{"title":"Integrated plastic mulch laying machine: A viable technology for sustainable agricultural production","authors":"Shoaib Amin, Jagvir Dixit, M. Muzamil","doi":"10.5937/poljteh2201066s","DOIUrl":null,"url":null,"abstract":"A tractor drawn mulch laying machine was developed in order to integrate the operations and fix the anomalies in terms of labour associated with conventional mulch laying operations. The prototype integrates the operations of bed making, drip line laying, mulch laying, mulch covering and punching hole on mulch in one pass. The developed prototype was evaluated at three-levels of forward speed (3.0, 5.0, 7.0 kmh-1 ), two-levels of bed width (76.2, 91.4 cm) and two-levels of dibbling hole spacing (15.2, 20.3 cm). The results of evaluation experiment for the developed machine showed that the draft requirement decreased with the increase in forward speed (3.0 to 7.0 kmh-1 ), bed width (76.2 to 91.4 cm) and dibbling hole spacing (15.2 to 20.3 cm). Field efficiency increased with increase in forward speed, bed width and spacing of dibbling holes. Although at low speed (3.0 kmh-1 ), the actual field capacity and field efficiency decreased about 57% and 5.0%, respectively while draft increased about 36 %, compared to the speed of 7.0 kmh-1 . However, at a speed of 3.0 kmh-1 , the mulch damage, un-covered mulch percentage and missing of dibbling hole decreased about 65%, 64% and 7.0 %, respectively. The standardized value of draft requirement, effective filed capacity and field efficiency were observed as 63.27 kp, 0.40 ha.h-1 and 72.7% while as percentage uncovered mulch, percentage mulch damage and percentage missing number of holes were as 3.1 %, 3.4%, 6.25%, respectively. The man-hour requirement and cost of mulching operation with developed machine reduced about 97 % and 75 % as compared to conventional method of mulch laying. Therefore, the study recommends using the developed machine to install a raised-bed, laying of plastic mulch and drip irrigation pipes on the bed and making dibbling hole for vegetable seedling transplanting at a speed of 3 kmh-1 achieved the better efficiency.","PeriodicalId":281326,"journal":{"name":"Poljoprivredna tehnika","volume":"339 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"1900-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Poljoprivredna tehnika","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.5937/poljteh2201066s","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
A tractor drawn mulch laying machine was developed in order to integrate the operations and fix the anomalies in terms of labour associated with conventional mulch laying operations. The prototype integrates the operations of bed making, drip line laying, mulch laying, mulch covering and punching hole on mulch in one pass. The developed prototype was evaluated at three-levels of forward speed (3.0, 5.0, 7.0 kmh-1 ), two-levels of bed width (76.2, 91.4 cm) and two-levels of dibbling hole spacing (15.2, 20.3 cm). The results of evaluation experiment for the developed machine showed that the draft requirement decreased with the increase in forward speed (3.0 to 7.0 kmh-1 ), bed width (76.2 to 91.4 cm) and dibbling hole spacing (15.2 to 20.3 cm). Field efficiency increased with increase in forward speed, bed width and spacing of dibbling holes. Although at low speed (3.0 kmh-1 ), the actual field capacity and field efficiency decreased about 57% and 5.0%, respectively while draft increased about 36 %, compared to the speed of 7.0 kmh-1 . However, at a speed of 3.0 kmh-1 , the mulch damage, un-covered mulch percentage and missing of dibbling hole decreased about 65%, 64% and 7.0 %, respectively. The standardized value of draft requirement, effective filed capacity and field efficiency were observed as 63.27 kp, 0.40 ha.h-1 and 72.7% while as percentage uncovered mulch, percentage mulch damage and percentage missing number of holes were as 3.1 %, 3.4%, 6.25%, respectively. The man-hour requirement and cost of mulching operation with developed machine reduced about 97 % and 75 % as compared to conventional method of mulch laying. Therefore, the study recommends using the developed machine to install a raised-bed, laying of plastic mulch and drip irrigation pipes on the bed and making dibbling hole for vegetable seedling transplanting at a speed of 3 kmh-1 achieved the better efficiency.
拖拉机牵引的地膜铺设机是为了整合操作和解决与传统地膜铺设操作相关的劳动力方面的异常而开发的。该样机将铺床、铺设滴管、铺设地膜、覆盖地膜、在地膜上打孔等工序一次完成。在前进速度(3.0、5.0、7.0 km -1)、床层宽度(76.2、91.4 cm)和钻穴间距(15.2、20.3 cm) 3个水平下对样机进行评价。评价试验结果表明,随着掘进速度(3.0 ~ 7.0 km -1)、掘进床宽度(76.2 ~ 91.4 cm)和掘进孔间距(15.2 ~ 20.3 cm)的增大,掘进吃水要求有所降低。田间效率随钻孔前进速度、床层宽度和间距的增大而增大。在低速(3.0 km -1)下,与7.0 km -1相比,实际田间容量和田间效率分别下降了57%和5.0%,吃水增加了36%左右。而在3.0 km -1的速度下,覆盖损伤、未覆盖率和漏穴率分别降低了65%、64%和7.0%。需水量、有效田间容量和田间效率的标准化值分别为63.27 kp、0.40 ha.h-1和72.7%,覆盖率、覆盖损伤率和缺孔数的标准化值分别为3.1%、3.4%和6.25%。与传统的地膜铺设方法相比,使用该机器进行地膜作业的工时和成本分别降低了97%和75%。因此,本研究建议采用所研制的机器设置高架苗床,在苗床上铺设地膜和滴灌管道,并以3 km -1的速度打孔插秧,效果较好。