SAE ARP 4104-1988 Design Objectives for Handling Qualities of Transport Aircraft《运输飞行器的搬运质量的设计目标》.pdf
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1、AEROSPACE RECOMMENDED PRACTICEARP4104Issued 1988-07Reaffirmed 2007-07Design Objectives for Handling Qualities of Transport Aircraft1. SCOPE:This document specifies the requirements for the design objectives for handling qualities applicable to transport aircraft operating in the subsonic, transonic,
2、 and supersonic speed range. These objectives are not necessarily applicable to rotor or VTOL aircraft.2. REFERENCES:2.1 Applicable Documents:N69-22539 THE USE OF PILOT RATING IN THE EVALUATION OF AIRCRAFT HANDLING(NTIS) QUALITIES, GEORGE E. COOPER, ROBERT P. HARPER, 1969 (NASA TND-5153)(NASA)2.2 De
3、finitions:AFCS Automatic Flight Control SystemCLCoefficient of LiftCAS Calibrated air speed (air speed indicator reading corrected for position and instrument error)min MinuteCG Center of gravitylb Poundsec SecondRATIONALE This document has been reaffirmed to comply with the SAE 5-Year Review policy
4、. SAE Technical Standards 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 there
5、from, is the sole responsibility 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 2007 SAE International All rights reserved. No part of this publication m
6、ay be reproduced, stored 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)
7、 Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org SAE ARP4104 - 2 -2.2 (Continued):Ve Equivalent Airspeed - True airspeed multiplied by square root of the relative densityStalling speed or minimum usable flying speed in general (see 3.1.28.2)Stalling speed (see 3.1.
8、28.2) obtained in a specified configurationStalling speed (see 3.1.28.2) with wing flaps in the landing position and landing gear downV2 Takeoff safety speed or minimum speed with an engine failed.Normally 1.122 VREF Reference speed for landing based on a specified landing configuration.Normally 1.2
9、15 VRC Recommended climb speed with climb thrustVTRIM A speed chosen whereby the airplane is trimmed to fly straight and level hands offVLOF Speed at which the airplane normally lifts off the ground and first becomes airborneVB Design speed for maximum gust intensityVD Maximum design or demonstrated
10、 speedVmca Minimum control speed in the air with the critical engine inoperativeVmcg Minimum control speed on the ground with the critical engine inoperativeHandling Qualities Those qualities of an airplane and its flight control system that effect the ease and precision with which the pilot is able
11、 to control the airplanes speed and flight pathVFC/MFC Maximum speed for stability characteristics (normally speed midway between Vmo and VD, MFC is Mmo + 0.01M)Vmo Maximum operating speedMD Maximum design or demonstrated Mach number, associated with VDMmo Maximum operating Mach No.Vs1gVs1VsoVs1VsoS
12、AE ARP4104 - 3 -2.2 (Continued):K Constant depending upon the period of the lateral-directional oscillation - See Figure 1K/T1/2 Equals 1/C1/2 for periods less than 2.4 secC1/2 Number of cycles for the lateral oscillations to damp to half amplitudeT1/2 Time to damp to 1/2 amplitude Bank angle, degre
13、es Angle-of-attack Sideslip angle, degreesRatio of amplitudes of bank and sideslip angles in oscillatory modeRolling parameter, degrees/ft/sWhere Ve is equivalent airspeed in ft/sg Acceleration due to gravityP Period in secondsDeadbeat To come to rest without perceptible oscillation or overshoot-dut
14、chrollVe-Ve-57.3Ve-=-dutchrollSAE ARP4104 - 4 -3. OPERATIONAL REQUIREMENTS:3.1 General Requirements:Interpretation of Qualitative Objectives - In several instances through the document, qualitative terms, such as “objectionable flight characteristics“, “unacceptable flight conditions“, “unusual pilo
15、t technique“, etc., have been employed as a means of permitting latitude where absolute quantitative criteria might be unduly restrictive. As an overall objective, the aircrafts handling qualities should rate 3 or better on the Cooper-Harper rating scale. For single system failures not improbable, f
16、light in the operating envelope should be controllable to a degree corresponding to a Cooper-Harper rating of 4 or better, while multiple failures may degrade to 6 or better. The detailed objectives are intended to cover all-engines-operating conditions unless stated otherwise; where engine inoperat
17、ive conditions are not specifically mentioned, some degradation from the all-engines-operating standards will be accepted.Rates of Operation of Auxiliary Aerodynamic Devices - Although it has not been considered feasible to include in this document quantitative criteria for rates of operation of tri
18、m tabs, trimmable stabilizers, artificial feel trimmers, etc., or for rates of extension and retraction of flaps, speed brakes, etc., the influence of such rates on the handling qualities may be appreciable and is treated in 3.1.6.3, 3.1.6.5, and 3.1.6.7. In general, trim devices should operate rapi
19、dly enough to enable the pilot to maintain trim under changing conditions as normally encountered in operation of the airplane, and yet must not be so rapid in operation as to induce oversensitivity under any flight condition. Automatic trim rates and authorities should be airspeed scheduled and g l
20、imited to the point that pilot control applied in opposition will arrest aircraft motion sufficiently long to disengage an errant system. Flaps and other high-lift devices should operate at a rate sufficient to permit transition into the high lift configuration without undue delay, and yet must not
21、operate so rapidly as to cause sudden or erratic trim or excessive loss of lift during retraction. This limitation on rate of operation applies also to speed brakes which, nevertheless, must function at a rate sufficient to meet the operational needs.3.1.1 Aircraft Loading: Unless otherwise stated,
22、the DESIGN OBJECTIVES shall apply to all aircraft weights and CG locations within the approved limits.SAE ARP4104 - 5 -3.1.2 Altitudes: Unless otherwise stated, the requirements for the following regimes of flight shall apply at the altitudes listed.3.1.3 Temperature: Unless otherwise stated, these
23、objectives should apply to all temperatures within the approved operational envelope for the appropriate flight regime.3.1.4 Configuration: The basic airplane configurations should be as described below. Items not specified such as cooling provisions, wing sweep, and deceleration devices should be c
24、onsidered in their normal setting for the specified configuration. Additional configurations may be defined by the manufacturer.a. Takeoff - Gear down, high lift devices at takeoff position, takeoff thrust and/or augmentation, if provided.b. Takeoff, second segment - Gear up, high lift devices at ta
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