SCIENTIFIC ABSTRACT GOKHSHTEYN, B. - GOKHSHTEYN, YA.

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December 31, 1967
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SCIENTIFIC ABSTRACT
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GOKHSHT-EYII..,P,B...Ya., kand. tekhn. nauk; TAMAZOV, A.I., iiizli. Three-core transformer for a.c. traction substations. Vest. TSIIII MPS 22 no-3:17-19 t63. (MIRA 16:7) (Electric transformers) (Electric railroads-Substationo) ~ 14546-66 EWT(m)/EwP(v)/T/E.-,'PM/ tWP(_k)/E"-1P(b) JD/Ml I XCC NR, AP6005386 SOURCE CODE: UR/0413166/000/001/0134/0134 INVENTOR: Sedykh, V. S.; Pashkov. P. 0.; Kofman. A. P.: Cokhahteyn, B. Ye.; Pavlov, A. .; 1,,ikhachev G. F. ORG: none TITLE: A method of producing three-layer metal plates. Class 49, No. 177759 SOURCE: Izobreteniya, promyshlenny-ye (3braztsy, tovarnyye %naILL, no. 1., 1966, 134 TOPIC TAGS: metal plate, three layer plate, clad plate, plate. cladding, explosive cladding plates by explosive weldin .1~&~pl ve charges are placed on the outer surface of r. r the plates to be welded. In) rd to increase productivity, both outer plates are welded to the center plate simultaneously by a charge detonated at one point. In order to improve the quality of the bond, a centering prism is set tip on the upper edges of the plates so that one edge of the prism faces the detonator. Orig. art.- has: 1 figure. [W) SUB CODE: ll/ SUBM DATE: 23Mar64/ ATD PRESS:~(/'7'7 ABSTRACT: This Author Certificate introduces a method of producing three-layer metal Cladding J~ ." Card 1/1 UDC: 621.791.04 GOUSHTSYN, D., professor, doktor tekhnichaskikh nailk. Working process theory of rafrigorating, Plants. Khol.tekh- 30 no.L~:58-62 O-D 153. OILILA 7:3) (RefrigRration and refrigeratinlill timichinery) MARTYNOVSKIY, V., professor, doktur teklinicherkikh riaiil- (KlKHSll'Mvll. D., rrOfOBBor, doktor takhnicheBkikh nank. It., . - .'.. 1. k .. .1! *.. "Techincal thermodynamics. " M.P.Vulvilovich, I . I Novikov. Reviewed by V.Rartynovskii, D.Gokhshtein. Khol.tekh. 30 no,4:76-7? O-D '53. (Thermodynamics) (Vulctilovirh, M.P.) (Novikov, I.I.) GO:,SffTZYN, D. Kh. Trqatment of heart diseases in Kialovodtik. Sovet. mod. 16 15 Apr 1952. (CUIL 22:1) 1. Professor. 2. Koslovdsk. 3. Use of mineral sprii4p batha. I I- - - mml~=Mm 0 q 0 q 0 0 0 * 0 0 0 0 0 0 0 oi* 0 0 0 a 0 0 0 0 0 w to 4 a 0 to 0 ,0 0 0 0 0 0 0 0 it v 0 f # 0 0 6 0 a 6 0 4 1061: a 0 to .0 a 0 0 0 0 0 to 0 06 00. 06 h'41 'nstallill..1 11 O(b 00 00 011to Of of so $40 so 0-0 00 $10 *0 'r 0 0 ~ 41 0 411 4b 0 '041 40 0 0 0 0 to 0 tit oi i 0 0 tii to 'i it0 It 0 0 4 0 : : 0 * 0 * 0 0 0 0 to 0 0 0 0 0 0 4 4 0 6 0 6 0 a a 9 4 6 0 0 Q 0 an olbm O'b n ft on 00. :110, too *00:1::jo u cl rut 0 0 0 0 0 0 0 0 0 6 0 0 6 0 & 0 0 M TS (I "TONAM", 1.1.114111 llm~'Wlljj. I s s v 1:1qj JO l'urt 'Allyul~ .10j ;GL~O'j. j0 ziul'-~zTjja .10j uot,12 $,.Ili asIm.10j "OJO111; jc~ tip) rvil jo ucillijuTtaxo uu ~o wittiq w.1 uc) -(LZ-U '(ZT) '0,61 '09(l uOjTl.-' Ily -jjnj') '.4SUT -,J-G 06., A al )o ON WT-1 r- 4" 1 n T 1) 4 W 01 -.1 it K is t1 11 to I cr m C 11 it it 11 it tl It 11, T 1. 40 00000 0 11 do 0 0 41 * s it v 0 0 60 0e* : : A as* a 0 a Q 0 * p to 0 40 obamigo-S-0 0-00 es 900 !P 10 p of 00 00 00 of Ito 0 6 0 0 0 0 0 a G-"KI~!L-Ti 2-Y' IT Ccm ii'U~,tilons of Central :ja~Lt4jj-,jl est. inz'i,--n. 2-ov n=etf-cs orl GOKHSHTETY., D.P. doktor takhnicheskikh nauk-, LITYIN. )~. M., redaktor; tekhnicheskiy redaktor. [Entropy method of calculating energy losges] Entropiinyt i,,,)tod rashchmta energetichmskikh voter'. Moskva, Gos.nnerg,.izd--.ro, 1951, 109 P. NTah 8.11) (H,~at eVineprIng) 730. 1311 -W d an hfam at Its dw 0 of d, D. r, 00"Of"r". A. Tinkh. ru. 21, 1121-36 (NO, 9, 1"') M Ausba"' r mans ft lwtm or A 11thOd is demk'PW a', ON "atrol" am *a,, 'Umw is an kwad systm tat the Pk",$ of awma soomm it is sh~ d "( &M Ut kW dowN dwscwiwd OrAm Is mm tt. dW-U- by th, bWy O(bW to 40 YAM dm by ft m- tion or cmv 'a - W1,14 n Isolated O(CM,My. IU &V~OMWO 01 4MV in a 11, sui,* defid I dw P(Odud 0( dw Wx* syster; a smetwourm of LM "Mt Ig ise spoerM by das &be" ,nb,M 080=- ("two 10 tw st"tim "two Of py, an equerAva dsrea~ the detn" Of ctural M md or the worldno v,d,ction Of tM b&' P"m Of a pj" cm b~m 6v= t!813"100 Of iod Mod& itspif better the sum of vKjw": this towig U*rj,,Mkol dW that Of is & kwk). 0, , V.W (-Mbks. F. LWIMAN uos,),;-~ (6(juj' Steam, ~3lipgri,,iat-id On tl-.e problem of cyclea of -.Irierv. bl-11. 12, 1952- MionthLy List (D " I`u3s, iiri Acc-oss ions , 1, Llr ~-i ry r I c GOKHSHTF,YN, David Petrovich, RASSKAZOV, D.S., redaktor; S.KVOR'-SOV, I.M., tekhaicheskiy redaktor. [Using waste hmat in heat pumps] Ispol'z*y&uis atkhodwr topla v teployykh assosakh.. Moskva, Gen. muerg. izd-vo, 1955. 79 P- (Ileat pumps) (Waste heat) (MLRA 9:5) AID P 1-J29 Subject USSR/Engineering Card 1/1 Pub. 110-a - 11/19 Authors Goklishteyn, D. P., Doc, of Tecn. S~,!. and Gorbis, E. R., Kand. of Tech. Sci. T Itle The prospects of applyir,g o:)mb1.-ieJ oteam-gas installations to direct heating., Periodical Teploenergetika, 2, 47-49, F iq55 Abstract Schemes of heat and power stations (TETs) working on gas- steam and on steam are compared. A thermodynamic and ec- onomic analyse-s show that the gas-steam scheme has no substantial advantages over steam, when high and super- high parameters of steam are utilized. Diagrams. Institution Odessa Technological Institute Submitted No date I, OVISITlyll, '). ~ i doktor t,,~k I, v ich 1k I kh nfv:' Co-~c--r:iin,~-, t~e article, "Da(Tce of , , ..;~ 1 -1 LIT,:: ~"r ~11'd refrifarating 3;'*, 1~ !. I ~T-ermodynand CE; ) OfLill, :- : , I 0-1 HC R: D. 1 T ITLE: Atomic: Exier& Installations Thermic Cycle 10-11 t-plovorj t~ikle ustanovc',,; PERIODICAL: Physics and Thermotechnioues of Reactora (Fizilm. i tAiplotekhnilza real-torov), SU-iPlement 1~,r L t,:) :-tolnnaya C; us S--R ABSTRNCT: T h C Coll (-,!U:-, i 0;1~, 11.av be ara.ai front ji.eneral considerations: thc Cycle of' an Vtolldo clectric j-v,,;ej, idnjit aJvi;~ab,-(~ to use low boilin- lllCdiL ag he,-tt F r C 0:' C. 2. In d C -,e I Id e ri ce orl th 0ni t i a 1 col 'i i t 11d t h t ne S , abi 1-- LL ity ot, the lo.... either 011*~~- 011L Or ~,1.90 tViO ,3oolinL; cycles can be uz;ed. In the irin,-r part of' the secon.] cycie it is r1ossible to use a ga:3 (C(D,, etj.~. In some cascs it may, howevcr, ;~12o lic.- of advautm,.*e to --,,3e Such lolv boilin67 Laedia az are usej iii tht~ exterii1-11 cyclic. In this ca,3e each cycle ha2 its c.izi h~,it turansfc~, to the conilenser. Therc are 7 fiz~-,res, -- tabl,2:-, :1;,,] 1 of* :which. -JS S !a %ri c. A- VA-I LAB LE: Libr-,ry of' Ccn~~-re-,, Card 1/1 1. Atomic power plants-Heat Lr~;nsfer Reactors-Fleat transfer GCEMHTRYN, D,F, Thermal cycle of atomic power plants. Atom. anerg. aagolement no.l: 198-204 158. OIM 11-5) (Atomic power plants) (float engineoring) 96-58 D f T 1 3 ~:.i Pressures for Periodic Reheating of Steam F-IDR IODI CAL: I e 1, Q 'RA.- J6 1, a rnc d c I T S e c r c ~3 ur Tll_i~; L, a sl_,rt o r~-: t c al i j- It io `la.~cd dial ~-aL. lc 7 J I c,::, t ul"l- a c 'a t c _1 C c L, t VC, _tc- o__ L.2 T-3 arc r c, 2. ~al: L 1.1 f A 36CU I z~ T7 C'-: Institute 1. Steam turbines-Pressures 2. Entropy GOKHSHTEPJ, D.P. I~uantitative characteristics of irrever~-,Jlbl,3 ~iierrmnl proce[:Ses. N,anch. doki. vyti. shkoly; -3nprg, no.2:15",-I')i .5 '58. (MIRA 11-11.) (Thermodpinmics) GOI~MMYN, D. P. Odessk-iy tekhnolog-icheskiy institut IlProblem of Inrroasing the. T.',fficiency of Largm Stoam Power "Itations Operating with Steam of' 5iip,3r-critical Parameter-s-.11 The Corudssion Tor fit,-h-paraiiter Steam of the Energiattcheskiy imldtut (Power Institute) Imeni G. M. Krzhizhanovskogo AN SSSR h:dd a corilovence oi, May 16, 1956 devoted to new typ.,2s of equipment for block-asaeribl-;!d powc!r Sta-"Ions, operating at super-critical stcm parameters. This pap,~r was read at this conference. Izv. Akad Nauk SS~;R, Ot&-l Tekh nauk, 195j, ~Io. 7, p. 152 The Problem of F 0 650 C. T, ff i c i e n c of such a n l n, i t u r,--i ~ with an n,--i s(857~ Cal -"r 'Are f 7 0, 0 C i s %vi-l- the VK--W)(2-:: "he v r i u s possible T-,,i,-7 co i:~,.,Iarisori i z3 in V~,)`.Z, i ri t t h o Col. o,,,.. 1,-, co nc lu ."n.: 1. y n a.,,~ _i c mi;lwpoint, orily j!xil ce 0 e 0 - v t i oil c c, o J. i I i . -1 be of c; ~,3 e o a j~,,!s tar-bine urofit-, blie th~in s t e a nn, supci.rimpoL~in(~, o IiquL(1, or 1-) o ~3 I, .L'Ll f a::'. c c n 0 -f the ex; 3 in, tLe Ouperiml)c~!!,-r L 1) o '21o- Card 5/6 1) 11 -1 n D.P., doktor tekhn.nauk, prof.; K!VSOTO',', ;-i." ... . -10tsent l.. -:o~:hn. nmik, 'c I . 1 .1 ~ -;,poctr of rt!jmnerativo feod-witor it, imits with !- tor!:odiat,~ sliperheAting. Energomshinostroenla " -%. )p I :~ I:.. lmm'~ ll-.'7) (Staao tlzrMnaa) GOMMMI, D.P.,dok-tor tekhn.nauk "O~itlook for the development of nteam and pns taLrbines for electric powor plants" by S.A.Akniutin. Revintrod by D.F. Gokhahtein. Filek.ata. 29 no.11:94-95 N 15B. (MI-Rk 11:12) (Tiirbinos) (Aksiutin, S.A.) sov/96-59-5-6/19 AUTHORS: Gokhshteyn, D~P., Doctor of Technical Sciences and Engineer TITLE: Some Methods of' Reconstructing Steam Turbine Llectric Power Stations Using Steam-Gas Circuits (Nekotoryye puti rekonstruktsii paroturbinnykh elektr-os-tantsiy po parogazovyin skhewam) PERIODICAL, Teploenergetika, 1959, Nr 5, PI-1 35-57 (USSR) ABSTRACT,, As a number of steam-driven power stations become converted to natural gas fuel, it will he possible to make extensive iise of open-cycle gas -turbine installations. A combined gas-steam cycle offers thermo-dy-riamic advantages- If the heat of the gas-turbine exhaust is used to heat feed-water for the steam cycle. the amount of steam tapped from the turbines for thi!z Purpose is reduced and the otitptit for a given steam constimption can be increased by 205a A combined gas-stear.1 installation can quite easily be introduced into existing stations with quite small cost for equipment and structural alterationo. The simplest ateam-gas circuit for reconstructing existing Card 1/7 installations with 1OO-MW condensing turbines type VK-100-2 :-:f) Ucii, _5 9 - 5 - 6/ 1") _-come Me thods of Recons trijc x i ri v SO, a w F,icii i iie: F I Y i S t a I i (,Y]~3 Using Steam Gas Circuits is given in Fig I In thi.1, the tL11-1-1110 ~_-XllaUSL Z,aSeS ~ITU used first to heat the it i.r -nl,er inL, vlii~ chambel: and thell to heat tile L114. Steam cycIe- Fable I gives the resull!-, of (:alculalicll~; ,;f' 'lie effectl%.~ efficiency and output ol it ,3team.gas ia.9tall-ation using the circult of Fig 1. Various tL'(!d-wr.]t(.!. t 01111) -.,! ra f u f v It is shown that tho of th(~ installation is increasod by raising i:he feed watE!r temperature after tile wctl~e-gas h,~ator Thz~ increase ir, efficiency is quite up to a feed -Watr!r temperature of 220'C but beyond t:li-' it dot-s n~_,t -_,xicre.--ti;e so rapill-v Thc circuit shown iii Fi. 2 _-onsid~,r-ably zrt~ducs~.,: lhe f~.'Ycez taken from the gas tuibiri,~ part of the iris tallat ion 1-1 -a!, e the feed-water Iraws hc.th from tht! turbine exhaust gas that has alread,; pa_,;s;,J thy-,u~;h :iii ai, fc,g,:,tierixtCr alld from the air betwe4_!n file hiph arid thf- Low-pressure compre5sofs In this the hiollest "r-iciency is obtained if the fe,?.! t ol 1 z, hea t d 1: '.) a t. empera ture of Card 2/7 101~_)`C ill tile WatC-f he,-t ',~Lth :3ubsequent OV/ 9 6 0/ 19 S")mi! Methods of lzr.,~o I) -qtr I] t i n 'I. S T t'mil T I I I I ~ III(! i~~' I r i1f.1w v I :;I ~-t I I I I m Using stealli-cl'as cil-cuits li~!a t i rig t 0 220 C j- u I: i L it ~, i-,i ( I I i -'~a t ~-V-q .')L turb I ne. WIL th t 11 ~L -Z -~ I tI- IL Lt. t 11 1-' k M I'll II, i.11 le,9~7; than wi ill k: I x i, it I t c'Jus'? tho cu I pil i 1 1 turbin-_- par-., or t li~- _- I) s I a 1. 1. 'j :,n I r: ~- a ~3 .3 t 0 f (. I I L. U I.-A T, 10 n 5 011 1: A Iit I U -' :IS C' ~', I v e I I in T a 1) L o ti;J t i S Alow 11 ( ha It Iit t I I L.-, I.k (JU I c - 41 ~1 ([111 .1 1 ;1 !f - t ~ I I ~,. I -_'. s a n a ppr e L: ial, I e i nc I, -, i, ~~ 4~ I'f'j I I(~ I I I, ,, i!I.,? Ir-i I I I, (I ly I I straight stram :, y i~, I e I I- r~ It :L 1 1, 1 1.11 1 " 1 Consumption is shown ill Fig 3 n n A f h e ~! s .1 [-."i of calculations on this . ~ ~ t ; e g t v o n in Tot~,Ie x S Of Lriterest, tO It. Q t e IL ~ C ff,r.' ILI w 1, h 0 W':, ~ t ~ I ~111 f compressicii arid twr! st-3Lzo f g,:j -j Ill t1ir, a turbine insta.liaticy, : t 11 v fall I:irc, i~ patte!-rl "'imilar .P r c s !-, i (I I"-. art t c t h a t o b s e r v e d w j- I ii,;,- I c s r,,i I,, o o tri -~ (I s I rig I f3 stage expansion- A skhi~i:i:tti_ c 1'~)r lwo Oage expansion and twc -staL.e ft,~21 c,:,ril,ustiori vri.th single sta~,p compression is shown in Fig It It-. illcl-eas~-s the effi::1ency Card 3/7 ef the stealjl-gels jrI_-;tal lal icm rr, ~fi -,%, 7" 17-'Q .-OV19h.- 9 1) Some 16lethods of Reconstructing 6teacl 'I'lir C lii-~ F 1~c I r I-- Foier Station~ Using Steam-Gas Circuits than t7ur the purely steam uvc.le, The tota] OUtpUt Gf- tile St ilL_S( a 1, la L toll 1_14 1'_.6'L,00 101 and tile feed. Nvo tl~,l temperature aftQx- tile 9team-gas li~!ax:et i.s _220'C. 'm!, improved performance oL this circmit a!j com-pared With that shown in Fig 1 results froni the iii:!-ea~ied ont-put of the gas-turbine part. An i-inpurtant disadvantage of tile circuits mentioned 4.~3 thar tile gas iiir regenerators and water-gas heater.9 are very big III Order to increa~se tkl(-' Unit Output of tile, gas arid I.o reduce !: 1) o size of the regenerators aii-l wa-er ti _~ a't i~ r- s_ tll~r 01 '-' 13 () M ? point in using the ~(!nii- Le t III-b j ri -~ o- illustra te d i n F iS I i tI '. t' rill iItg 1) e -, 11 t e g against a back pr 0 S.'~ k_~ I h Z~ X11 a.,I, an air regenerator eai~i witei h--at,w- deLiverv t,~ the inIet part of: t!,.(, comp, e o Me ~,rt ~)f the ga;~; needed to supply 'tit to 11.11 1'. the 1,110, ~_Il tile