NASA-TR-D-747-1942 Wind-tunnel tests of four - and six-blade single - and dual-rotating tractor propellers《四片和六片单旋转和双旋转牵引式螺旋桨的风洞试验》.pdf
《NASA-TR-D-747-1942 Wind-tunnel tests of four - and six-blade single - and dual-rotating tractor propellers《四片和六片单旋转和双旋转牵引式螺旋桨的风洞试验》.pdf》由会员分享,可在线阅读,更多相关《NASA-TR-D-747-1942 Wind-tunnel tests of four - and six-blade single - and dual-rotating tractor propellers《四片和六片单旋转和双旋转牵引式螺旋桨的风洞试验》.pdf(27页珍藏版)》请在麦多课文档分享上搜索。
1、REPORT No. 747WIND-TUNNEL TESTS OF FOUR- AND SIX-BLADE SINGLE- AND DUAL-ROTATINGTRACTOR PROPELLERSBy DAVID BIERMANN and EIIWIN P. HAETMANSUMMARYTe8t8 of 10-foot dknwter, four- and six-blade sin-rotating and dual-rotating propeller were conductedin the N.AC the 66 getting corresponds to airplane spee
2、dsgreater than 600 ndeg per hour.% rewh indicate thut dud-rotating propellers werefrom O to 6 percent more eent than single-rotatingones; but, when the propellers operatedin tlu pregenceof amung, the gain um reduced about one-half. Otheradwttageg of dual-rotating propelm were found toinclude greater
3、 power absorption and greater ej?ciency atthe low.J“nDoperating range of high-pitch propeller.INTRODUCTIONTheoretical treatments of propelIer Iosses, such asthose given in references 1 tid 2, have indicated ro-tational losses in the slipstream amounting to severalpercent for highIy loaded propellers
4、 operating at highvalues of T/nD. MiIitary aircraft have now reachedthe stage of speed and power wherein it appears thatduakotating propeIks might be justified on thegrounds of improved efEciency alone ahhough theelimination of the engine torque reaction might be amore important consideration. In vi
5、ew of theseadvantages of dual-rotating propellers over sin.e-rotating ones, the need for full-scale propeIIer tests isobvious, inasmuch as very Iittle information on thesubjeot ia avaiIabIe.A test program was irtstituted for the propellm-research tunnel to. cover the following conditions:Tests of tw
6、o-, tl tests of four-, six-, and eight-blade dual-rotating propellers operating both ss tractors andpushers; tests b determine the effect of a wing inreduci the slipstream”rotational losses.The present report covers the results of the tractortests made with four- and si=blade single-ratating andfour
7、- and six-bIade dual-rotating propellers operatingwith and without a wing in the slipst.ieam.APPARATUS AND METHODSThe tests were made in the NACA propeIIer-researchtunnel.Propellers.-The propelIem, which incorporate theCIark Y section, were approximately 10feet in diameter.They varied sIightIy in di
8、ameter, depending on the hubnsed. The drawing numbers are HwniItrm Standard ,_3155-0 for the right-hand blades and HamiltonStandard 3156+3 for the left-hand black. BIade-form curves are given in figure 1.Driving mechanism.-The propellers were driren bytwo 25-horsepower electric motors arranged in ta
9、n-dem. (See fig. 2.) The front motor was directlyconnected to the front propelIer and the rear motordrove the rear propelIer through chains and a counter- _shaft. The propelIer shafts were Iocked together for$/1./0.09.C.07.C4s. r, stntionrsdhw b,eectkmchord;k,seetkmthkkness;P, Pita a19 !-.-.,.”.”.-.
10、Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-320 REPORT No”: 747NATIONAL ADVIaORY COMMITTEE FOR- tiR0NAuHCf3 .-single-rotation operating conditions. The raotoIwwermounted on bearings. concentric with the shaft axis.Each motur frame was restrained
11、from rotating byhdical springs connecting with the supporting frame,which proi Rear mokrJ“ Tbr-que springFIGrItE 2.-FroerAlve mehenkn.ided means of measuring the torque.)Scdsyndevices were used to transmit the motion ofthe motor frames to the test. chamber i.n order thttorque measurementscould be ma
12、de1. i80ffII IFtIIcrrri3.PlmvtewehowlngdhnenslmaldetaflsofWIIJEmd noeelle. Mnensiona k-r Iour-bledepropelleM.7 Inchceend for slx-bkic lwole= 10.11inchesFront end rear nrmlleltneem Iderrtkal.Body.An outline of the streamline body housingthe motors is showmin figure 3. A photograph of thesetup is give
13、n in figuro 4. Teds were.made with andwithout the symmetrical wing in place. The wing waslocated in the midwing position tind set at an angle ofuttack of OO. Both ends of the body were madeidenticaI in order that comparative tractor and pushertests.could be made without altering the body shape.Spinn
14、ers were used for all tests. Both wing and bodywere constructed of wooden forming members coveredwith shcet+duminum skin.Measuring equipment,-The net thrust or drag of thepropeIIm-body combination was measured on a thrustbalance located on the floor of the test chambw. Thetorque of each motor was mm
15、.surcd with thr spring-dynamorneter Selsyn repeating system, TIN a-mometerwas calibratedbefore and after the seriesof Lwttiwas made, Frictiondet,ermination tests were mwkfrequently duringcthe program. The propollty spmdwas rnimsured with an accurate electric taclwmctcr.checked frequently during the
16、investigation. F.achpropeller of the dual combinations was run at tho sameF1OURE4.Test setul). The )hotomh chowsa dwblndcAe-rotetIrrermrekrwith M!In IIlmre.speed. A synclwoscop was used to iridicatc synchro-nism, Control of the relative speeds of the two motwawas obtained with a frequency converter
17、placed in thcline feeding one of the induction ivc motors.Test oonditionstThe tunnel speed ranged from mmJOabout 110 miles per hour. The maximum propdlrrpeed was about 550 rpm, which corrcspomis LO n.oame torque at peak efficiency as for the front proprllrr.,4 plot of the.difference bctwwm the front
18、 and lhc ruryopeller-bIade settings is given in figure L. A typicalplot of the resultsis given in figure 6. The amount thatthe test points scatter gives an indication of the .ccuracy of the results.The four- and the six-blade single-rotating propdlursmre made up with two two-way nnd t.lmw-way huhslm
19、spoctively, mounted in tandem. BCCnUSCof LIICI)()i-tion of the shaft splines when the shtifls were krywlioget,her, equal spacing butwcen front ml rwtr lhtdwiv impossible and Lhcrcforc the front IJude Icd thu:ear by 85,4 and 75.0 for four-blade and six-ldadpropellers,respectively. This mmmgrment rcsu
20、llrd in,dent.icalbIade shank and spiruwr conditions for lJtJh:1)0 single- and dunl-rotalion tesls.Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-.24y,20 -16 -G. r2 -,08 -.04 - t -0FOUR- AND SIX-BLADE SINGLE- AND DUAL-ROTATING TRACTOE PROPELLEES.4 .8
21、 /2 /6323.48.40.32Cp24./6_082.0 2.4 0 .8VwIB12.IndMduaJpm.wuWllnt curvesforfour-bkdcduaMotatln2IKUPMCISwthuutwlIw.Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-FOUR- AND SIX-BLADE SINGLJI- AND DtiBoTANG TRAmoE pROpEE 32ti .-.28.24?0.)6c.12.08.04a11
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