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131.
南京地铁1号线南延线的气体消防设计 总被引:1,自引:0,他引:1
GB 50370—2005《气体灭火系统设计规范》已施行4年,但有些条款在实际操作中难以实行。结合南京地铁1号线南延线的消防系统设计实践,通过详实的数据,指出了规范中3.3.6条款所存在的不足,并提出了修改建议。介绍了GB16806—2006《消防联动控制系统》对于报警系统和灭火控制系统设计的一些新的要求,设计人员对此应高度重视。 相似文献
132.
基于广州地铁6号线大坦沙站盾构始发井的实践,研究富水砂层中破除盾构井端头门时防涌水的施工监测和工程检测方法,根据检测和监测结果,基于朗金土压力理论进行计算分析,提出相应的加固措施和方法。介绍了具体的防水加固措施和效果。 相似文献
133.
David A. Hensher 《Transportation》1993,20(1):1-19
In its relatively short life, the automobile has provided a level of mobility unlikely to have been feasible with a reliance on conventional forms of land based public transport. It has contributed in both a positive and negative way to the quality of life, transforming our cities, our way of life, and giving us a greater command over time and space. Concern over the undesirable social and environmental impacts has increased over time, with calls for governments to take action to reduce the automobile's dominant role. New investment in fixed-track public transport and bus priority systems together with strategies to discourage travel have been proposed to improve accessibility and to aid in cleaning up the physical environment. This paper reviews some of the issues facing society as it works to identify policies to achieve an economically and environmentally sustainabie future. There is a need for a broader set of policies to facilitate alternative land use-transport lifestyles while facing appropriate pricing signals. Some of the key issues are adjustments in the relative prices of location and transport, spatial incentives to make public transport economically viable (i.e. changing urban densities, zoning/incentive changes to allow more infill), road pricing (i.e. charging cars the economic cost of using the roads), new information technology systems (e.g. IVHS) to improve the efficiency and effectiveness of transport infrastructure, major improvements in the fuel efficiency of fossil fuelled vehicles, and alternative-fuelled vehicles (clean-air vehicles). 相似文献
134.
轨道车辆再生制动能量的吸收装置是城市轨道交通系统的重要组成部分。分别对电阻耗能型、电容储能型和逆变回馈型这三种类型的城市轨道交通车辆再生制动能量吸收装置的构成及其工作原理进行了深入分析,并比较了这三种类型装置的优缺点。开发逆变回馈型再生制动能量吸收装置无论从技术上还是造价上已具有可行性。 相似文献
135.
基于捷联惯性系统的轨道长波不平顺检测 总被引:1,自引:0,他引:1
将航空航天飞行器制导中的捷联惯性系统应用于轨道长波不平顺的检测。利用四阶龙格-库塔法求解四元素姿态矩阵微分方程;采用积分滤波器对加速度信号进行二次积分,从而实时获取物体的运动轨迹。为提高系统的稳定性和抗噪性,在积分前利用小波变换对加速度信号进行去噪处理。最后采用XW-IMU5250惯性测量单元实测一个物体的运动,得到了物体精确的运动轨迹,通过对比不同时期测量结果即可得到轨道的长波不平顺信息。 相似文献
136.
激光堆焊工艺在修造领域的应用现状及发展趋势 总被引:1,自引:0,他引:1
谢小海 《国外机车车辆工艺》2012,(4):1-8,16
本文详细阐述了激光堆焊工艺在工业修造领域的应用现状及发展趋势,介绍了激光束的能源、输送和聚焦系统、堆焊材料及激光设备。重点说明了其在修造领域的应用工艺。 相似文献
137.
装配式桁架在工程中运用较多,在工程项目中可以作为梁式结构和柱式结构运用,其中柱式结构分为排架式柱和方柱式结构。由于现实中对柱式结构缺乏完善的理论分析和实用简化计算方法,工程单位在运用柱式结构作为临时支撑结构过程中出现了不少安全隐患。因此对方柱式结构的构造及承载力简化计算方法进行研究,该实用计算方法简单,对方柱式结构运用具有一定指导作用和可操作性。 相似文献
138.
139.
The use of high-technology systems in the transport sector has increased steadily over recent years. This paper outlines the development of vehicle monitoring and control systems and their use in the public transport arena. The paper shows how one such system, that operated by Datatrak Ltd., has been adapted to provide a real time passenger information system for the RiverBus Partnership in London. 1 The RiverBus service described in this article ceased operation in August 1993. The collapse of the RiverBus Partnership followed the financial difficulties surrounding Olympia and York, developers of Canary Wharf in London Docklands. Passenger use and perception of the system is evaluated, based on surveys of RiverBus users. This provides an evaluation of the system, and highlights the importance of introducing such systems based on user information needs and as part of the total marketing package. 相似文献
140.
A simple formulation for predicting the ultimate strength of ships 总被引:11,自引:0,他引:11
The aim of this study is to derive a simple analytical formula for predicting the ultimate collapse strength of a single- and double-hull ship under a vertical bending moment, and also to characterize the accuracy and applicability for earlier approximate formulations. It is known that a ship hull will reach the overall collapse state if both collapse of the compression flange and yielding of the tension flange occur. Side shells in the vicinity of the compression and the tension flanges will often fail also, but the material around the final neutral axis will remain in the elastic state. Based on this observation, a credible distribution of longitudinal stresses around the hull section at the overall collapse state is assumed, and an explicit analytical equation for calculating the hull ultimate strength is obtained. A comparison between the derived formula and existing expressions is made for largescale box girder models, a one-third-scale frigate hull model, and full-scale ship hulls.List of symbols
A
B
total sectional area of outer bottom
-
A
B
total sectional area of inner bottom
-
A
D
total sectional area of deck
-
A
S
half-sectional area of all sides (including longitudinal bulkheads and inner sides)
-
a
s
sectional area of a longitudinal stiffener with effective plating
-
b
breadth of plate between longitudinal stiffeners
-
D
hull depth
-
D
B
height of double bottom
-
E
Young's modulus
-
g
neutral axis position above the base line in the sagging condition or below the deck in the hogging condition
-
H
depth of hull section in linear elastic state
-
I
s
moment of inertia of a longitudinal stiffener with effective plating
-
l
length of a longitudinal stiffener between transverse beams
-
M
E
elastic bending moment
-
M
p
fully plastic bending moment of hull section
-
M
u
ultimate bending moment capacity of hull section
-
M
uh
,M
us
ultimate bending moment in hogging or sagging conditions
-
r
radius of gyration of a longitudinal stiffener with effective plating [=(I
s
/a
s
)1/2]
-
t
plate thickness
-
Z
elastic section modulus at the compression flange
-
Z
B
,Z
D
elastic section modulus at bottom or deck
-
slenderness ratio of plate between stiffeners [= (b/t)(y/E)1/2]
-
slenderness ratio of a longitudinal stiffener with effective plating [=(l/r)(y/E)1/2]
-
y
yield strength of the material
-
yB
,
yB
,
yD
yield strength of outer bottom, inner bottom
-
yS
deck, or side
-
u
ultimate buckling strength of the compression flange
-
uB
,
uB
,
uD
ultimate buckling strength of outer bottom
-
uS
inner bottom, deck, or side 相似文献