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Comparison of predicted and measured oxygen levels in a semi-closed underwater breathing apparatus

机译:在半封闭式水下呼吸器中预测和测量的氧气含量的比较

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An analytical model has recently been developed for predicting the circuit oxygen levels in semi-closed underwater breathing apparatus at various mission depths and diver activity levels (Nuckols, Clarke, Marr, 1999). Unmanned testing in June 2000 with a commercially available US Divers Aqualung OxyMix rebreather (NEDU Test Plan Number 00-06 dated May 2000) showed good agreement with this analytical model over a wide range of diver depths, orientations and activity levels (Nuckols, Gavin, Finlayson, 2000). However, the model indicated that an enhanced performance capability could possibly be achieved with the OxyMix by modifying the size of its exhaust bellows and changing the oxygen content of the supply gas. Following the tests in June, an optimization approach was applied to the analytical model to define desired design parameters for the OxyMix rebreather to maximize its excursion depth capability. Optimized exhaust volume ratios (EVR), the ratio of the small inner bellows volume relative to the main breathing bellows, and supply gas oxygen concentrations were identified to maximize safe operations for the OxyMix design. US Divers agreed to fabricate two modified exhaust bellows of varying volumes for testing to verify the predicted performances of the modified OxyMix rebreather. During the week of 18 December 2000, unmanned testing with these modified OxyMix rebreathers at the Experimental Dive Facility at NEDU verified predicted performances. Specific findings in these tests included a) a modified OxyMix rebreather using an exhaust volume ratio of approximately 6.25% and a supply gas mixture containing 37% oxygen was shown to give an excursion capability to 130 FSW while maintaining circuit PO/sub 2/ levels below 1.32 Ata (excursions to 150 FSW were shown to be possible with maximum PO/sub 2/ levels below 1.6 Ata) b) similar to the results seen in the June tests, circuit PO/sub 2/ levels were shown to be unaffected by diver activity rates between RMV's of 22.5 LPM and 62.5 LPM c) the addition of a diluent injection system on the modified OxyMix design provided minimum circuit oxygen levels of 0.42 Ata at 20 FSW and 0.25 Ata at 0 FSW while still maintaining circuit PO/sub 2/ levels below 1.32 Ata for excursions up to 130 FSW.
机译:最近已经开发出一种分析模型,用于预测在各种任务深度和潜水员活动水平下半封闭水下呼吸器中的回路氧气水平(Nuckols,Clarke,Marr,1999)。 2000年6月使用市售的美国Divers Aqualung OxyMix循环呼吸器进行无人值守测试(NEDU测试计划编号为00-06,日期为2000年5月)表明,该分析模型在各种潜水员深度,方向和活动水平上均具有很好的一致性(Nuckols,Gavin, Finlayson,2000年)。但是,该模型表明,通过修改OxyMix的排气波纹管的尺寸并更改供气中的氧气含量,可以提高OxyMix的性能。在6月份进行测试之后,对分析模型采用了一种优化方法,为OxyMix循环呼吸器定义了所需的设计参数,以最大化其偏移深度能力。确定了最佳的排气量比(EVR),较小的内部风箱容积与主呼吸风箱的比率以及供气中的氧气浓度,以使OxyMix设计的安全操作最大化。美国潜水员同意制造两个容量不同的改进型排气波纹管,以进行测试,以验证改进型OxyMix循环呼吸器的预期性能。在2000年12月18日的一周中,NEDU的实验潜水设施对这些改良的OxyMix循环呼吸器进行了无人值守测试,验证了预期的性能。这些测试的具体发现包括:a)排气量比约为6.25%的改良型OxyMix循环呼吸器,含37%氧气的供气混合物显示出130 FSW的偏移能力,同时保持回路PO / sub 2 /低于以下水平1.32 Ata(最大PO / sub 2 /水平低于1.6 Ata的情况下,可能漂移至150 FSW)b)与6月测试中看到的结果相似,电路PO / sub 2 /水平不受潜水员的影响在22.5 LPM和62.5 LPM的RMV之间的活性速率c)在改进的OxyMix设计上添加稀释剂注入系统可在20 FSW时提供最低的电路氧气水平0.42 Ata,在0 FSW时提供最低0.25 Ata,同时仍保持PO / sub 2 /低于1.32 Ata的水平,可进行高达130 FSW的游览。

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