REG NACA-RB-3I20-1943 Some notes on the determination of the stick-fixed neutral point from wind-tunnel data.pdf
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1、I. .I.iI.!./.,NATiOUL ADVISORY COMhTiE FOR AERONAlilCSWAlrmm Iuw(m”r. ORIGINALLYISSUEDSeptember 1943 asRes whereas the other method is agraphical solution-for the same mathematical equation; Amethod is als”ooincluded for determining the vertical vari-ation of the neutral point. The combined horizont
2、al andvertical variation of the neutral point completely describesthe stick-fixed longitudinal stability of airplanes thathave large allowable center-of-gravity shifts.INTRODUCTION?The concept of the neutral oint has been treated inreferences 1 to 4, and its usefulness in the analysis ofstatic longi
3、tudinal stability, especially with regard tothe effect of power, has been proved. The determinationof the neutral point from flight data is discussed in ref-erence 3; whereas reference 4 presents the methods usedwithwind-tunnel date.The p-resent report offers two simplified methods ofdetermining the
4、 horizontal location of the neutral pointfrom wind-tunnel data plotted as pitchin-moment coeffi-cient Cm againet lift coefficient CL for severalstabilizer-setting tests with the elevator neutral: themethod applies equally well to tests made with variouselevator deflections with the stabilizer settin
5、g fixed. Amethod is presented for determining th”e vertical variationof the neutral point. The combined horizontal and verticalvariation completely describes the stick-fixed longitudinalstability of airplanes that have large allowable center-of-gravity shifts.Provided by IHSNot for ResaleNo reproduc
6、tion or networking permitted without license from IHS-,-,-/2.,. .The neutral point is defined as the location of thecenter of gravity of the airplane when the airplane istrimmed (Cm = O) and when the stick-fixed stability asmeasured by dC#dCL about the center of gravity, isneutral (2= 0)= Data obtai
7、nedfrom vind-tunnel testsare usually plotted aq Om against CL for several 6ta-bilizer settings at a specified center-of-gravity locatiop.The neutral point may readily be determined from thesedata provided the assumption is valid that the rate ofchange of the slope of the pitching-moment curve (about
8、 agiven e.g. and at a given lift coefficient) is constantwith stabilizer” setting it. !lhat this assumption is validis proved in appendix A, in which the slope of the taillift curve is assued to be constant, a condition whichusually holds up to the region near the stall of the tailsurface. If the da
9、ta are obtained for unstalled conditionsof the tail - which can be attained. by proper choice ofstabilizer settings - the neutral-point d6termiGations will Qbe valid. The symbols used. in this paper are defined as they occur in the text and are summarized in appendix B. .HORIZONTAL LOCA!?IOU OF NEU!
10、BALPOIIJ!IEetkod IConsider the two ar-oitrary curves of Cm against CLfor different stabilizer settings shown in figwre 1 and .suppose that the neutral point of the airplane is to bedetermined at some lift coefficient CL = 1.2. . It is appar-ent that, at CL = 1.2, the airplaG is untrimmed (Cm + 0)for
11、 both stabilizer se tin s7dcF: t5Rt , as is general forpower-on conditions, .dcm ; at CL = 1.2 depends upon,stabilizer settin . E$ea if m were zero, moreover, thevalue 02 (dCm/d,-”w :d :i:-ure 2, the neutral potnt is give in chrds forward orrrearward of t:ne center of gravity about which the data ar
12、egiven depending upon whether Cm/CL iq positive or negativeat thepoint of intersection,Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-4If more than two tabilizer curves are availa%le andthe values of!0dCm/dCL x against Cm/CL do not form astraight li
13、ne a in fig re 2, a curve must be faired throughthe poi ts to determine the intersection with the,line)dGm/dCL x = Cm/CL. In this case, the variation of taili.ftwit tail angle of attack is not linear. All the for-mulas presented herein, however, assume the usual aonditionthat all points fal on a str
14、aight line. 4,uIt has been shown that the neutral-point is the solutionof a set of simultaneous equations, which are represented inFigure 2 by the two straight lines. One line hast?:;.$?al -as the coordinates ofone point andas the coordinates of another point.quation of a line passing throughthese p
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