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Appendix XVIII. In-tube condensation with normal breathing and<br />

deep breathing induced fluctuation under conditions of 4cmH2O with<br />

reverse flow<br />

Figure XVIII. 1 In-tube condensation of steady flow, breathing added fluctuating flows under<br />

conditions of 4cmH2O, 55°C, 0W, 22°C&20% (condensation occurs when curve is below zero)<br />

Figure XVIII. 1 shows that the normal breathing condensation/evaporation curve is<br />

below that of the steady flow. The normal breathing induced fluctuation makes the<br />

condensation start to occur in the last lumps of the HADT. This is firstly because of the<br />

concavity factor which drags the curve towards the X-axial, secondly because of the<br />

condensation-to-evaporation coefficient factor, especially in the larger numbered lumps.<br />

Figure XVIII. 2 and Figure XVIII. 3 support the explanation. In these graphs, it can be<br />

seen that for normal breathing, the condensation and evaporation are alternatively<br />

occurring thus the condensation-to-evaporation coefficient plays a role.<br />

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