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61.
海事重点监管船舶定位系统是针对上海黄浦江闵行段水域海事重点监管船舶逃逸问题而建设应用的系统。该系统前端设备独立性强,携带、装卸方便,应用功能尤其是报警功能全面及时可靠,已在黄浦江闵行段水域的海事监管应用中取得良好的效果,但仍存在硬件性能不足、定制化功能待完善、应用管理机制未建立等问题。文中针对该系统存在的问题提出了提高硬件性能、完善定制化应用功能及建立完善应用管理机制等建议,以期为海事重点船舶防逃逸监管提供一种高效、完善的解决方案。 相似文献
62.
针对舰船平台技术所面临的发展需求与挑战,从总体平台特性、综合隐身以及综合保障技术发展需求的角度,简要分析开展舰船复合材料结构物应用工程的必要性和紧迫性。以西方国家潜艇应用为例,梳理国外舰船复合材料结构物应用发展思路,提出并阐明舰船功能复合材料结构物应用工程的3个“一体化”技术特点,着重探讨总体/结构设计技术的定义、内涵及关键技术组成。最后,针对我国未来在该领域的发展需求,提出应在尽快制定顶层规划的同时,着力加强设计基础研究和规范体系性建设。 相似文献
63.
单井型塔柱结构极大改善了水力式升船机竖井水位同步性问题,但随着提升高度增大,竖井内水深越大,侧壁位移、弯矩过大等问题更加突出。以150米级单井塔柱为例,提出了竖井内布置对拉钢索的设想和简化布置方案。基于钢索拉力权重分配系数的优化方法,取得了钢索等应力的密度分布最优解,并离散转化为等效的等荷载布置方案,可在实际工程中应用。经有限元模型结果对比分析,等荷载布置与简化方案相比,最大位移可减小47.44%,纵竖向弯矩极值差别不大。与无钢索方案比较,最大位移、纵向弯矩、竖向弯矩可分别减小93.5%、74.36%、75.84%。高强钢索预应力方案值得进一步研究。 相似文献
64.
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66.
K. J. Spyrou 《Journal of Marine Science and Technology》1995,1(1):24-36
The behavior of a ship encountering large regular waves from astern at low frequency is the object of investigation, with a parallel study of surf-riding and periodic motion paterns. First, the theoretical analysis of surf-riding is extended from purely following to quartering seas. Steady-state continuation is used to identify all possible surf-riding states for one wavelength. Examination of stability indicates the existence of stable and unstable states and predicts a new type of oscillatory surf-riding. Global analysis is also applied to determine the areas of state space which lead to surf-riding for a given ship and wave conditions. In the case of overtaking waves, the large rudder-yaw-surge oscillations of the vessel are examined, showing the mechanism and conditions responsible for loss of controllability at certain vessel headings.List of symbols
c
wave celerity (m/s)
-
C(p)
roll damping moment (Ntm)
-
g
acceleration of gravity (m/s2)
-
GM
metacentric height (m)
-
H
wave height (m)
-
I
x
,I
z
roll and yaw ship moments of inertia (kg m2)
-
k
wave number (m–1)
-
K
H
,K
W
,K
R
hull reaction, wave, rudder, and propeller
-
K
p
forces in the roll direction (Ntm)
-
m
ship mass (kg)
-
n
propeller rate of rotation (rpm)
-
N
H
,N
W
,N
R
hull reaction, wave, rudder, and propeller
-
N
P
moments in the yaw direction (Ntm)
-
p
roll angular velocity (rad/s)
-
r
rate-of-turn (rad/s)
-
R(,x)
restoring moment (Ntm)
-
Res(u)
ship resistance (Nt)
-
t
time (s)
-
u
surge velocity (m/s)
-
U
vessel speed (m/s)
-
v
sway velocity (m/s)
-
W
ship weight (Nt)
-
x
longitudinal position of the ship measured from the wave system (m)
-
x
G
,z
G
longitudinal and vertical center of gravity (m)
-
x
S
longitudinal position of a ship section (S), in the ship-fixed system (m)
-
X
H
,X
W
,X
R
hull reaction, wave, rudder, and propeller
-
X
P
forces in the surge direction (Nt)
-
y
transverse position of the ship, measured from the wave system (m)
-
Y
H
,Y
W
,Y
R
hull reaction, wave, rudder, and propeller
-
Y
p
forces in the sway direction (Nt)
-
z
Y
vertical position of the point of action of the lateral reaction force during turn (m)
-
z
W
vertical position of the point of action of the lateral wave force (m)
Greek symbols
angle of drift (rad)
-
rudder angle (rad)
-
wavelength (m)
-
position of the ship in the earth-fixed system (m)
-
water density (kg/m3)
-
angle of heel (rad)
-
heading angle (rad)
-
e
frequency of encounter (rad/s)
Hydrodynamic coefficients
K
roll added mass
-
N
v
,N
r
yaw acceleration coefficients
-
N
v
N
r
N
rr
N
rrv
,N
vvr
yaw velocity coefficients K. Spyrou: Ship behavior in quartering waves
-
X
u
surge acceleration coefficient
-
X
u
X
vr
surge velocity coefficients
-
Y
v
,Y
r
sway acceleration coefficients
-
Y
v
,Y
r
,Y
vv
,Y
rr
,Y
vr
sway velocity coefficients
European Union-nominated Fellow of the Science and Technology Agency of Japan, Visiting Researcher, National Research Institute of Fisheries Engineering of Japan 相似文献
67.
喷锚支护的时间效应与空间效应 总被引:2,自引:0,他引:2
喷锚支护是新奥法构筑隧道的主要支护手段,为使喷锚支护与围岩形成共同承载结构,必须在适宜的时机及根据适当的围岩变位量来确定恰当的喷锚支护结构。 相似文献
68.
69.
锁紧气缸控制回路设计 总被引:1,自引:0,他引:1
介绍了锁紧气缸的结构、锁紧方式和几种基本的控制回路,给出了气缸两腔压力平衡状态下输入气压的关系。 相似文献
70.
Transfer functions are often used together with a wave spectrum for analysis of wave–ship interactions, where one application addresses the prediction of wave-induced motions or other types of global responses. This paper presents a simple and practical method which can be used to tune the transfer function of such responses to facilitate improved prediction capability. The input to the method consists of a measured response, i.e. time series sequences from a given sensor, the 2D wave spectrum characterising the seaway in which the measurements are taken, and an initial estimate of the transfer function for the response in study. The paper presents results obtained using data from an in-service container ship. The 2D wave spectra are taken from the ERA5 database, while the transfer function is computed by a simple closed-form expression. The paper shows that the application of the tuned transfer function leads to predictions which are significantly improved compared to using the transfer function without tuning. 相似文献