Improvement of requirements for power frequency electric field personal protective equipment

Author(s):  
S. Y. Perov ◽  
T. A. Konshina ◽  
E. N. Makarova-Zemlyanskaya

The assessing problems of safety occupational conditions using power frequency electric field personal protective equipment and induced voltage are considered. The new requirements for protective suits based on the class working conditions and methods of shielding direct estimation of the power frequency electric fields are shown.

Author(s):  
Olga V. Burmistrova ◽  
Sergey Yu. Perov ◽  
Tatyana A. Konshina

Modern working conditions of employees can be characterized by the presence of harmful factors of the working environment, including physical factors that often have a complex effect on the human body during the working shift. One of the main harmful factors of the working environment for electrical personnel is the electric field of industrial frequency, which is protected by personal protective equipment (shielding kits), which exerts an additional thermal load on the body of personnel when working outdoors in the summer. The aim of the study was a comprehensive assessment of personal protective equipment of various configurations and their impact on the thermal state of a person in a heating environment to select the optimal configuration. The objects of study were screening suits consisted of overalls, jacket and trousers, jacket and semi-overall. For screening suits protective properties test the possible working conditions were simulated power frequency electric field levels from 5 to 80 kV/m (grounding) and 10-100 kV/m (on wire potential). The physiological and hygienic assessment of personal protective equipment involved 3 male volunteers. Their body constitution was selected according to typical differences of workers. Volunteers dressed in screening suit had physical activity at air temperature 34.8±0.3°C, relative humidity 48.0±3.0% and air mobility 0.15 m/s. Before and during the study parameters were recorded: skin temperature on 11 parts of body surface, clothes temperature, heart rate, body temperature in the ear canal, points of heat and moisture sensation and moisture loss was determined after the study. Before physical activity and after recovery period volunteers were measured blood pressure. Studies of the protective properties of three sets of personal protective equipment have shown that the best protective characteristics in comparison with the other sets have a jacket and half - overalls, the worst - a jacket and trousers. The results of the physiological and hygienic evaluation of screening kits showed individual differences in the thermoregulatory reactions of all volunteers when using different sets of personal protective equipment. At the same time, large amounts of heat accumulation in the body, a high heart rate and its change, as well as a higher moisture perception score were observed during the operation of the jumpsuit. As a result of research, the optimal configuration was chosen jacket and half-overalls, which has a moderate thermal load on the human body and has the best protective characteristics. From the point of view of the lowest voltage of thermoregulation reactions, it can be recommended to use a shielding kit as part of jacket and trousers.


Author(s):  
Sergey Yu. Perov ◽  
Tatyana A. Konshina ◽  
Elena N. Makarova-Zemlyanskaya

In conditions of exceeding the maximum permissible levels of power frequency electric field, the staff must use personal protective equipment. Requirements for such means are regulated by the system of occupational safety standards. The goal of this work is analyzed new requirements for power frequency and induced personal protective equipment in the regulatory interstate standards GOST 12.4.172 and GOST 12.4.283. The personal protective equipment new requirements for various types of work are substantiated to electrical personnel health safety during the maintenance and operation of power grid facilities. Increasing requirements for personal protective equipment improves the staff protection at ground potential and at wire potential, including in emergency situations such as induced and step voltage.


2012 ◽  
Vol 260-261 ◽  
pp. 402-407
Author(s):  
Ai Qing Ma ◽  
Lei Chen

The shock effect has been analyzed when the human body touches different types of vehicles in power frequency electric field. It solved the problem of influence of induced voltage generated by high voltage AC Power Lines on human Body. The induced voltage value of the human body and three different types of vehicles has been calculated by the soft of ANSYS in this paper. The results indicate that the human body will be shocked by two processes of transient and steady state. The influence of shock effect of transient and steady state on human body has been selectively analyzed when the human body touches vehicles. The proposed models and algorithm has the advantages of simple calculation procedure, small calculation burden and convenient to engineering application. It can be applied to the shock effect when the human body touches metal objects with different potential in power frequency electric field. It is worth being populated.


2013 ◽  
Vol 303-306 ◽  
pp. 482-488
Author(s):  
Kai Mao ◽  
Jin Gang Wang ◽  
Xu Dong Deng ◽  
Wei He ◽  
Zuo Peng Zhang

Based on the basic theory of electromagnetic field, the Electric Field Distortion (EFD) in power frequency electric field caused by induced current of human body has been analyzed. The enhancement factor of the electric field distortion is introduced to reduce the influences caused by human body in the measurement of high voltage electric fields. The Ansoft Maxwell is used to simulate and calculate the electric field distribution under the influence of the human body to have the value of enhancement factor. In addition, the enhancement factor has been corrected by experiment with the electromagnetic field analyzer EFA300. With the enhancement factor introduced in this paper, the measurement error can be reduced.


2013 ◽  
Vol 441 ◽  
pp. 212-216
Author(s):  
Zhen Guang Liang ◽  
Yu Ze Jiang ◽  
Di Wen Jiang ◽  
Zong Jie Liu

This paper studied influence of three dimension complex ground on electric field under overhead lines. Surface charge method is discussed and planar triangle surface charge elements are used to represent complex ground. Electric field of overhead lines is analyzed by charge simulation method. Finite straight line charges are used to represent conductors. Then electric field of 220kV double circuit overhead lines over a three dimension small hill is calculated and distribution of electric field 1.5m above the ground is analyzed.


2018 ◽  
Vol 191 (1) ◽  
pp. 104-110
Author(s):  
Chunping Yang ◽  
Wenbin Zhang ◽  
Nianrong Zhou ◽  
Lijun Tang ◽  
Tianwen Li

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