Probabilistic-statistical method for determining ergonomic tolerances of machine-tractor units with a gas-turbine engine

V. Shkrabak, N. Dzhabborov
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Abstract

The justification and usage of tolerances for ergonomic parameters ensure safety and improve the conditions and safety of operators of machine-tractor units. The subject of the investigation is a development of the mathematical models for a determination of the ergonomic parameters of machine-tractor units with gas-turbine engines. The aim of the investigations is a development of the probabilistic-statistical method for a determination of the ergonomic tolerances of machine-tractor units equipped with gas turbine engines. The novelty of the researches consists in the developed mathematical models and algorithm for a calculation of the tolerances for ergonomic parameters of machine-tractor units with gas-turbine engines. The proposed method is developed on the basis of systems analysis and methods of collecting and processing information, mathematical modeling. At the same time, state standards GOST 26387-8, GOST R ISO 15005-2012, GOST R ISO 15534-1-2009 were also used. Ergonomic parameters of machine-tractor units are divided into the following basic groups: anthropometric, hygienic, physiological and psychological. As the main quantitative characteristics of the tolerances for ergonomic parameters of machine-tractor units, the following are defined: adjusting tolerances for the level of adjustment, adjusting tolerances for the accuracy of adjustment and control tolerances. The proposed method and algorithm for a calculation allow to predict the optimal values of ergonomic tolerances of machine-tractor units with a probability of 0,95. As an example in the article, the examples of calculating the temperature tolerances at the mechanic workplace of the machine-tractor unit with a gas-turbine engine GTD-350T are given. It is established that the optimum values of the adjusting tolerance for the level of the temperature setting at the mechanic workplace are equal to 20±1 °C, and the adjusting tolerance for the accuracy of the adjustment is ±0,7 °C. The established ergonomic tolerances and the probabilistic-statistical method for their determination are intended for a justification, continuous control and ergonomic parameters assessments that ensure the safety and improvement of the conditions and labor protection of the operator of machine-tractor units with a gas turbine engine. The proposed probabilistic-statistical method provides the definition and optimization of ergonomic parameters of machine-tractor units with a gas turbine engine, taking into account the probabilistic character of their changes under specific conditions of their operation.
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确定带有燃气涡轮发动机的机械-拖拉机装置的人机工程学公差的概率统计方法
工效学参数公差的确定和使用,保证了机械拖拉机操作人员的安全,改善了操作条件和安全性。研究的主题是用于确定带有燃气涡轮发动机的机械-拖拉机装置的人体工程学参数的数学模型的发展。研究的目的是发展概率统计方法,以确定配备燃气涡轮发动机的机械-拖拉机装置的人体工程学公差。本研究的新颖之处在于建立了计算燃气轮机机拖拉机机组工效参数公差的数学模型和算法。该方法是在系统分析、信息收集和处理、数学建模等方法的基础上发展起来的。同时还采用了国家标准GOST 26387-8、GOST R ISO 15005-2012、GOST R ISO 15534-1-2009。机械拖拉机装置的人体工效学参数分为以下基本组:人体学、卫生学、生理和心理。作为机拖拉机机组工效学参数公差的主要定量特征,定义了调整水平的调整公差、调整精度的调整公差和控制公差。所提出的计算方法和算法能够以0.95的概率预测机拖拉机单元的最优人机工程学公差值。本文以GTD-350T燃气涡轮发动机机拖机组机械工作间的温度差计算为例。确定了机械工作场所温度设定水平调整公差的最佳值为20±1℃,调整精度的调整公差为±0.7℃。所建立的人体工程学公差及其确定的概率统计方法旨在进行论证、连续控制和人体工程学参数评估,以确保使用燃气涡轮发动机的机械拖拉机机组操作员的安全和改善条件和劳动保护。本文提出的概率统计方法考虑了燃气轮机机拖机组在特定运行条件下变化的概率特征,给出了机拖机组工效参数的定义和优化。
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