Dynamics Simulation and Field Test Verification of Multi-Functional Beekeeping Loading Box Based on the Tracked Vehicle

The Korean beekeeping industry is continuously declining owing to the aging worker population and a lack of automation. To solve the problem of manual transportation and low automation of transportation tools in Korean apiculture, a multifunctional beekeeping transport loading box was developed by m...

Full description

Bibliographic Details
Main Authors: Pingan Wang, Changyeun Mo, Subae Kim, Xiongzhe Han
Format: Article
Language:English
Published: MDPI AG 2022-07-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/12/13/6667
_version_ 1797480867847733248
author Pingan Wang
Changyeun Mo
Subae Kim
Xiongzhe Han
author_facet Pingan Wang
Changyeun Mo
Subae Kim
Xiongzhe Han
author_sort Pingan Wang
collection DOAJ
description The Korean beekeeping industry is continuously declining owing to the aging worker population and a lack of automation. To solve the problem of manual transportation and low automation of transportation tools in Korean apiculture, a multifunctional beekeeping transport loading box was developed by modifying a tracked vehicle developed in previous studies. To ensure the safety of the modified beekeeping vehicle in an apiary, a dynamic analysis of the vehicle in virtual simulation conditions and a field test inside an actual apiary were conducted. Firstly, the TRACK_LM module in multibody dynamics software RecurDyn was used to model the vehicle. Then, the model was analyzed in two use cases (bee frame loading and beehive loading), three geological conditions (clayey soil, dry sand, and upland sandy loam), and two types of terrain (s-turn and 8° slope). Meanwhile, tests under similar conditions were conducted in an actual apiary. The simulation results indicated that the modified beekeeping vehicle operated stably in the simulated agricultural apiary ground (clayey soil and upland sandy loam). The maximum pitch angles in the clayey soil and upland sandy loam conditions were 11.77° and 12.74°, respectively. However, the vehicle cannot operate under dry sand conditions on a slope because it exceeded the calculated maximum angle (34°) during operation. The maximum pitch angle of only 8.8° in the apiary transport experiment proved that the modified beekeeping vehicle could be driven safely in actual apiaries. Moreover, a comparison of the field test results with the simulation results revealed that the field test further verifies the reference value and correctness of the simulation results.
first_indexed 2024-03-09T22:06:22Z
format Article
id doaj.art-3b33b738c1d8452ba26e59b877298cfb
institution Directory Open Access Journal
issn 2076-3417
language English
last_indexed 2024-03-09T22:06:22Z
publishDate 2022-07-01
publisher MDPI AG
record_format Article
series Applied Sciences
spelling doaj.art-3b33b738c1d8452ba26e59b877298cfb2023-11-23T19:40:43ZengMDPI AGApplied Sciences2076-34172022-07-011213666710.3390/app12136667Dynamics Simulation and Field Test Verification of Multi-Functional Beekeeping Loading Box Based on the Tracked VehiclePingan Wang0Changyeun Mo1Subae Kim2Xiongzhe Han3Department of Biosystems Engineering, College of Agriculture and Life Sciences, Kangwon National University, Chuncheon 24341, KoreaDepartment of Biosystems Engineering, College of Agriculture and Life Sciences, Kangwon National University, Chuncheon 24341, KoreaDepartment of Agricultural Biology, The National Institute of Agricultural Science, RDA, Wanju 55365, KoreaDepartment of Biosystems Engineering, College of Agriculture and Life Sciences, Kangwon National University, Chuncheon 24341, KoreaThe Korean beekeeping industry is continuously declining owing to the aging worker population and a lack of automation. To solve the problem of manual transportation and low automation of transportation tools in Korean apiculture, a multifunctional beekeeping transport loading box was developed by modifying a tracked vehicle developed in previous studies. To ensure the safety of the modified beekeeping vehicle in an apiary, a dynamic analysis of the vehicle in virtual simulation conditions and a field test inside an actual apiary were conducted. Firstly, the TRACK_LM module in multibody dynamics software RecurDyn was used to model the vehicle. Then, the model was analyzed in two use cases (bee frame loading and beehive loading), three geological conditions (clayey soil, dry sand, and upland sandy loam), and two types of terrain (s-turn and 8° slope). Meanwhile, tests under similar conditions were conducted in an actual apiary. The simulation results indicated that the modified beekeeping vehicle operated stably in the simulated agricultural apiary ground (clayey soil and upland sandy loam). The maximum pitch angles in the clayey soil and upland sandy loam conditions were 11.77° and 12.74°, respectively. However, the vehicle cannot operate under dry sand conditions on a slope because it exceeded the calculated maximum angle (34°) during operation. The maximum pitch angle of only 8.8° in the apiary transport experiment proved that the modified beekeeping vehicle could be driven safely in actual apiaries. Moreover, a comparison of the field test results with the simulation results revealed that the field test further verifies the reference value and correctness of the simulation results.https://www.mdpi.com/2076-3417/12/13/6667beekeeping loading boxvirtual simulationmultibody dynamicsrecurdynapiary transport experiment
spellingShingle Pingan Wang
Changyeun Mo
Subae Kim
Xiongzhe Han
Dynamics Simulation and Field Test Verification of Multi-Functional Beekeeping Loading Box Based on the Tracked Vehicle
Applied Sciences
beekeeping loading box
virtual simulation
multibody dynamics
recurdyn
apiary transport experiment
title Dynamics Simulation and Field Test Verification of Multi-Functional Beekeeping Loading Box Based on the Tracked Vehicle
title_full Dynamics Simulation and Field Test Verification of Multi-Functional Beekeeping Loading Box Based on the Tracked Vehicle
title_fullStr Dynamics Simulation and Field Test Verification of Multi-Functional Beekeeping Loading Box Based on the Tracked Vehicle
title_full_unstemmed Dynamics Simulation and Field Test Verification of Multi-Functional Beekeeping Loading Box Based on the Tracked Vehicle
title_short Dynamics Simulation and Field Test Verification of Multi-Functional Beekeeping Loading Box Based on the Tracked Vehicle
title_sort dynamics simulation and field test verification of multi functional beekeeping loading box based on the tracked vehicle
topic beekeeping loading box
virtual simulation
multibody dynamics
recurdyn
apiary transport experiment
url https://www.mdpi.com/2076-3417/12/13/6667
work_keys_str_mv AT pinganwang dynamicssimulationandfieldtestverificationofmultifunctionalbeekeepingloadingboxbasedonthetrackedvehicle
AT changyeunmo dynamicssimulationandfieldtestverificationofmultifunctionalbeekeepingloadingboxbasedonthetrackedvehicle
AT subaekim dynamicssimulationandfieldtestverificationofmultifunctionalbeekeepingloadingboxbasedonthetrackedvehicle
AT xiongzhehan dynamicssimulationandfieldtestverificationofmultifunctionalbeekeepingloadingboxbasedonthetrackedvehicle