Evaporation generation in the vehicle fuel tank. Canister feed strategy optimization

G. G. Ter-Mkrtich’yan, N. A. Mikerin, V. V. Glaviznin, A. Tseytlin, A. B. Malyshev, Yu. G. Ter-Mkrtich’yan
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Abstract

Introduction (problem statement and relevance). In addition to the toxic substances generated during fuel combustion in the engine, the vehicle generates a significant amount of hydrocarbons in the form of fuel vapors generated as a result of evaporation from the fuel tank and fuel system components. The evaporation process parameters and the amount of fuel evaporations are determined by dynamics of fuel heating in the tank in various vehicle operation modes. Modern requirements for the limit level of emissions caused by evaporation become much stricter. Therefore, the solution of the task of fuel evaporation minimization and prevention of ingress thereof into the atmosphere is relevant and practically significant. The purposes of the studies are to develop a model of the processes of evaporation generation in the vehicle fuel tank based on the analysis of mathematical modeling and experimental research results as well as to develop the optimum strategy and algorithm of the canister feed.Methodology and research methods. In the study, a combination of analytical methods of the classical thermodynamics with modeling in the Simcenter Amesim integrated program platform environment is used.Scientific novelty and results. It has been found that transition from feeding the canister with an open vapor space to evaporation in a fixed-volume space allows significant reduction of the amount of hydrocarbons delivered to the canister.Practical significance. It has been found and proved that accumulation of hydrocarbons in a closed tank with discrete cyclic feed of the canister allows significant reduction of evaporation generation and lowering of the requirements for the canister parameters. An algorithm of optimum canister feed is suggested.
车辆油箱内产生的蒸发。罐体进料策略优化
引言(问题陈述和相关性)。除了在发动机燃料燃烧过程中产生的有毒物质外,车辆还会以燃料蒸气的形式产生大量碳氢化合物,这是油箱和燃料系统部件蒸发产生的结果。蒸发过程参数和燃油蒸发量是由车辆在不同工况下油箱内燃油加热的动态变化决定的。现代对由蒸发引起的排放限值的要求变得更加严格。因此,解决燃料蒸发最小化和防止其进入大气的任务具有重要的现实意义。本研究的目的是在分析数学模型和实验研究结果的基础上,建立汽车油箱内蒸发产生过程的模型,并制定罐式进料的优化策略和算法。方法论和研究方法。本研究采用经典热力学分析方法与Simcenter Amesim集成程序平台环境下的建模相结合的方法。科学的新颖性和成果。已经发现,从向具有开放蒸汽空间的罐中供气过渡到在固定体积空间中蒸发,可以显著减少输送到罐中的碳氢化合物的数量。现实意义。已经发现并证明,在密闭罐中积累碳氢化合物,使罐体的循环进料离散,可以显著减少蒸发产生,降低对罐体参数的要求。提出了一种最佳进料算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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