement increased by 29.3% when the travel speed increased from 0-0.15 m/s to 0.15-0.30 m/s, and by an additional 38.8% at the highest speed. These results indicate a significant rise in overall power requirements as travel speed increases. The data provide essential insights into the load requirements for each main component at different speeds, serving as foundational information for the optimal design and development of simulation models for garlic collector in the future.

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      참고문헌 (Reference)

      1 Y. S. Kim, "Working Load Analysis of a 42 kW Class Agricultural Tractor According to Tillage Type and Gear Selection during Rotary Tillage Operation" 13 (13): 1556-, 2023

      2 김완수 ; 백승윤 ; 김택진 ; 김연수 ; 박성운 ; 최창현 ; 홍순중 ; 김용주, "Work load analysis for determination of the reduction gear ratio for a 78 kW all wheel drive electric tractor design" 46 (46): 613-627, 2019

      3 김지태 ; Hyun-Woo Han ; 오주선 ; Woo Jin Chung ; Seung-Je Cho ; 박영준, "Structural Design of Garlic Plants Footplate Considering Physical Characteristics of Elderly Women" 45 (45): 16-23, 2020

      4 Y. Cho, "Soil Mechanical Systems and Related Farming Machinery" 14 (14): 1661-, 2024

      5 이예슬 ; 강나래 ; 김영화 ; 유승화 ; 남영조 ; 권승귀 ; 하유신 ; 박형규, "Performance Evaluation of Riding Type Self-Propelled Garlic Collector" 23 (23): 733-740, 2022

      6 임동우 ; 김재현 ; 문동주 ; 문태익 ; 유승화 ; 박영준, "Optimization of Bucket Size of Garlic Metering Device Using Multibody Dynamics Simulation" 47 (47): 480-488, 2022

      7 Modak Shreyas ; Raheman Hifjur, "Model-Based Evaluation and Validation of High-Speed Cutting System for Paddy Crop Using Combine Harvester" 48 (48): 13-25, 2023

      8 B. M. Khanpara, "Mechanization in Onion Harvesting : A Review of Traditional and Modern Approaches" 24 : 21-28, 2024

      9 Y. Chen, "Investigation of the Traveling Performance of the Tracked Chassis of a Potato Combine Harvester in Hilly and Mountainous Areas" 14 (14): 1625-, 2024

      10 황두환, "Improving the Generalization Performance of Linear Models through Data Augmentation Based on the Central Limit Theorem" 28 (28): 19-31, 2022

      1 Y. S. Kim, "Working Load Analysis of a 42 kW Class Agricultural Tractor According to Tillage Type and Gear Selection during Rotary Tillage Operation" 13 (13): 1556-, 2023

      2 김완수 ; 백승윤 ; 김택진 ; 김연수 ; 박성운 ; 최창현 ; 홍순중 ; 김용주, "Work load analysis for determination of the reduction gear ratio for a 78 kW all wheel drive electric tractor design" 46 (46): 613-627, 2019

      3 김지태 ; Hyun-Woo Han ; 오주선 ; Woo Jin Chung ; Seung-Je Cho ; 박영준, "Structural Design of Garlic Plants Footplate Considering Physical Characteristics of Elderly Women" 45 (45): 16-23, 2020

      4 Y. Cho, "Soil Mechanical Systems and Related Farming Machinery" 14 (14): 1661-, 2024

      5 이예슬 ; 강나래 ; 김영화 ; 유승화 ; 남영조 ; 권승귀 ; 하유신 ; 박형규, "Performance Evaluation of Riding Type Self-Propelled Garlic Collector" 23 (23): 733-740, 2022

      6 임동우 ; 김재현 ; 문동주 ; 문태익 ; 유승화 ; 박영준, "Optimization of Bucket Size of Garlic Metering Device Using Multibody Dynamics Simulation" 47 (47): 480-488, 2022

      7 Modak Shreyas ; Raheman Hifjur, "Model-Based Evaluation and Validation of High-Speed Cutting System for Paddy Crop Using Combine Harvester" 48 (48): 13-25, 2023

      8 B. M. Khanpara, "Mechanization in Onion Harvesting : A Review of Traditional and Modern Approaches" 24 : 21-28, 2024

      9 Y. Chen, "Investigation of the Traveling Performance of the Tracked Chassis of a Potato Combine Harvester in Hilly and Mountainous Areas" 14 (14): 1625-, 2024

      10 황두환, "Improving the Generalization Performance of Linear Models through Data Augmentation Based on the Central Limit Theorem" 28 (28): 19-31, 2022

      11 이해나 ; 김용주, "Development of a multi-purpose driving platform for Radish and Chinese cabbage harvester" 20 (20): 35-41, 2023

      12 전현호 ; 백승민 ; 백승윤 ; 홍이수 ; 김택진 ; 최용 ; 김영근 ; 이상희 ; 김용주, "Development and validation of simulation model for traction power and driving torque prediction of upland multipurpose platform" 20 (20): 16-26, 2023

      13 김택진 ; 전현호 ; 아윱 ; 최장영 ; 김용주, "Development and performance analysis of a crawler-based driving platform for upland farming" 20 (20): 100-106, 2023

      14 김원경 ; 이상희 ; 최덕규 ; 박석호 ; 강연구 ; 문석표 ; 천창욱 ; 강성혁 ; 장성혁, "Development and Performance Analysis of Self-Propelled Crawler and Gathering Type Potato Harvester" 21 (21): 23-29, 2024

      15 최일수 ; 강나래 ; 최경식 ; 우제근 ; 김영화 ; 유승화 ; 최용 ; 김영근, "Design·Manufacture, and Performance Evaluation of Gathering Type Garlic Harvesting Machine" 20 (20): 64-70, 2023

      16 G. K. Awoke, "Assessment of Ergonomics of Farming Activities for Backyard Vegetable Production in the North Western Ethiopia : Case of Dangishta Community" 308 : 29-41, 2020

      17 백승민 ; 김완수 ; 백승윤 ; 전현호 ; 이준호 ; 송예인 ; 최용 ; 김영근 ; 이상희 ; 김용주, "Analysis of the power requirements of a 55 kW class agricultural tractor during a garlic harvesting operation" 48 (48): 1039-1050, 2021

      18 김완수 ; 김연수 ; 김택진 ; 박성운 ; 최용 ; 최일수 ; 김영근 ; 김용주, "Analysis of power requirement of 78 kW class agricultural tractor according to the major field operation" 43 (43): 911-922, 2019

      19 도영우 ; 김택진 ; 임류갑 ; 백승윤 ; 전현호 ; 김용주 ; 김완수, "Analysis of engine load factor for a 90 kW agricultural combine harvester based on working speed" 50 (50): 617-628, 2023

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