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Experimental study on the surgical microenvironment in an operating room with mixing ventilation under positive and negative pressure

Permanent lenke
https://hdl.handle.net/10037/31428
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article.pdf (1.559Mb)
Publisert versjon (PDF)
Dato
2021
Type
Chapter
Bokkapittel

Forfatter
Bi, Yang; Josefine Heggebø, Frida; Harsem, Trond Thorgeir; Mathisen, Hans Martin; Aganovic, Amar; Cao, Guangyu
Sammendrag
Due to the outbreak of Covid-19, negative pressure operating room (NPOR) are strongly recommended to be applied to prevent spreading virus from infected patients to adjacent rooms during surgery procedures. However, there have been few experimental studies on the effect of OR pressure difference on the surgical microenvironment. This study aims to experimentally investigate the airflow distribution in the surgical microenvironment in an OR under different pressure conditions. All measurements were performed in a fullscale laboratory, which has an area of 62 m2, and a mixing ventilation. The air velocity and temperature in the surgical microenvironment of a lying patient were measured under positive pressure of 5 Pa, 10 Pa, 15 Pa and negative pressure of -5 Pa, -10 Pa and -15 Pa. The effect of heat generated by operating lamps was also considered. The results show that the airflow distribution around the surgical wound is dominated by thermal plume from the patient under the condition of both positive and negative pressure. In other areas of the surgical microenvironment, regardless the pressure difference conditions, the room airflow distribution by ventilation system is the dominant factor on surgical microenvironment. Variations in differential pressure can affect the temperature distribution around the surgical site, with a smaller differential pressure producing a slightly larger vertical temperature gradient.
Forlag
SINTEF Academic Press
Serie
SINTEF proceedings ; 1
Sitering
Bi Y, Josefine Heggebø, Harsem, Mathisen HM, Aganovic A, Cao G. Experimental study on the surgical microenvironment in an operating room with mixing ventilation under positive and negative pressure. SINTEF akademisk forlag; 2021. 8 p.. SINTEF proceedings(1)
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  • Artikler, rapporter og annet (automasjon og prosessteknologi) [172]
Copyright 2021 The Author(s)

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