Using the energy of the amortization system in the organization of the movement of an electric vehicle

O. Ponomarov, O. Marchenko, V. Babaitsev
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Abstract

Problem. One of the areas of developing energy saving when using machines and mechanisms is the recovery of used energy for the purpose of reuse. At the same time, potential energy accumulated by massive mechanisms or kinetic energy of moving machine elements is used. Goal. The purpose of the work is to reveal the main advantages and principle of operation of the pneumatic damping system for energy recovery and generation. Methodology. The methodological basis of the work is the analysis, comparison and generalization of existing scientific research and inventions. The ever-increasing interest of domestic and foreign researchers in the direction of energy saving in road transport, the steady expansion of the list of inventions related to energy saving, such as the conversion of mechanical vibrations into electrical, thermal, hydraulic and other types of energy with subsequent accumulation and useful use, were noted. Results. When the car is moving, as a result of the deformation of the suspension springs, there are transverse and longitudinal vibrations of the frame or body, which are damped by shock absorbers. The most widely used are hydraulic and gas shock absorbers, which use the resistance of a viscous liquid or gas when passing through calibrated holes or limited valve diameters. The very process of dampening oscillations is reduced to the transformation of mechanical energy into thermal energy with subsequent removal of heat to the environment. Originality. As part of energy saving, the authors of the work propose to accumulate the energy of oscillating movements in the form of pneumatic energy of compressed air with the possibility of further use in various systems of automobile transport. They also show the effectiveness and expediency of introducing similar measures, especially in hybrid schemes of cars in which the transformation of thermal and electrical energy takes place at the same time, point out the problems that arise when introducing energy accumulation in the form of compressed air, and propose measures to overcome negative phenomena that characteristic of this process. Practical value. The results of the study indicate the perspective and expediency of implementing new schemes in the direction of increasing the efficiency of newly created recuperation systems in car suspensions, expand the list of methods of providing energy-efficient technologies to increase reliability and durability depending on operating conditions.
利用摊销系统的能量组织电动汽车的运动
问题。在使用机器和机构时,发展节能的领域之一是回收使用过的能量以进行再利用。同时,利用大量机构积累的势能或运动机械元件的动能。的目标。工作的目的是揭示气动阻尼系统的主要优点和工作原理的能量回收和发电。方法。这项工作的方法论基础是对现有科学研究和发明的分析、比较和概括。注意到国内外研究人员对道路运输节能方向的兴趣日益增加,与节能有关的发明清单不断扩大,例如将机械振动转化为电能、热能、水力和其他类型的能量,并加以积累和利用。结果。汽车在行驶时,由于悬架弹簧的变形,车架或车身会产生横向和纵向的振动,这些振动由减震器来抑制。使用最广泛的是液压和气体减震器,它们利用粘性液体或气体通过校准孔或限制阀径时的阻力。阻尼振荡的过程被简化为将机械能转化为热能,随后将热量释放到环境中。创意。作为节能的一部分,该工作的作者建议将振荡运动的能量以压缩空气的气动能量的形式积累起来,并有可能进一步用于各种汽车运输系统。它们还表明了引入类似措施的有效性和方便性,特别是在同时进行热能和电能转换的汽车混合动力方案中,指出了引入压缩空气形式的能量积累时出现的问题,并提出了克服这一过程中特有的负面现象的措施。实用价值。研究结果表明,在提高新创建的汽车悬架回收系统效率的方向上实施新方案的前景和权宜之计,扩大了提供节能技术的方法清单,以提高根据运行条件的可靠性和耐久性。
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