SAE AIR 1609A-2005 Aircraft Humidification《飞机加湿》.pdf
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1、 AEROSPACE INFORMATION REPORT (R) Aircraft Humidification Issued 1982-04 Revised 2005-03 Superseding AIR1609 AIR1609 REV.A TABLE OF CONTENTS 1. SCOPE 3 1.1 Purpose3 2. REFERENCES.3 2.1 Applicable Documents .3 2.1.1 SAE Publications3 2.1.2 Government Publications.3 2.2 Other Publications4 2.3 Nomencl
2、ature.4 2.4 Units.5 3. GENERAL BACKGROUND .5 4. PHYSIOLOGICAL EFFECTS OF LOW HUMIDITY .5 4.1 Performance.6 4.2 Respiratory Effects.6 4.3 Effective Temperature7 4.4 Exposure Time.7 5. HUMIDITY LEVELS IN PRESSURIZED AIRCRAFT .7 5.1 Measurement of Cabin Humidity8 Reaffirmed 2010-05SAE Technical Standar
3、ds Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising therefrom, is the sole respo
4、nsibility of the user.” SAE reviews each technical report at least every five years at which time it may be reaffirmed, revised, or cancelled. SAE invites your written comments and suggestions. Copyright 2010 SAE International All rights reserved. No part of this publication may be reproduced, store
5、d in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: 724-776-4970 (outside USA) Fax: 724-776-0790 Emai
6、l: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.orgSAE values your input. To provide feedbackon this Technical Report, please visit http:/www.sae.org/technical/standards/AIR1609ACopyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking per
7、mitted without license from IHS-,-,-SAE AIR1609 Revision A - 2 - 6. HUMIDIFICATION IN AIRCRAFT AT HIGH ALTITUDE 10 6.1 Humidifier Input Requirements.11 6.2 Methods of Humidification13 6.3 Humidification Problems 15 6.4 Water System Interfaces17 7. PENALTIES OF HUMIDIFICATION.18 7.1 Weight18 7.2 Main
8、tenance.18 7.3 Operation .18 8. WATER TREATMENT .19 8.1 Health Requirements .19 8.2 Dissolved Solids.199. NOTES.20 FIGURE 1 Moisture Loss from the Average Human9 FIGURE 2 Water Requirements for Humidification12 Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reprod
9、uction or networking permitted without license from IHS-,-,-SAE AIR1609 Revision A - 3 - 1. SCOPE: This SAE Aerospace Information Report (AIR) covers the design parameters for various methods of humidification applicable to aircraft, the physiological aspects of low humidities, the possible benefits
10、 of controlling cabin humidity, the penalties associated with humidification, and the problems which must be solved for practical aircraft humidification systems. The design information is applicable to commercial and military aircraft. The physiological aspects cover all aircraft environmental cont
11、rol applications. 1.1 Purpose: The purpose of this AIR is to provide guidelines for the design of aircraft humidification systems. Physiological effects of humidity levels on crew and passengers are reviewed.Various techniques used for cabin humidification are discussed and evaluated. Various techni
12、cal issues are addressed, and effects associated with humidification systems are described.2. REFERENCES: 2.1 Applicable Documents: The following publications form a part of this document to the extent specified herein. The latest issue of SAE publications shall apply. The applicable issue of other
13、publications shall be the issue in effect on the date of purchase order. In the event of conflict between the text of this document and references cited herein, the text of this document takes precedence. Nothing in this document, however, supersedes applicable laws and regulations unless a specific
14、 exemption has been obtained. 2.1.1 SAE Publications: Available from SAE, 400 Commonwealth Drive, Warrendale, PA 15096-0001.2.1.1.1 ARP987 The Control of Excess Humidity in Avionics Cooling 2.1.1.2 AIR1204 Control of Water Carryover from the Environmental Control System and Condensation on the Struc
15、ture 2.1.1.3 AIR1168/3 Aerospace Applied Thermodynamics Manual, Section 3, Aerothermodynamic Systems Engineering and Design 2.1.2 Government Publications: Available from Superintendent of Documents, P.O. Box 371954, Pittsburgh, PA 15250-7954. 2.1.2.1 Food and Drug Administration Public Health Servic
16、e Publication No. 308, Handbook on Sanitation of Airlines Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE AIR1609 Revision A - 4 - 2.2 Other Publications: 2.2.1 D. A. McIntyre; Indoor Climate, Ap
17、plied Science, 1980. 2.2.2 L. B. Anderson MD, Gunnar R. Lundquist MSC, Preben L. Jensen, Donald F. Proctor MD; Human Response to 78 Hour Exposure to Dry Air, Arch. Environmental Health, Vol. 29, December, 1974. 2.2.3 ASHRAE Handbook, Fundamentals Volume, 1997. 2.2.4 W. F. Storm, et al; Effect of Low
18、 Humidity on Human Performance, USAF School of Aerospace Medicine, Brooks AFB, Texas. SAM-TR-73-3, Feb 1973. 2.2.5 J. R. Dille MD; Further Information Concerning Humidity Control for Air Crew Performance. FAA-CAMI Oklahoma City, OK. File AC-100 Oct 1970. 2.2.6 E. W. Dunklin and T. T. Puck; The Letha
19、l Effect of Relative Humidity on Airborne Bacteria. Journal of Experimental Medicine 87:87, Feb 1948. 2.2.7 W. H. Carrier: Rational Psychrometric Formulae, Transactions A.S.M.E., 1911. 2.3 Nomenclature: This list contains symbols used in equations, charts and descriptions in this AIR. G Water added
20、to increase humidity, kg/min (lb/min) mpAverage moisture generated per passenger, kg/min (lb/min) mcAverage moisture generated per crew member, kg/min (lb/min) npNumber of passengers ncNumber of crew members PcCabin pressure, kPa absolute (psia) PvSaturated vapor pressure of water at the dry bulb te
21、mperature, kPa absolute (psia)RH Relative humidity, % WaOutside air flow rate into the cabin, kg/s (lb/min) WrRecirculated air, kg/s (lb/min) Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE AIR16
22、09 Revision A - 5 - 2.3 (Continued): x Ratio of moisture in recirculated air to moisture in cabin air aSpecific humidity, ambient, kg/kg (lb/lb) of dry air cSpecific humidity, cabin, kg/kg (lb/lb) of dry air sWater vapor at saturation at dry bulb temperature and at the cabin pressure, kg/kg (lb/lb)
23、of dry air gr Grain = 0.0000648 kg (7000 gr = 1 lb) 2.4 Units: All equations in this AIR may be used with metric (SI) or English units if consistency is maintained.3. GENERAL BACKGROUND: World wide variations in relative humidity range from as little as 6% in desert areas to 100% when rain is fallin
24、g or the temperature is equal to or just below the dew point. The absolute (specific) humidity or water content shows an equally wide variation, being less than 2 g of water per kg of dry air (14 gr/lb) in cold winter climates to as high as 29 g/kg (200 gr/lb) during summer months in tropical areas.
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