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标准(3)
在“
Elsevier电子期刊
”中,
命中:
94,148
条,耗时:0.0889602 秒
在所有数据库中总计命中:
162,994
条
1.
Model
of the Relationship between the
Velocity
Restitution Coefficient and the Initial Car Velocity during Collision
作者:
Oleg Zaikin
;
satellit8583@yandex.ru
;
Anatoly Korablin
;
Nadia Dyulger
;
Nikolai Barnenkov
关键词:
Velocity
restitution coefficient
;
head-on impact
;
crash test
;
conchoids
;
rebound
velocity
;
inelastic bodies
;
motor cars.
刊名:Transportation Research Procedia
出版年:2017
2.
Petrophysical approach for S-wave
velocity
prediction based on brittleness index and total organic carbon of shale gas reservoir: A case study from Horn River Basin, Canada
作者:
Taeyoun Kim
a
;
b
;
ktykdioh@ust.ac.kr
;
Seho Hwang
b
;
hwangse@kigam.re.kr
;
Seonghyung Jang
b
;
shjang@kigam.re.kr
关键词:
BI
;
brittleness index
;
TOC
;
total organic carbon
;
ECS
;
elemental capture spectroscopy
;
VP/VS
;
P-wave
velocity
to the S-wave
velocity
;
VP
;
P-wave
velocity
;
VS
;
S-wave
velocity
;
QFM
;
quartz
;
feldspar
;
and mica
刊名:Journal of Applied Geophysics
出版年:2017
3.
Crustal shear-wave
velocity
structure of northeastern Tibet revealed by ambient seismic noise and receiver functions
作者:
Zhenbo Wu
a
;
b
;
Tao Xu
a
;
c
;
xutao@mail.iggcas.ac.cn
;
José
;
Badal
d
;
Huajian Yao
e
;
f
;
Chenglong Wu
a
;
b
;
Jiwen Teng
a
关键词:
Northeastern Tibet
;
Ambient noise cross-correlation
;
Phase
velocity
dispersion
;
Receiver functions
;
Joint inversion
;
Crustal low
velocity
zone
刊名:Gondwana Research
出版年:2017
4.
Vel-IO 3D: A tool for 3D
velocity
model
construction, optimization and time-depth conversion in 3D geological
model
ing workflow
作者:
Francesco E. Maesano
a
;
1
;
francesco.maesano@ingv.it
;
Chiara D&rsquo
;
Ambrogi
b
关键词:
3D geological
model
ing
;
3D
velocity
model
;
Po Plain
;
Time-depth conversion
;
Velocity
analysis
刊名:Computers & Geosciences
出版年:2017
5.
Real time identification of the internal combustion engine combustion parameters based on the vibration
velocity
signal
作者:
Xiuliang Zhao
;
Yong Cheng
;
cysgd@sdu.edu.cn
;
Limei Wang
;
Shaobo Ji
关键词:
Internal combustion engine
;
Vibration
velocity
signal
;
Combustion parameters
;
Real time identification
;
Pattern recognition method
刊名:Journal of Sound and Vibration
出版年:2017
6.
Effect of low-
velocity
non-Darcy flow on well production performance in shale and tight oil reservoirs
作者:
Xiukun Wang
;
James J. Sheng
;
james.sheng@ttu.edu
关键词:
Low
velocity
non-Darcy flow
;
Threshold pressure gradient
;
Well production performance
;
Shale oil
;
Tight oil
刊名:Fuel
出版年:2017
7.
Hydrocarbon flame inhibition by C
6
F
12
O (Novec 1230): Unstretched burning
velocity
measurements and predictions
作者:
J.L. Pagliaro
a
;
b
;
JohnLPagliaro@gmail.com
;
G.T. Linteris
b
关键词:
Fire suppression
;
Novec 1230
;
H/F ratio
;
Halon replacement
;
Burning
velocity
刊名:Fire Safety Journal
出版年:2017
8.
Measurement and analysis of the re-wetting front
velocity
during quench cooling of hot horizontal tubes
作者:
Kifah Takrouri
a
;
takroukj@mcmaster.ca
;
John Luxat
a
;
luxatj@mcmaster.ca
;
Mohamed Hamed
b
关键词:
Quenching heat transfer
;
Surface re-wetting
;
Re-wetting front
velocity
;
Horizontal tubes
;
CANDU
;
LOCA
刊名:Nuclear Engineering and Design
出版年:2017
9.
Monitoring water seepage
velocity
in dikes using distributed optical fiber temperature sensors
作者:
Huaizhi Su
a
;
b
;
su_huaizhi@hhu.edu.cn
;
Shiguang Tian
b
;
Yeyuan Kang
c
;
Wei Xie
b
;
Jian Chen
b
关键词:
Dike engineering
;
Soil-concrete joint
;
Seepage
velocity
;
Distributed optical fiber temperature sensor system
;
Monitoring approach
刊名:Automation in Construction
出版年:2017
10.
Smoke spread
velocity
along a corridor induced by an adjacent compartment fire with outdoor wind
作者:
S.C. Li
a
;
D.F. Huang
b
;
N. Meng
c
;
L.F. Chen
d
;
L.H. Hu
d
;
hlh@ustc.edu.cn
关键词:
High-rise building compartment fire
;
Smoke
velocity
;
Corridor
;
Thermal buoyancy
;
Outdoor wind
刊名:Applied Thermal Engineering
出版年:2017
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题名(10632)
作者(4)
关键词(11089)
文摘(88675)
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