Sugarcane Basecutters: A Critical Review

2021 ◽  
Vol 37 (2) ◽  
pp. 251-265
Author(s):  
Fenglei Wang ◽  
Shaochun Ma ◽  
Haonan Xing ◽  
Jing Bai ◽  
Yezhen Yang ◽  
...  

HighlightsThis article is focused on the technology review of sugarcane basecutters.Two cutting theories and two cutting modes are briefly reviewed.Three optimization methods of parameters for the sugarcane basecutter are summarized.Four potential research interests to improve the basecutting quality are discussed.Abstract. Basecutter is a core component of a sugarcane harvester, and its performance significantly influences cane yield and harvesting efficiency. Therefore, it is meaningful to conduct a critical review of sugarcane basecutters. In this article, an introduction about basecutter structure was performed first; then two cutting theories (support/free cutting) and two cutting modes (straight/sliding cutting) were briefly reviewed; and the advantages and disadvantages of different cutting modes were summarized. It was followed by a comprehensive introduction of three optimization methods: theoretical analysis and simulation, indoor experiments, and field experiments. Finally, four potential research interests in improving basecutting quality and exploring the stubble damage process were discussed. In this review, the comprehensive, detailed, and accurate information about sugarcane basecutter was expected to provide engineers with a technology reference to improve the basecutting performance. Keywords: Basecutter, Cutting theories and modes, Optimization methods, Potential research interests, Sugarcane harvester.

2021 ◽  
Vol 37 (5) ◽  
pp. 839-849
Author(s):  
Jing Bai ◽  
Shaochun Ma ◽  
Fenglei Wang ◽  
Haonan Xing ◽  
Zhengliang Ding ◽  
...  

HighlightsThis article focuses on crop dividers of sugarcane harvesters.Four crop dividers were briefly reviewed.The research status of crop dividers was introduced.The potential new technologies and development directions of spiral crop dividers were presented.Abstract. The crop divider is an important mechanism of a sugarcane harvester, which affects the efficiency and quality of sugarcane mechanical harvesting. This article mainly summarized the key technologies of crop dividers. Firstly, four crop dividers (spiral crop divider, finger-chain crop divider, combined crop divider, and lever crop divider) were briefly reviewed. The advantages and disadvantages of different crop dividers were then summarized. The research status of crop dividers was introduced with theoretical analysis, simulation studies, and field experiments. Finally, the scientific researches and commercial machines were compared for a comprehensive review. Additionally, the potential new technologies and development directions of spiral crop dividers were presented to improve the performance and adaptability of sugarcane harvesters. This article is expected to provide a reference for the design of crop dividers. Keywords: Crop divider, Mechanical harvesting, Sugarcane, Sugarcane harvester.


2021 ◽  
Vol 37 (2) ◽  
pp. 233-242
Author(s):  
Fenglei Wang ◽  
Shaochun Ma ◽  
Wenli Ke ◽  
Haonan Xing ◽  
Jing Bai ◽  
...  

HighlightsAn under-the-ground basecutting mode was employed, which is different from the typical above-the-ground basecutting mode.A series of field experiments were carried out using the response surface methodology (RSM).The complicated effect of critical parameters on three indicators (stubble breaking index, stubble uprooting index, and power consumption) was explored.The optimal values of critical parameters were determined using a multi-objective optimization method.Abstract. Basecutting is an important process in mechanical sugarcane harvesting, thus, it’s necessary to develop a high-efficient basecutter. The previous research about basecutting has mainly focused on the above-the-ground basecutting instead of under-the-ground basecutting. Therefore, the objective of this study was to analyze how the critical structural parameters, such as blade number (BN), oblique angle and bevel angle of blades (OA, BA), affect the cutting performance of a sugarcane harvester with an under-the-ground basecutting mode. A series of field tests were carried out using Liugong sugarcane harvester. The experimental indexes were determined as stubble breaking index (BI), stubble uprooting index (UI), and power consumption (PC). The ANOVA results indicated that three regression models of indicators were significant, and were in agreement with the test data. Additionally, it was concluded that OA and BN were the two most important factors when optimizing BI, UI, and PC. BA was the last factor to be considered although it had significant effect on BI and UI. The multi-objective optimization results showed that the optimal parameter combination was 3 of BN, 10° of OA, and 20° of BA, and the corresponding BI, UI, and PC reached the minimum. For sugarcane growers, reduced stubble damage and power consumption could increase the sugarcane germination and decrease the harvesting cost, respectively. For sugarcane mills, this cutting mode might cause potential decrease in sugar quality, specifically sediment levels. However, this disadvantage could be overcome by optimizing basecutter parameters. Keywords: Basecutter, Cutting mode, Power consumption, Stubble breaking, Stubble uprooting, Under-the-ground basecutting.


2014 ◽  
Vol 10 (1) ◽  
pp. 1-15
Author(s):  
Z. Láng

The possible effect of shaker harvest on root damage of 10-year-old cherry trees was studied on a simple tree structure model. The model was composed of elastic trunk and rigid main roots, the ends of which were connected to the surrounding soil via springs and dumping elements. Equations were set up to be able to calculate the relation between shaking height on the trunk and strain in the roots. To get the data for root break and their elongation at different shaking heights on the trunk, laboratory and field experiments were carried out on cherry trees and on their roots. Having evaluated the measured and calculated data it could be concluded that root damage is to be expected even at 3.6% strain and the risk of it increases with increased trunk amplitudes, i.e.with the decrease of shaking heightat smaller stem diameters (i.e. in younger plantation), andif the unbalanced mass of the shaker machine is too large for the given tree size.


Author(s):  
A.I. Glushchenko ◽  
M.Yu. Serov

В статье рассматривается вопрос совершенствования системы управления параллельно-работающими насосными агрегатами с целью повышения энергоэффективности их работы. Проведено сравнение и выявление недостатков существующих методов решения рассматриваемой проблемы. Предложена идея нового подхода на базе онлайн оптимизации. The problem under consideration is improvement of the energy efficiency of a control system of parallel-running pump units. Known methods used to solve this problem are considered. Their advantages and disadvantages are shown. Finally, the idea of a new approach, which is based on online optimization, is proposed.


2021 ◽  
Vol 37 (6) ◽  
pp. 1005-1014
Author(s):  
Guoliang Wei ◽  
Qingsong Zhang ◽  
Biao Wang ◽  
QingXi Liao

HighlightsThe seeder combined the plowing and rotating tillage to overcome the heavy soil and a large amount of straws.The plow could lift and turn the soil and straw before rotary tillage.The optimal working parameters of the seeder were obtained by orthogonal field experiments.Abstract. Rapeseed, one of the most important oil crops in China, is mainly planted in the mid-lower reaches of the Yangtze River. However, limited by the special long-term rice-rapeseed rotation, rotary tillage is applied in most of the planted areas apply instead of plow tillage, leading to a shallow arable layer. On the other hand, maintaining a high-quality seedbed for rapeseed becomes a challenge because a large amount of straw remains buried in the soil. As a solution, a rapeseed direct seeder that combines plow tillage and rotary tillage was designed. The structure of the plowing unit, whose key components were a lifting-turning plow and symmetrical plow, was analyzed based on the forming principle of the plow. Furthermore, a mechanical soil throwing model of the rotary tillage blade was built to determine the structural parameters. Then, the interaction between the rotary tillage unit and the lift-turning plow was analyzed. Finally, the performance and optimal parameters were evaluated by orthogonal field experiments. The seedbed after the operations indicated that the seeder could achieve the function of turning the soil and straw first and then rotating the soil with good passability, mixing the straw and the soil, flattening the surface of the seed bed, and stabilizing the tillage depth. Orthogonal experiments showed that the optimal working parameters of the seeder were as follows: the tillage depth was 180 mm, the equipment forward speed was 2.1 km/h, and the speed of the rotary tillage blade was 250 r/min. Under the optimal parameter combination, the power consumption of the seeder, the thickness of the tillage layer, the crop residue burial efficiency, the soil breakage efficiency, and the flatness of the seed bed surface were 30.48 kW, 231 mm, 90.88%, 93.26%, and 21.15 mm, respectively. The working performance of the seeder could meet the tillage requirements of rapeseed planting. Keywords: Direct seeder, Evaluation, Plow, Plowing-rotating combined tillage, Rapeseed.


2012 ◽  
Vol 2012 ◽  
pp. 1-6 ◽  
Author(s):  
Yue Li ◽  
Tim Täffner ◽  
Michael Bischoff ◽  
Bernd Niemeyer

The generation of test gas from pure liquids has a wide variety of applications in laboratory and field experiments, for which the quality of the test gas is of significance. Therefore, various methods for test gas generation have been designed. Each method has unique advantages and disadvantages. Thus, a short overview is presented within the scope of this paper. Furthermore, a common bubbler system is presented, which was built to generate test gas from volatile organic compounds for experimental usage in laboratory applications. An analysis is conducted with respect to the generated concentrations at different temperatures and flow rates of the diluting gas. Accuracy and stability of this method are investigated.


Author(s):  
Lars Frank

In this article, I will evaluate the most important methods for increasing concurrency between transactions. Because different transactions have different needs, it is important that the evaluation gives an overview of the advantages and disadvantages of the different optimization methods.


2018 ◽  
Vol 24 (3) ◽  
pp. 195-203 ◽  
Author(s):  
Philip Campbell ◽  
Keith Rix

SUMMARYFusion legislation is the latest in a long line of reforms in mental health law that have sought to increase patient autonomy. It has not been without controversy, having been proposed and rejected in various jurisdictions throughout the UK and internationally, while causing considerable debate in the academic literature. This article considers some of the history and debate, along with the criminal justice provisions of the first piece of fusion legislation internationally, the Mental Capacity Act (Northern Ireland) 2016, and their potential implications.LEARNING OBJECTIVES•Understand the history of fusion legislation in the UK and internationally•Understand the advantages and disadvantages of fusion legislation•Understand the Mental Capacity Act (Northern Ireland) 2016 criminal justice provisionsDECLARATION OF INTERESTNone.


Pharmaceutics ◽  
2020 ◽  
Vol 12 (6) ◽  
pp. 522
Author(s):  
Zhen Li ◽  
Shunqi Mei ◽  
Yajie Dong ◽  
Fenghua She ◽  
Yongzhen Li ◽  
...  

Nanofibrous biomaterials have huge potential for drug delivery, due to their structural features and functions that are similar to the native extracellular matrix (ECM). A wide range of natural and polymeric materials can be employed to produce nanofibrous biomaterials. This review introduces the major natural and synthetic biomaterials for production of nanofibers that are biocompatible and biodegradable. Different technologies and their corresponding advantages and disadvantages for manufacturing nanofibrous biomaterials for drug delivery were also reported. The morphologies and structures of nanofibers can be tailor-designed and processed by carefully selecting suitable biomaterials and fabrication methods, while the functionality of nanofibrous biomaterials can be improved by modifying the surface. The loading and releasing of drug molecules, which play a significant role in the effectiveness of drug delivery, are also surveyed. This review provides insight into the fabrication of functional polymeric nanofibers for drug delivery.


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