ARID LAND GEOGRAPHY doi:10.12118/j.isn.1000-6060.2018.06.25!"#$% 1, (, 230601) :!,"# 12$%&', $()*+,-./0,1 2016 234567,89 3:() ; +,, 12$%& +, <=>:?@ABCDE E FGH%I ;J 12$%&KLMNO' 1M 2M 3M; & %I P%I FQR%I STPUCDE GVQHWTGVEX%YK; %I %I & ;JLMNO' 10 M 11M 12M Z[ \% ]^ _`a Nb,1c \%45) : ;; ;!"#$ %&#' : F291.1 :A ()!", #$%&' () *+,-./01,' ( 23('456 78() *+ 96:; 2014, #.. / < = (2014 2020) >?@ABCDE./ 1, FG E0. /HI,!J>K0L,MN: ; O (./PQRS,! 0./78 T,-./ U0 VG WX$%,Y ) Z[,\]^_` ` a`bc 2016 10. Z \])^ _``a`bc0,%, F`bc @) AO 8A- W) `, ' ) *+, -./ 3;Z[Y,D@ 30a,_ ) `,78)_,) 0, ) )./,(\])Ka, Z[Y,) `, *+) [,W./ ([,8) ) *+ K 12) *+ :, 8 b, $%:,. /0 1 *!"#$ +,-. F`bc ^_`,Y`, a`,_ `0)! 8',! "0 )^_0 $,7 `(a`b,^_` ` a` 1 /01 :2018-04-19; 1 :2018-07-28 2:2017 <= H(AHSKY2017D30);2017JXH( 2017J XH(SK2017A0548) 3456: (1966-),,J,,,,M! ".E mail:chinalichina@163.com
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2!",) F`bc /,b. F` 0Q(8, ) *+ 85,. F`b c 0 8, * W 3 89 A A!c, _ "#$GH,%K \& %K 1/6,& KA0 '2 ) 8K 0 0.69 10 8 hm 2,\W )8K 0 1/10!Y W G A,%K V ( )*, W F 2016 + J, 57.4%,2016 E - J, 41.2% 2016, H - > 38.1%,,./01 - W,, 80% ~90%, (_ 12%,./ A 3 435 / 6 783 G 9,:;(, 2 2016 <32=>,./012,! <32 57! 3-) *+) 045,) *+ L0 8? ", a`' Y- 8,@ *%% AY,AB./,< a. / C0AK D 2016 6 E, K ()%K,b 2015 E2 3.2% 21.5%,a`, > 76.9%, FK \%K 0 83.9%,, W AG@A% 9.1 <b H ) F`bc 0,AI) 2 R`_J %, K) L %),!A 5*MNJ,A K)! 8, >, L O, A K,) 86 0*MNJ *+0) *+<,78) *+ K_ 12>, () *+ K:, I [, 120() *+./:,@A8 4 +, 89 PQ 5 [-5 R 5 2S5 T 5 ( 15 \<5 U, 4() * + 0VVb,) *+ 0 I [, 1^W 4.1 < = >7!J>K, X %,850K J,Y./0'(L L@AG *+ @A0ME,K J % 4 K, _J,JD2,6Z F,[\J] ^!,[\J ]%, `azf, b,jg GDP,' % c, Fc, X%,? 1 = >7 Tab.1 Evaluationindexsystem A' I ' I F' I J J /%./Q& ) *+./Q& JD2 /% % 6ZF / 100J -1 [\J] ^! / [\J ]% /J `azf /B 100J -1 b /% JG GDP/ ' % c /10 4 Fc /% X% /10 4 JG ]T / MJG1 K /km 2 JGRK /m 2 )@A ) `& 83 /kw h hm-1 )W X / 10 4 _ /% )% & /kw )%@A )>!K /kg hm -1 ) J J G ) % c / 10 4 J -1 [R O F 0 ) % c / 10 4 hm -1 ) % @A ) JG ]T / ) @A 83 /t hm -1
:) F`bc ) *+ :,./ JG ]T,MJG1 K, JGRK,./@A I [ [24-25] 4.2 < = >7 ) *+ L!) *+ >,,C)X*+ () %1*+, _0) *+ I [ [26], 0, ) *+./@AI [, ) @A )%@A ) % @A ) @A 4K,) `& 83 ) W X _ )% & )>!K ) J JG) % c [ROF0) % c ) JG ] T 83I 4.3 +,@A 89 _ 32 12>,"" - 2016!F R 0 2016 0- ( X./- R./0 1 /? 2 BCDE 8:,:, 0 ) *+0:,./@A, UR0 8A,,D@I0_ :,Q& _ I _ :; T,WS% (%1./0:, 4.3.1 [-[- :A0,ZH[-0_XH 02; A 0,Z[-0 _XH02 A 8 EC" W[-_ 50, EC 0_cG 0 ~1 EC J (X ji ) W: EC J (X ji )= Tab.2 Resultofthepowerfunction 5 X ji -β ji α ji -β ji i [1 k] α ji -X ji α ji -β ji i [k+1 m] (1) :X ji >,i=1,2,,n>[-v0,j=1,2> [- ;α ji,β ji >[-Y 3 2 ( ( 5 3 X 1 0.716 0.202 0.433 0.267 0.305 0.254 0.352 0.321 0.160 0.017 0.052 0.082 X 2 0.202 0.104 0.116 0.121 0.191 0.277 0.202 0.277 0.613 0.546 0.868 0.575 X 3 0.909 0.333 0.652 0.462 0.117 0.678 0.600 0.497 0.731 0.159 0.115 0.075 X 4 0.854 0.029 0.220 0.302 0.101 0.197 0.175 0.239 0.078 0.132 0.025 0.130 X 5 0.839 0.253 0.449 0.427 0.296 0.394 0.520 0.376 0.093 0.224 0.056 0.066 X 6 0.856 0.437 0.504 0.489 0.090 0.531 0.496 0.579 0.375 0.290 0.297 0.365 X 7 0.120 0.255 0.315 0.467 0.650 0.325 0.432 0.450 0.480 0.610 0.172 0.347 X 8 0.919 0.320 0.838 0.875 0.513 0.357 0.709 0.909 0.263 0.096 0.106 0.003 X 9 0.901 0.071 0.205 0.605 0.141 0.062 0.061 0.733 0.251 0.010 0.178 0.001 X 10 0.977 0.407 0.335 0.215 0.310 0.457 0.587 0.125 0.384 0.715 0.401 0.767 X 11 0.939 0.034 0.075 0.228 0.068 0.051 0.029 0.089 0.115 0.008 0.159 0.026 X 12 0.773 0.391 0.531 0.390 0.339 0.231 0.318 0.434 0.265 0.164 0.044 0.169 X 13 0.017 0.889 0.558 0.356 0.258 0.321 0.230 0.790 0.248 0.795 0.729 0.437 X 14 0.364 0.598 0.444 0.376 0.447 0.907 0.417 0.484 0.378 0.329 0.461 0.232 X 15 0.153 0.904 0.268 0.102 0.010 0.065 0.216 0.250 0.056 0.078 0.255 0.428 X 16 0.018 0.007 0.069 0.466 0.886 0.272 0.186 0.316 0.253 0.043 0.540 0.419 X 17 0.039 0.935 0.810 0.573 0.608 0.671 0.946 0.841 0.761 0.743 0.868 0.609 X 18 0.010 0.063 0.026 0.428 0.428 0.121 0.104 0.417 0.527 0.039 0.825 0.139 X 19 0.457 0.118 0.166 0.424 0.744 0.411 0.935 0.411 0.446 0.293 0.311 0.288 X 20 0.385 0.239 0.484 0.980 0.858 0.464 0.965 1.104 0.285 0.099 0.252 0.078 X 21 0.011 0.936 0.155 0.119 0.023 0.014 0.179 0.344 0.078 0.139 0.387 0.267 X 22 0.909 0.483 0.722 0.966 0.780 0.397 0.738 0.832 0.440 0.039 0.200 0.122 X 23 0.723 0.623 0.709 0.836 0.788 0.624 0.778 0.781 0.640 0.216 0.514 0.361 X 24 0.881 0.148 0.536 0.619 0.388 0.634 0.241 0.117 0.225 0.410 0.091 0.367 (
2 c K 2^W 4.3.2 A' I[-0_ G 0 EC0AG "8: m OC(S j ) = 槡 i=1ec m J (X ji ), i=1,2,,m (2) :[- S j _ OC j (S j )J 0( 1 _K 3^W 4.3.3 E [- _0Y,NA' I[-0:,Q& 8[-_0AG " W, R >: CC= n 槡 i=1oc n j (S j ) (3) :CC>) *+ 0:,Q&, OC j (S) j [-0_ ) *+ 0:,Q&0 K 4^W 8I " WA' I[-_ 05 Z>_0I,? 3 F Tab.3 resultoftheorderingdegree _ ) *+ _./01 0.516 0.130 / 0.220 0.234 2 0.362 0.259 0.385 0.443 2 0.235 0.311 52 0.286 0.239 3 ( 0.299 0.393 ( 0.399 0.449 0.280 0.285 53 0.158 0.130 2 0.169 0.350 (2 0.102 0.261 R >: D= δ CC(S j ) = n [OC j (S j )-CC(S j )] 2 CC(S j ) (4) 槡 j=1 n-1 :D W_0I ;δ W_0 I;OC(S j ) W j C) *+ 0:,Q& 4.3.4!"#$%& :, ) *+./45 96 "0,0R: CI=CC (1-D)=n 槡 j=1oc j (S j ) n [ ] 1- [OC j(s j )-CC(S j )] 2 CC(S 槡 j n-1 ) (5) :CI W) *+ 0:, ; CC j (S j ) W j C [-0:,Q&;n W 0C / :, 12F0 I [0 UR8,%F ) *+ 0 _,D@ 8A[ 0 R% 20 %10:, F 4.4 #G!YK! %( (!:) 0./() *+ 0:, b > 1 2 3 KF I, 0 () *+./5^G,>:; 8K _ N K0 _ 2014,J ( [ < = (2009 2025 ) ;2015,W $ 60%; 2016,RS @A(TQ7 \], @ZF ZF %@./0 1 /? 4,H IJ Tab.4 Thesynergisticabilityofnewurbanizationandagriculturalmodernization 5 3 2 ( ( 5 3 0.259 0.227 0.306 0.413 0.271 0.262 0.343 0.423 0.283 0.144 0.243 0.163 (
:) F`bc ) *+ :,././0 1? 5,KLMNH FO Tab.5 Synergism degreeandrankingofnewurbanizationandecologicalenvironment / 5 3 2 ( ( 5 3 :, -0.147 0.212 0.194 0.349 0.186 0.210 0.236 0.368 0.277 0.113 0.033-0.024 12 5 7 2 8 6 4 1 3 9 10 11 ( % b, 99% 98.7% 96.9%( 94.6% 8) *+,) a,80%)* >%,M )', 50%!Y 12, ) JG ]T> 14154, ;) J JG) % c> 13.14 10 4, A (./0,C & 8) *+, () *+ :;./ 2012 ~2016 E,2 K 127.9km 2 0 154.7km 2,2 20.93%; 46.9%$ 59%, G2 1.2 <b;jgk 11.44m 2 $ 14.34m 2,2, 35.93% [<J`aZF > 97B JG GDP > 71251,b 6!, 3! 12, ) JG ]T> 15633, A ) J JG) % c> 11.79 10 4,A,() *+./ :;5 ( <J`aZF > 75% JG GDP> 28477,b 8!, 9! 12,) JG ]T> 9831, ;) J JG) % c> 4.13 10 4, 12, ) *+ @A, 0:; b,) *+ :; 2 (2./01 0./() *+ 0:,b > 10 11 12 2<J`a ZF > 59.4B JG GDP> 17431,G> 10!;[\J] ^! > 51.8, 12!;[< J6ZF > 4.63, 11!;) JG ]T> 7201, 10!,) J JG) % c> 3.774 10 4, 9 ( [<J6ZF > 3.01, 12; J> 26%, 10;JGRK > 6.96m 2, 12 2 (20 @A() *+ @A9,./@A./01 0./@A,./01J>77.3%, A;[<J6ZF > 36.3, A;, 12,./01 )% & > 302223kW,_ > 81%,'IG 12!,./010() *+./:;0 5 2:,./ =,78)` ) F`bc, ),$ )&8, ) 0./(J K :;. / 5.1 PQRS!"#$ TUHVFWX, Y > H VF )L8 0U L UK0) `, _) 8 @0 K X H,! ->+ 0X, F ) D * S, 8 +,!E\ 450MU b0-) J 0 @*%AE5,)>0 M Bb,+Y D ), '0 X,)N>W@0, L 0 [,FA,A 0 E0 1 M F`bc 0!",,A0 X,!#) Q AI0 ]$ % (O X,2 ) 8 @0 &',,) L 8 %
2 5.2 Z[ \]*^"_3, Y "`abc V?`(a`0`Q, - Y0Q,% M Q; 8 )`_J L % a` D,78J (,)&, *) < 0 a H,) )* + \W K 4,2, D,-,F ). [ -,>/ $01(c,K, a 5.3 ]*, 4)`,78) b (, 3-)*+),' % ) a, UK 0)*a 0 0) a, *)<8 Q5, *_", *%$(% 1 ),, ) *+./,,C$& 8,$ )&8./,>./ &, 78L,C W, * )96,/3 5.4 + **!"#$,*@,@ 5.4.1 '! = 0./,345,_ 8) ',Y- 8KRS +J W 8)65, 8) Y7 ^ F`bc 0,BM), M_./< a 68"9A,:;)`S[L 8` _,&< a0 () *+ :,, ) *+ >A Ib,,^!,() *+ M-./!>, L L 5.4.2 '! () / 5 3 ( 5 378() *+ 85,3 #Y7 8) ;O ) a,* $) () % &@A; J& "bt!f ;MN K3_&0T], # ),O, ^,8A-$ )&,) 8 ; & N 0)./0/,BMN)K L <, MN) %1<,] )L &,$)9: <@A, 3)" )(8,) K" =, )./ 5.4.3 '! *+,- 2 (2./01 &:,>,,2 (20./ ) *+./@./01 :,,./01@A,,) *+I,)% & _ W 0 2 (2./01!./0,,$ ) RS @A,?/)Q,@A),B &= ) *+ ;,C,0./,! 4) *+ C0)2, N0 D &) *+0, F`bc, 0<a (c,8*+) 8A-20 (2 2M E,& b8, K _0Y L,%, # 8() *+ @A (References) [1]. `:(0[J].X, 2007,(2):4-24.[WUYifeng.Theoryofpropertyrights:Compa ringmarxwithcoase[j].socialsciencesinchina,2007,(2):4-24.] [2] FG.)0 VH[J].I9 ( X J),2013,16(1):95-99.[LIULijun.Domestic andforeignreviewsonrurallandtransfer[j].journalofhunanu niversityofscience&technology(socialscienceedition),2013, 16(1):95-99.] [3] KL. (+ XMN ` O F C+ c [J].,2016,32(1):21-24.[REN Hongxia.Theinterpretationandmodernvalueofthetheoryofland propertyrightsystemin Marx snotesoftheancientsocialhisto
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2 Coordinateddevelopmentofnewurbanizationandagricultural modernizationinxinjiangunderpolicyof ThreeRights Separation foragriculturalland CHENLi, MINXiao fei (InstituteofEconomicsandManagement,AnhuiJianzhuUniversity,Hefei230601,Anhui,China) Abstract: Thispaperstudiesthecurentsituationofthecoordinateddevelopmentofnewurbanizationandagricul turalmodernizationinxinjiang,chinaunderpolicyof ThreeRightsSeparation foragriculturalland.12prefec turesandcitiesinxinjiangwereselectedastheresearchobjects.from2aspectsofnewurbanlifeandagricultural modernization,thetwocoordinationevaluationindexsystemsofxinjiangwereconstructed.basedonthedatacol lectedfromxinjiangstatisticalyearbookin2016,weusedsynergytheorytobuildsynergyevaluationmodel,ande valuatedthesynergydegreeofnewurbanizationandagriculturalmodernizationin12prefecturesandcitiesofxin jiang.theresultsshowasfolows:thecoordinationdegreeofnewurbanizationdevelopmentandagriculturalmod ernizationinbayingolinmongolautonomousprefecture,changjihuiautonomousprefectureandaksuprefecture rankedfirst,secondandthirdin12citiesrespectively.turpan,hami,altay,tachengprefectures,bortalamongol AutonomousPrefecture,KizilsuKirgizAutonomousPrefectureandotherplacesgotthemiddlerank.Thecoordination degreeofnewurbanizationdevelopmentandagriculturalmodernizationinkashi,hotanprefecturesandurumqicity rankstenth,eleventhandtwelfthrespectivelyrankedtenth,eleventhandtwelfthinxinjiangrespectively.thispaper givesananalysisofthedevelopmentofthenewurbanizationandagriculturalmodernizationinvariousplacesand thecoordinationofthetwofactors,andputsforwardsomesuggestionsontheproblemsinvariousplaces. Keywords: newurbanization;agriculturalmodernization;synergisticevaluation;threerightsseparation