The influence of the thermal load of the environment on electrical personnel using shielding personal protective equipment in open areas during the warm season

Влияние тепловой нагрузки окружающей среды на электротехнический персонал, использующий экранирующие средства индивидуальной защиты на открытых площадках в теплый период года
Sergey Yu. Perov, Maria V. Sazhina, Tatyana A. Konshina
2023-02-25

industrial frequency electric fieldsopen switchgearsshielding personal protective equipmentthermal loadthermoregulation
Introduction. The paper presents the results of a hygienic assessment of the intensity levels of electric and magnetic fields of industrial frequency and the functional state of the human body when using shielding personal protective equipment against electric fields of industrial frequency on open switchgears with a voltage of 220-750 kV in the warm season. The study aims to explore the functional state of the human body using personal protective equipment against industrial frequency electric fields during work on open switchgears with a voltage of 220-750 kV, and the possibility of their regulation depending on the thermal load of the environment. Materials and methods. The specialists measured the levels of electric and magnetic fields of industrial frequency in accordance with MUK 4.3.2491-09. Eight volunteers took part in the study to assess the functional state of the human body when using personal protective equipment against industrial frequency electric fields. Volunteers performed the work of electrical personnel for 60 minutes followed by a 30-minute recovery. We monitored environmental parameters based on measurements of the environmental heat load index and recorded indicators such as skin temperature and humidity, temperature and humidity under clothing, moisture loss. Results. At the considered electric grid facilities, the researchers recorded the excess of remote adjustment of the electric field of industrial frequency up to 30 kV/m, in this regard, the use of personal protective equipment is mandatory. The obtained results of studies of the functional state of the human body revealed a tendency to increase the voltage of the mechanisms of thermoregulation of the human body using personal protective equipment against electric fields of industrial frequency when working on open switchgear. Limitations. The number of volunteers was due to limited access to production facilities. Conclusion. The regulation of work and rest modes of personnel when working in an open area during the warm season according to the index of the thermal load of the environment requires adjustment, since the studies have shown the need for stricter time regulation when operating personal protective equipment against an electric field of industrial frequency in a heating environment, taking into account their influence on the thermal and functional state of the human body. Ethics. The study was approved by the Local Ethics Committee of the Izmerov Research Institute of Occupational Health (extract from the minutes of the meeting No. 3 dated 03/23/2022).
1
Open switchgears operating at 220–750 kV exhibited industrial-frequency electric-field levels requiring mandatory use of shielding personal protective equipment.
2
The study supports regulating personnel work–rest schedules according to environmental thermal load when shielding equipment is used during warm-season outdoor work.
3
The study was limited by the small volunteer sample, which resulted from restricted access to production facilities.
4
Thermal effects were assessed through environmental heat-load index, skin temperature and humidity, under-clothing temperature and humidity, and moisture loss.
5
Using shielding protective equipment during 60 minutes of outdoor electrical work showed a tendency toward increased strain on human thermoregulation mechanisms.

Electrical personnel using shielding personal protective equipment while working on open switchgears with 220–750 kV during the warm season

The functional state and thermoregulatory responses of the human body, including thermal load indicators, during work with shielding personal protective equipment under varying environmental heat load

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Publication Date
2023-02-25
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Authors
Sergey Yu. Perov
Maria V. Sazhina
Tatyana A. Konshina
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