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恶劣条件下评估救生衣的校正系数。

Correction factors for assessing immersion suits under harsh conditions.

作者信息

Power Jonathan, Tikuisis Peter, Ré António Simões, Barwood Martin, Tipton Michael

机构信息

National Research Council of Canada, 1 Arctic Avenue, St. John's, NL, A1B3T5, Canada.

Defence R&D Canada, 1133 Sheppard Avenue West, Toronto, ON, M3K2C9, Canada.

出版信息

Appl Ergon. 2016 Mar;53 Pt A:87-94. doi: 10.1016/j.apergo.2015.08.009. Epub 2015 Sep 20.

Abstract

Many immersion suit standards require testing of thermal protective properties in calm, circulating water while these suits are typically used in harsher environments where they often underperform. Yet it can be expensive and logistically challenging to test immersion suits in realistic conditions. The goal of this work was to develop a set of correction factors that would allow suits to be tested in calm water yet ensure they will offer sufficient protection in harsher conditions. Two immersion studies, one dry and the other with 500 mL of water within the suit, were conducted in wind and waves to measure the change in suit insulation. In both studies, wind and waves resulted in a significantly lower immersed insulation value compared to calm water. The minimum required thermal insulation for maintaining heat balance can be calculated for a given mean skin temperature, metabolic heat production, and water temperature. Combining the physiological limits of sustainable cold water immersion and actual suit insulation, correction factors can be deduced for harsh conditions compared to calm. The minimum in-situ suit insulation to maintain thermal balance is 1.553-0.0624·TW + 0.00018·TW(2) for a dry calm condition. Multiplicative correction factors to the above equation are 1.37, 1.25, and 1.72 for wind + waves, 500 mL suit wetness, and both combined, respectively. Calm water certification tests of suit insulation should meet or exceed the minimum in-situ requirements to maintain thermal balance, and correction factors should be applied for a more realistic determination of minimum insulation for harsh conditions.

摘要

许多保温服标准要求在平静的循环水中测试其热防护性能,而这些保温服通常用于更恶劣的环境中,在这种环境下它们的性能往往不佳。然而,在实际条件下测试保温服可能既昂贵又在后勤方面具有挑战性。这项工作的目标是制定一套校正因子,使保温服能够在平静水中进行测试,同时确保它们在更恶劣的条件下能提供足够的保护。在风浪环境中进行了两项浸水研究,一项是干身状态,另一项是保温服内有500毫升水的状态,以测量保温服隔热性能的变化。在这两项研究中,与平静水相比,风浪导致浸水隔热值显著降低。对于给定的平均皮肤温度、代谢产热和水温,可以计算出维持热平衡所需的最低隔热值。结合可持续冷水浸泡的生理极限和实际保温服隔热性能,可以推导出与平静条件相比恶劣条件下的校正因子。在干燥平静条件下,维持热平衡所需的最低现场保温服隔热值为1.553 - 0.0624·TW + 0.00018·TW²。对于风浪、500毫升保温服湿度以及两者综合情况,上述公式的乘法校正因子分别为1.37、1.25和1.72。保温服隔热性能的平静水认证测试应达到或超过维持热平衡的最低现场要求,并且应应用校正因子以更实际地确定恶劣条件下的最低隔热值。

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