Effectiveness of hyperbaric chamber ventilation.

IF 0.8 4区 医学 Q4 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH Diving and hyperbaric medicine Pub Date : 2023-06-30 DOI:10.28920/dhm53.2.85-91
Lyubisa Matity, Francois Burman, Jacek Kot, Joseph Caruana
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Abstract

Introduction: Hyperbaric chamber ventilation (HCV) refers to the intentional introduction of fresh gas, whether air, oxygen, or heliox, into a pressurised hyperbaric chamber in order to remove stale or otherwise compromised gas. The minimum required continuous HCV rate is usually determined by mathematical models derived from the contaminant mass balance within a well-stirred compartment. Non-uniform contaminant distribution patterns inside a hyperbaric chamber could emerge and invalidate the predictions of well-stirred models.

Methods: Contaminant distribution was investigated inside a clinical hyperbaric chamber with the aim of comparing well-stirred model predictions with the actual contaminant concentration measurements.

Results: Local ventilation effectiveness inside a clinical hyperbaric chamber may be compromised, leading to higher contaminant concentration values compared to the predictions of a mathematical model with a well-stirred assumption.

Conclusions: A well-stirred assumption in mathematical models is a useful simplification that allows reasonably accurate estimates of HCV requirements. However, local ventilation effectiveness values in a particular hyperbaric chamber might vary, with the potential for hazardous contaminant accumulation in under-ventilated zones.

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高压舱通气的有效性。
简介:高压舱通风(HCV)是指有意将新鲜气体,无论是空气、氧气还是氦氧,引入加压高压舱,以清除陈旧或其他受损的气体。所需的最小连续HCV感染率通常由数学模型确定,该数学模型源自充分搅拌的隔室内的污染物质量平衡。高压舱内污染物分布不均匀的模式可能会出现,并使搅拌良好的模型的预测无效。方法:在临床高压舱内研究污染物的分布,目的是将搅拌良好的模型预测与实际污染物浓度测量结果进行比较。结果:与具有充分假设的数学模型的预测相比,临床高压舱内的局部通气有效性可能会受到影响,导致污染物浓度值更高。结论:数学模型中一个充分的假设是一个有用的简化,可以合理准确地估计丙型肝炎病毒的需求。然而,特定高压舱的局部通风有效性值可能会有所不同,在通风不足的区域可能会积聚危险污染物。
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来源期刊
Diving and hyperbaric medicine
Diving and hyperbaric medicine 医学-公共卫生、环境卫生与职业卫生
CiteScore
1.70
自引率
22.20%
发文量
37
审稿时长
>12 weeks
期刊介绍: Diving and Hyperbaric Medicine (DHM) is the combined journal of the South Pacific Underwater Medicine Society (SPUMS) and the European Underwater and Baromedical Society (EUBS). It seeks to publish papers of high quality on all aspects of diving and hyperbaric medicine of interest to diving medical professionals, physicians of all specialties, scientists, members of the diving and hyperbaric industries, and divers. Manuscripts must be offered exclusively to Diving and Hyperbaric Medicine, unless clearly authenticated copyright exemption accompaniesthe manuscript. All manuscripts will be subject to peer review. Accepted contributions will also be subject to editing.
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