DIOMIDGV, Mikhail Niko2ayevlch; 411TRIYEV, Aleksandr llikolayravich.
PrinirAl uchastiye Z-MDr:Ll G Aq inzh.; ZAYTSEV, V.P.,
kand. tekhr..nauk, 69691N. S.D., kapiL~m 2 ranga
retsenzent; MIKEVICH) L.A., rod,j KAZAROV, Yu.S.y rod.
(Conquest of the depths] Pokorenie glubin. lzd.2.p ispr. i
perer. Leningrad, Sudostroenia, 1964. 383 p.
WIRA IS: 3)
1. Chlen-korrespondent 21 SSSR (for Zonkevlch).
ZAYDEL A.B.
SuLmation of oerloo used in the theor-f of electric logging.
Prikl.- geofiz* no 0-32;128-321 162. - (IMA 15:7)
(Electric prospecting)
w F-w-w -
- 94 0 4-04 00" 0 i 009-00
1 1 1 4 1 0 1 1 9 4 1 t
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& AV, 0 Nircis 2 111111,
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laustigmed illiallmneirivAlly orsd l,y don, of mcch. lifult. .0:
00
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Tlw wwm CQMPGMI With IKT4wftk-0 P"Xilk-0 IIV
q1trJulaillsar"I thawing, ljjlllel8lI6- thV4,4111-11, yield'd --00
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a heat conductivity equatlon. fTrudyj NlLneftegaza ro,10-
27&.294 163. (MIPA l8j,~)
Yft ft;Olylfllv0l~tj
kriterlyev otneriki perspektiv nor LogauC)nwinon H .
4""~l A.H.
A
'1011-4 ; I - .11,
of ilia metlod of ruunding !-onS!Aianve, r i k I , it (3 -, j-.~ -, 0 *
No. 0 D194-197 164 (WRA MI)
ZAYDELI, L
Problems in mechanical engineering. Politekh.obuch. no.3:81-83
Hr 159. (MMA 12:4)
(Mechanical engineerin4-,Study and teaching)
.7,AYDEL*p I&B.
aitpationt service for surgical patients. Med. sestra 22-
no.1006-37 0163 (MIRA 16112)
1. Iz 12-y polikliniki Mntraltnogo rayora Odess7.
UTDILI - -I L
Sducational tanks related to Industrye Politakh. obuch. uo.10;4)-45
0 (sum io.,q)
(Technical educationY
i, FIE
Five.problems In Industrial training. Politakh,obucho nooll:
70-74 11 '57. (MIRA 10;10)
(Physical measurements).
01,
't 'T
EWT(d)/EWT(M)/LW(f )1W(v)1E'WP(
L 0
SOURCn, CODE:
ACC la- -A1!6012166 Uil/O/d.3/(>6/C 0. Condition (14) is thus suffioi6nftor the in-
stability of DW under the condition by Chapman-jouguet. S. P4 D'ya,kov
~J
Card 7/8
20343
91020
'1611136100510261032
Stabili.ty of detonation vayes BiOl/B206
and K. I* Shchelkin are mentioned.. There are 1 figure and 4 Soviet-bloo
refore'nceas
E
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10 ' B
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UBMITTEM April
28, 1960
.
Ij
Cit.
zAyDxLl R.M.
ZELIDOVICH, Ya. B. (Moskva)
One-dimensional instability and damping of a detonation.
PMTF no, 609-65 N-D 163. (MIRA 1737)
A
AUTHOR:
TITLE.,
FMIODICAL:
,ABSTRACT.,
Card 1/2
Zaydel,' ..,R,_R,._tgngineer 67-0-2-10/26
Automatio Safety Mechanism to Prevmt a Breakdown in a
"Turbodetander" of the Device BR -1 (Avtomaticheskaya zashchita
tuiboaetandem bloka, bR -1 ot raznosa)
Kislorod, 1958, . . Nr 2, pp. 47-49 (USSR)
The force developed in the plant BR'-1 by a "turbodetanderO
(engine driven by compressed gas) is transmitted by means of a
reduction system of the gears to the electric generator, from
where it is collected as a driving force. The device operates in
such a manner that this generator serves as a starter and begins
to perform its normal functions as soon as the turbogenerator
reaches its working scope. It my happen on this occasion that
the voltage on the terminals of the electric generator is re-
duced and its number of revolutions my rise to an extent that is
no longer permissible. In order to prevent such a dangerous oitu-
ation from arising, a protective device is suggested which in
characterized by the fact that, as soon as the nuuber of revolu-
tions of the electric generator exceeds its limit, air supply
Automatic Safety Mechanism to Prevent a Breakdown 67-58-2-10/26
--in -a__"_Tu_rbodetanderO of- the Device BR -1
to the "turbodetander" is automatically reduced or cut off en-
tirely by means of am additional cutout valv6. The function of
this additional device is then described on the basis of a
wiring diagram. There are 4 figures.
AVAILABLE: Librar7 of Congress
1* Laboratory equipeat-8afety asaoures 2. Laboratory
equipment-4haracteristles
Card 2/2
10 (7)
AUTHOR: Zaydell, R. R., Eagineer S07/67-59-4-3/19
TITLE% On- tbe Number of Vanes on the Wheel of an. Expansion 'Darbine
by Compressed Gas
PM,IODICAL.-- Kislorodt 1959, Nr 4, Pp 15-22 (USSR)
ABSTRACT: The centripetal texpaasioa .'tLtrbindsj, .;aq,~--.vorked
out by Academician P. Le K tea at the Institut fizicheskikh
i
netitute for Problems of' Physice
problem Akademii nauk SSSRI
of the Academy of Sciences, USSR)p featuring radial inflow
and central outflow, and serving for the economical air
liquefaction at low pressures, can be simplified and improved
on tho-streiigfh of experimental results and calculations made
by the authorp in-that the number of vanes on the wheel is
reduced from 12-116 to 16-16, Thio is said to result in a better
efficiency of the machine* A lowor number of vanes will also
make it poesible for the wheels to be manufactured o f light
aluminum alloys, e.g. the type AX; solidity and atat ility
of the wheels will thus be increased greatly. It alE;o followq
that the speed of rotation can be increased to such an extent
as to permit the utilization of a one-step unit for consider4bly
Card 1/2 greater temperature gradients than was hitherto posaible, Such a
On the Number. of, Vanes on the Wheel of ari.,Zxpa=i6n-W&-= SOV/67-59-4-3/19
Dri~van by-compreg-sba Gae
turboongine was oxperimentally tooted at the TNIIKDIASh (All-
Union Scientific Recoarch Inatituto of Oxygen Machine
Construotion). Numerous dotailo of this experimental type
(TDR-3) are discuosedt figure 6 ahowo its cross section,
figure 7 its characteristioas The industrially produced type
TDR-15000 (17 vanes of AK-6 - of figure 10) i0 likewise discuacod
in detoil and shown in orooo coation (Fig B)o Thin mach:we
had been projected for a whoel with 72 steel vanea (Fig 9)
(in the system typo BR-1). Reduction of vano number restilted
in an increase of efficiency to BIA. There are 11 figures and
6 referencea, 5 of which are Soviet.
Card 2/2
-.-KENN
4:~
~q N
PhM I BOOK EaWITATION - SOV/526.4
Zaydell, Rsrail Ruvimovich
Turbodetandory kislorodnykh liatanovok (Exweion Turbines for Oxygen Plants).
Moscm, Mashg'iz, 1960- 175 Ve Xrrataslip insertedo 4,500 Copies printiods
Reviewer: KoSo Butkevich, Docent; Ed,: V*Vs Bystritskays, Engineerj Ed* of
Publishing House: Ye.Ya. Savellyev; Tech, Ed.: V*D. ElIkind; Managing Edo for
Literature on General Technology: A.P. Kozlov, Engineer.
PURPME: This book is intended for technicsl personnel of design offices, design
organizations, and factories who are engaged In the construction said operation of
expansion turbineoo The book may also be useful to students at tekhniUmsand
schools of higher technical education who are studying the process of low-
temperature cooling.
COVERAGEt The.theory, design and methods of constructing expansion turbines use&
for the *3TAnoion of gases in oxygen plants "a discussed. Design methodLi am
explained with the aid of detailed examples* A sepexate chapter Is devoted to
a description of the expansion turbines used in industry. P*L* Kapiter-t Academi-
cian, is mentioned in connection vith the design of expansion tuxbines. There
Expansion Turbines (Cont.) sov/5264
are'29 references: 23 Soviet, and 6 German.
MILE OF CON79NTS.-
Foreword 3
Basic Symbols 4
Ch. 1. Introductory-Concepts 5
le Purpose and field of operation df-expansion turbines 5
2. Basic elements of the centripetal expansion turbine 10
3. Basic concepts 13
4. Parameters of the (gas] passage section :L6
Ch'. 1I* Working Process and the Efficiency of the Passage Section 20
5- Interrelationship betveen the efficiancy.and the passage parameters 420
6. Coefficient of the circumference velocity at the regular outlet d2a
Card-R~5-
3/114/61/000/002/004/007
E194/13255
AUTHOR: ZavdgVMnn., R~ Candidate of Technical Sciences
TITIM: The Influence of the Arrangement of the Binding Wire
on the Damping Properties of Bundles of Rods
PERIODICAL: Energomashinoatroyenlye, 19611. No* 29 pp. 21-23
TEXT: Hitherto the "lacing" wires on turbine blades have
been, located mainly in accordance with considerations of the
frequency propertios of the groups of blados. By appropriate
location of the wire it was possible to reduce or prevent vibra-
tions between blades, to reduce the amplitude of harmonic
vibrationsand to influence to some extent the natural irequenoy
of the groups. However, correct positioning of the wire can have
considerable effect on the damping properL.IeH and this should be
allowed for in designing groups of blades with lacing wires. This
article gives the results of a theoretical and experimental study
of the question.. The theoretical study is based on the assumption
that energy dissipation in the group increases with increase in
the stress in bending the blades and wire, which :i,s confirmed by
experiments. It accordingly suffices to follow the changes :Ln
Card 1/4,
3/114/C)1/000/002/004/007
B1,94/9255
The Influence of the Arrangement of the Binding Wire on the
Damping Proportiou of Bundlos of Roda
stress in the wire when it is-1:nStalled tn different po3itions for
given values of stress in the blades. -The blades are considered to
be of constant section, fixed at one end and free at the other,
'and the wire Is installed at different,distances from the blade
root. A simple expression is written for the stress in the wire
and the following expression is derived for the position of the
wire at which tho stress in It is MaXIMUM
2kx3 - 3(k - 1) x2 - 6x + 3 - 0) whe Ire k :Lo the ratio of the
rigidity of the wire to that of the blade. In tests with wires of
3 mm and 5 mm diameter, the respective values of k were 1.41 and
2.58. The tests were made on groups of six flat rods of constant
cross-section of 30 x 4 mm, 295 mill long, with a pitch of 21 mm &ad
firmly fixed at the base. Each rod had five holes for fixing
lacing wires at different distances from the base; a single wire
was used in each test. Twenty-one strain gauges were attached to
the rods. Curves are plotted of logarithmic decrement of oscillat-
ions with the wire in place. The tests show that the damping
Card 2/4
4
ltv
3/114/61/000/002/004/007
B194/E255
The Influence of the Arran3ement of the Binding Wire on the
Damping Properties of Bundles of Rods
properties of the groups depend very much on the location of the
wire. This was most clearly demona~ratnd with a wire of 5 mm
diameter* The maximum dissipation of energy occurs when the wire
is near the middle of the rods. The curve is approximately
symmetrical and the minimum decrement, which is obtained with the
wire near the tip of the rods, is practically the same as when no
wire is present., Special tests were made to ascertain whether
there was any distortion of the decrement at frequencies near the
natural frequency of oscillation of the plate to which the blades
were fixed* It was found that there was no such effect within the
range studied. Thus,, it Is considored ao oa~-abllshed that when
the lacing wire in fitted at different levols there is a maximum
in the curve of vibration decrement. The position at which the
decrement is a maximum coincides with tho position of maximum
stress of the binding wire in beLding. A study was also made of
the influence of the wire position on the frequency of vibration
of the group of rods. The maximum frequency occurred with the
Card 3/4
S/114/61/000/002/0%/OCr7
E194/E255
The Influence of the Arrangement of the Binding Wire on the
Damp ing Properties of Bundles of Rods
wire at a distance of about 0.7 of the height from the base.-: tt-is
ia in good agreement with calculated values. There are 4 figures
and 1 Soviet reference.
Card 4/4
4Y,
0'~
L
'A -,I
-Tam RRR.E=
AQI -3 a~211~
-04
ZkYDBLI. R.R.. insho
Number of blades of the turboftxpander runner. Kislorod 12
no.4: 15-22 159. (KrM 12 112)
(Liquid alt)
(Refrigeration and refrigerating machinery)
140) SOV/67-59-5-30/30
AUTHORs Zaydell, R. R., Engineer
TITLEt Reference Materials. Centripetal Turbo-enginos Driven by
Compressed Gas for Air Separation
PERIODICAL: Kislorod, 19591 Hr 5, Rear Cover (USSR)
ABSTRACTs The indices of the following types of turboengines driven by
compressed gas are listed in a table: TDR-14, TDR-15000, TDR-15,
TDR-5, TDR-3, TDR-16, KT-36oo, TD-3100-6/1, TD-3300-16/6. Of the
indides, the following aregivent number of drawin& of the
VNIIKIMASh, the gas pedf gas consumption in kg/hour, tempera-
ture of the gas in K at'the intake, gas pressure at intake and
outlet (absolute pressure in atmospheres), number of revolutions
per'minute of the driving wheel, the indices of the electrical
braking generator, namely the power in kw, tension in volts,
and r.p.m. Furthermore, the diameters of the intake and'outlet
pipes, dimensions and weight of the entire unit, and peouliarl-
ties in the design of the several types were given. There in
1 table.
Card 1/1
144) BOY/67-59-6-4/26
AUTHORs Zeydelf, R. R*, Engineer
TITLEs Expansion Turbines of Air-fraotionating Plants
PERIODICALs Kislorodf 1959, Hr 6, pp 29 - 37 003H)
ABSTRACTj In the present paper, some expansion turbines are described.
They are of aimplest oingle-stage construction due to con-
struction difficulties caused by low temperatures. The first
turbine was a single-stage axial-flow turbine. It still had
a very small efficiency and considerable shortcomings. Zer-
kovitz (Ref 3) was the first to improve this state by intro-
ducing a centripetal turbine. It still had a very small
radial ratio (ratio between *xterior diameter and rotor dia-
meter) and thus a small efficiency, A considerable improvement
was made by Academician P. L. rapitea. (Refs 2,5) who iLtro-
duced the slow-running centripetal turbine with a high radial
ratio which corresponded to the type of hydraulic turbines. It
found wide-spread application at home and abroad owing to its
simple construction and high efficiency. Besidest the latter
expansion turbine is described in detail as followsi efficiency,
Card 1/2 radial coafficientp reactivity coefficient, speed, as well as
EYcpanoion Turbines of Air-fractionating Plants SOV/67-59-6-4/26
interrelations of these values. Furtherp the assembly of
the turbino, dec*leration (Fig 5), and the main construction
parts are described, and represented in figures (working
ringg turbine bladet nozzles of various construction possibi-
lities). Materials used for the manufacture of these parts
are given. Control is generally affected by means of a
throttle valve. Strict observance for the prevention of de-
formations of the body which may be attained by minimum
olearances, further a most careful carrying out of the assembly
and connection of single parts (accurate centering), and
perfect cleanliness of the parts to be assembled from dust
and icej are pointed out as characteristics of mounting and
operation. There-are 9 figures and 11 referenceet 6 of which
are Soviet.
Card 2/2
JJAY lbavimovich; BUTMICH, t
AU4.jUdall -_ U7 - X.S.6 dotsent, retsenzon
BYSTRITMA -V-.T.--,-inzh., red.; SAVIMOUT, Te.Ys., rod.izd-va;
IMIXIND, V.D., tekhn.rod.
[Turbine expanders for oxygen plants] Turbodetandery kielorodnykh
ustanovok. Koskva, Gos.nauchno-tekhn.Izd-vo mashinostroit.lit-ry#
1960. 173 P. (HLU 14:1)
(oxygen) (Refrigeration and refrigerating machinery)
ZAYDEL#p S.M.
Lvestigation of the operational stability of a pulBe generator.
Radlotokbuika 16 no.lt52-58 Ja 161o (HIRA 1,432)
I.Bey0tvitelonyy chlen Neuchno-tekhnicImikogo obehohsatvaradjo..
takhniki i elektronyasi im. Aj, Popova.
(Oocillatorag glactric)
88378
S/108/61/016/001/005/007
B010/B077
0
AUTHORs Zaydell, S. M., Member of the Society
TITLF-3 Study of the Stability of a Pulse Generator
PERIODICALa 'Hadiotekhnika, 1961., Vol. 16, No. 1, PP- 52 58
TEXTs The author bases his investigation on studies of M. A. Ayzerman,
L. S. Golldfarb, and V. A~ Taft, and represents an easy to do analysis
of the stability for a periodically aoting nonlinear system which
consists of a reaction-free pulse generator and linear and nonlinear
controll circuits and frequency-selective parts. The bala:ice of a pulse-
generating system (Pig.2) having a pulse generator 1, a linear
amplifior 2, and a nonlinear pul!je former, load and control part 3 is
given by the following expre3siona~ D(p)x - -K(p)v (1),
v - Y + S con /wt (2), and Y - F(x) (3).. Tf small balance disturbances are
expressed by x(t) - X (t) I x, (5), tho exprc-ssion
0
D(p)[X 4- X1 - -K(p)['F(K 4 '-r.) 4- 11) con,otl Is obtained from M-0) and
(5). Thin relation can'bo trannformod into 1)(P)X 4 K(p) ~LF X - 0 (8)
ax
Card 1/3
88378
30tudy of the Stability of a Pulse Gen,~rator S/108/61/016/001/005/01)7
BOIO/BO77
by a first-ordj)r Taylor approximation for F. Now it is poo3ible to
apply the Lyapunov theorrim aa a stab,il.Lty criterion; assuming frequency-
P
limiting linear system parta, W is expanded in the series
aF
A + A m nosa t + TI) - A m cas(Wt
7X X.X OM 0 0 1 .4 r 0 2 + TO +
x(t) - Re X k .0, xP Ext +i ( OltaA represents a solution,where are
i.-N
eigenvalues aM X k unknown amplitude values. Substituting this solution
in (8) yields 2N + 1 solutions of the form
A~X(p) + D(p)jexji(A~t -+ ikf?.t- + ~.L A M OiT 1 K (p) exp (~. t + ikQt
. -1 A 2 0 1 JI9k-1
E
+ A0M1exp(-i?1)K(p)-exp(kt + ik-At A+1 0, with
X X exp(ja . The characteristic equation for is obtained by
k k k)
setting the coefficient determinant of this set of equations equal to
zero. The values thus obtained for Ai make it possible to evaluate the
Card 2/3
88370
Study of the Stability of a Pulse Generator 8/108/61/016/Ooi/005/007
BOIO/BO17
stability properties of the system according to the inequalities
Re Ai 1< 0 or ROLA,I> 0. The characteristic equation for systems trans-
mitting very limited harmonies through their linear parts is very simple.
A numerical example for such a special case is calculated, the
characteristic equation being evaluated by means of the Mikhaylov
criterion. There are 4 figures and 4 Soviet references.
SUBUITTEDs December 4, 1959 (initially), July 4, 1960 (after revi,3ion)
V
-PitIc.2
Card 3/3
W.A
IL rpowft
a
a--.,
a IL awj,% to so tf "Mi
k r.
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NX IL Ov
ftwo
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L OL K t
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A. AL r. L R W"V
0
W,"W4 of Mo 46:80&&s ftowaLegis" 4-k*4 of
*"I* magis"rivs ast slefirift, commfid"41~ ft. A. G. hrm V-,
IARINA, V.fi.; 7ATMLI, T.Ya.
zxperienco in treating patients with peptic ulcer at the poly-
clinical dispensary level. Sov.med. 23 no,7:11&121 Jl '59.
(NIR& 12:11)
1. Is goopitallnoy terapevttcheakoy kliniki Baratovskogo
meditsinskogo instituts. (dir- - nrof.L.B.Shvarts) I 1-y
klinicheako;r bo,, nitsy Saratova lg~av vrach 11.11.7ilipponko).
therapy,
IVANOVA~ KO-10---ZAYMLI SPO
Treatment in specialized cr4ches of groups of infants who have
had polimyelitis. Ortop.,travm.i protese noo2:47-51 162.
(MIRA 15:3)
1. Iz Uoaudarafvermogo naucbno-isalodovatellskogo detskogo orto.-
podlebeakogo Inotituta Im, G.I. Turnera (dire prof. M.N. Gon.-
obarova).
(DAY NUrGERIES) (POLICtfffLITIS)
VALITFRO R. [Waltert Rjj__~AIR!A~.. [Seidel; W. j
Pr-ableas ind mathods of uning imah-amrds in comptvra for
the doewnAntation of lit-rature on Pconomlese. NTI no.2tl8-21
165. (MlRA 18s6)
ZAYDF.L, VIKTOR ATMOL' DOVIai.
M01AA)ZI1 kotellnogo oborudovantiaj uh6nA dIIA romoijL I tholottiodor. UcH1.10hell.
Moskva Gosenergoizdat, 1943. 263p.
(Assemblage of boiler equipment.
DLC: Unclass.
.30: Manufacturing and Mechanical Znglneering in the Soviet Union, Library of
Congress, 1953.
ZAYDELIP MTOR AFVOL1D'-'/VTC11.
,Montazh koteltnykh ustanovok elektricheskikh stantsii. I%d. 2., perer. Moskva,
GOB. energ. 1%dOvo, 19h6. h83 p. diagra.
(Installation of boiler units in electric power plants.)
DLC: TK1191-Z3 19h6
SO: Manufacturing and Ne.ch-anical Engineering in the Soviet Union, Ljbrar7 of
Cmereon, 1953.
KMy=
ZAYDELI, V. A.
"Mounting the Boiler Installations of Electric Power Stations." Sub
23 Jun 47, Moscow Order of the Labor Red Banner Higher Technical School
imeni N. E. Baum-an
Dissertations presented for degrees in science and engineering in
Moscow in 1947.
SO: Sum.No. 457, 18 Apr 55
F7A VT._ V-
ZAYDEL,, V. A. PA 32/49T30
---------- ---
jun-4
Power Plants Ins'tellatIon-
EffIclenoy, Tnduntrlal
"SelectIng tho Mont Suitable Aseembly Unita for
Boiler Units," V. A. 7Aydell, Mngr, 9 pp
"Elek Stants' Vol X3Xy No 6
Treats under: optimum constructional appearance
of units and their weight characteristics, rational
uea of lifting nechanisms, alteration of expenditure
on labor and coat of erection, cutting down orectim
time, and concluciona. Includea six dIWRma.
FDD 'I-2/49T',Io
7AYDFL 1, V. A.
Mohttith kotellnogo oboruOovaniia. Izd. 2., perer. Moskva, Gosenergoizdat, 1949.
228 p. diagrs.
(Assemblage of toiler equipment.)
MC: TJ2F8-Z3 1949
SO: Manufacturing and Mechanical Engineering In the Soviet Union, Library of
Cwgress, 1953#
7.AYDEL#, V. A. YaLgIneer 600
u,,,) cS P. 6 o o
"Solootion of Optimum 4aruoterlcticn for Dollor-InotalUnq; I;qulpwont
and Crane Lifting Capeoity." Thesis for degroo of Cand. T"chnical
Soi. S1,ib 17 Yeb 50, Moscow Order 9f Lenin Power ~,ngineerii-g Inst
imeni V. 14. Molotov
MW Surmary 71, 4 Sep 52, DissertationR Presentod for Degroes in Science
and Nn,!inaeri,!j& in Moscow in 1,250. -From Vachernaa :~2skva, Jan-Dea 1950.
ZAYDEELI, V. A.
ItThe Installation of Boiler Equipmentt' (Montuh kotellnogo oborudovaniya), Gosener-
,,7oizdat "oscow
-Leningrad, 1949, 228 pp., 7 rubles, 45 kopeks.
tV~
ZAYDELIp V. A.
USOVElectricity Power, Steam Const.raction, Power Station May 50
"Basic Principloi of 11apid Construction of SteLvi Power Statiormn A. A. Dorovoy,
Engre V* A* Zaydel') Cand Toch Sci) 6 pp
"Elek Stantz" He) 5
Discueses preparations for buildirr-,j provicion of plans, time required) prelimirukry
workj construction of dwcllingss constr-iction of permanent iMuotrial stracturess
organl?ation of buildLng site, and material and onginaering, supplies. Editor imiten
read6rs' views@-
PA 161T26
2-AYMV, Vo A. 6oo
USSR (k00)
Boilers
Raview of V. A. Iarichev's book. "Ctooptlity Steals for Pr,-,sent Day
Boilers," Zlek. Sta., Vo 1. 1952
SO: -Montbly List- of Rnealan AcgessionR, -Libr&ry of -Coneress, ~hrch 1952, UNGL -
1, ZAYDELI
-USSR
~Ueatric Power Stations
7- Duration of construction of beat-generated electric power stAtione.,
Blak. sta. 23 No, 9, 1952o
9. Monthlj List of Russian Accessions., Library of Congress, January 1953. Unclassified.
R-21 -
A
ZAIDELIP V. A.
Montazh kotellnogo oborudovaniia Z Assembly ot steam boiler fittings-7.
Izd- 3., Moskva, Gosenergoizdat, 195). 368 p.
SO: Monthly IAst- of Ruppian- AcccogicDO Vol. 6 No. 8 November 1953
"491 Ri,
90 I-W'A -42
bE- L- V
GRIGORITXV, T.Ye., redaktorl ZATOSLI,V.Ao, radaktor; LARIONOV, G.Te,
takhnichookiy radaktor-
[Handbook for the installation of heat engines] Spravochnik po
monta3hu toplomekhantehaskogo oborudoyaniia, Pod obahchat red.
T.E.Grigorieva i V.A.Zaidelia. Koekva, Goo. energ. Izd-vo 1953.
503 Ps (float engines) (nTtA 7110)
KhYDFIL')
GIOBURG-SHIK. Lev Davidovich; ZA.YDELI V.A. rimdaktor; FROKIN, A.M..
tekhnicheskiy redaktor
[Tackle and tackle operations in assembling heat power equipment
at an electric powerstation) T&.alazh L takelashr,7e rabo'ty Pri
montazhe teplomakhanicheikogo oborudovantia slaktrostantaii. Mo-
skva, Goo. energ. iod-vo, 1955. 231 P. (MLRA W)
(Hoisting- machinnr7)-- (Blectric- power plant"Y
4~2
-0.
UYDILI, V.A., kandi"t taklinlchaskikh nauk.
longth of the prvpnrAtor7 perlod In the roustruction of thernal power
planta, Blekestne 27 no,11:26-30 N 156o (KMA 1011)
(N-lootric power plants) (Buileing)
zAnELI __VL~d _tCkbn_*naUk
Eff eat. of --the- outdoor -in# tanatlon -of-- cvdpzent onothe. Increase
of the operatihg expewatuzes. Elek.0ta.- 33__no,22s3&-40-D -162,
(Electric power planto) (MrRA_ 16,
ZAYDELI kand.+.ekbn.nauk
M=omic efficiency of the emstructici of outdoor-tM thezvAl
electric pover plants in the U.S.S.R. Eborgestroie noJN39-30
162. (KM 1612)
is Vaesoyuby-y zaocbnyy politekbnicheakiy institutw*
(Faeatria power pl=to)
7AYDELI, Viktor ArnolldovIch, dots.; SAPOZINIKOV, Fedor Vasillyevich,
in:,b,-; FROGEVOIJ, Yakov Ivanovich, inzit.; BELINISKIY, S.Ya.,
kand. toklin.nauk, dots., red.
(principles of the construction awl installation of thermal.
electric-power plants; general problema of organization and
mechanization) Osnovy otroitelletva i montazha teplovykh,
alek-trostantsit; obshchio voprovy organizatsii i mekhaniza-
taii. Maokvap Eliargila, 19(V,. 255 1,. (MIRA MIO)
ZAY.DELP !.,A,# kands tekhm, naulc
MatheAoUgy for datarirdning lonfien nuffered by tho n4ljlllorwvl
ecoitopl due to dolaya In tho conattlAdUdh df thermal alaatrla
power-plantd* TapIddliergatika 12 rio,6t92-93 Je 165a (MIRA 18ig)
MDELI
kand. takhn. nauk TURCHINt N.Ya., inzh.1
.LATYSH, D.I., inzh,
"Design and construction of thermal electric power plants"
b7 I.P. Kuptsov, IU.R. loffe. Reviewed b7 V.A. Zaidell,
MIA, Turchin, D.I. Latysh. Elek. sta. 34 no.7:91-95 JI 163.
(MMA 16s8)
ZAYDELIMANV F.F.; OGIZZIW,, A.Ke
investigation of the formation of gleyin flooQand soils of
the.non""nernozem zone. Pochvovedenie no.1:4442 Ja 063.
(MBA 16t2)
1. Respublikanakiy gosudaretvmm" institut po pro7ektirovaniyu
vodokhozyaystvennogo i me3torativnogo stroitelletva RSFSR*
(Moskva-Valley-Anuvial lands)
(Moskva Valley-May)
R Vtw '2
ZAYDELIMAN, P.R.
-Water balance and physical properties of swampy floodland soils in
the nouthern part of the taiga zone. Pochvovedenie no.40-19
Ap 16~, (MMA 1615)
1. ReopublikunAly goMddratymyy instItut po- proyaktirovamiyu
vodokhozyaystvennogo i mollorativnogo stroltellatva RSFSR.
AMoskva Valley-49il physics)
(Moskva Vallev--Sbtl moistura)
H.
ZAYDELIp V.A-t kand.takhn.naukv dotsent
."Design and construction of thermal electric plants" by I.L.
Xuptsov, 19,R.Ioffe. Reviewed by V.A.Zaidell. Promo stroi.
40 (I.e. 41). n-o.5t56-3-of cover -My 163. - (min 1635)
(Electric power plants-Design and construction)
(Kuptsov, I.L.) (1offeO IU.4)
ZODEL11 V4A*~ kand.tekhi.muk
Tlm apent in conat ructing thersal power stations in Russia aa
la.foreign countrles-,Xnergo strol. no.15s43-47 159.
(MIRA 13!8)
(Blectric power stations)
_!,A., kand.tekhn.nauk.
Some thoughts on the standard projeote for state regional 1,200
megawatt 61actr1c povar plAntit. Mlak. Sta, 29 n,)-7;1?,-;;O JI 11n,
(MIRA ll*.10)
(Blectric power plants)
VIIINITSM9 David YakovIeviclij G111ZWRG-SMKv Lev Davidovi6bj ZAMLIO-VI)ctor
Arno1'dov1q#.j,"' tokbm. nauki ZASUMIMMUt AnAtO11j, Alokvargii~'
V1kt6r'AIaksandrovich,- SOLOVIMp VIoAI=13,r Borlsorich;
GIWLKOV, Sorgoy Pavlovich; YAKOBSONt Sorgoy Sargoyeviahj XORIRDVSK37#
I.K.,q red;,; ANTILM P.A.p rdd,; VOROUIV.. K.P.p tAhn, m4o
[Handbook for, tba' insthIlAti6n of beat engines and related 4quipmentl
Spravocbnik po montaibu toplome hanicheakogo obonidovaniia.-W.2.,
parer. Mdakvas Goo, ener a i z*-~vo 9 19 60. 50 P. (MIU -14i'S)
-
- .1. ~.,I Z, 11 1 ~ , -11 :; 11 -_~t -' .- -1 -- -- - - - . ~ . :~
In