Introduction |
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1 | (8) |
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Chapter 1 Railway Transport Capacity and Construction Standards |
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9 | (64) |
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1.1 Railway Traffic Volume and Design Period |
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9 | (11) |
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1.1.1 The Significance of Traffic Volume |
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9 | (1) |
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1.1.2 Economic Investigates and Traffic Forecasts |
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10 | (6) |
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1.1.3 Computation of Traffic Indices |
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16 | (4) |
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20 | (1) |
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1.2 Railway Carrying Capacity in the Section |
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20 | (6) |
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1.2.1 Train Working Diagram |
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21 | (1) |
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22 | (1) |
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1.2.3 Carrying Capacity in Section |
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23 | (3) |
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1.3 Railway Traffic Capacity |
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26 | (3) |
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1.4 High-Speed Railway Transport Capacity |
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29 | (5) |
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1.4.1 Carrying Capacity of High-Speed Railway |
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29 | (3) |
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1.4.2 Traffic Capacity of High-Speed Railways |
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32 | (1) |
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1.4.3 The Utilization of Carrying Capacity of High-Speed Railway |
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33 | (1) |
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1.5 Railway Classification and Main Technical Standards |
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34 | (39) |
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1.5.1 Railway Classification |
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34 | (8) |
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1.5.2 The Main Technical Standards |
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42 | (22) |
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1.5.3 Comparison and Selection of Railway Main Technical Standards |
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64 | (4) |
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1.5.4 Synthetic Optimization Method for Railway Main Technical Standards |
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68 | (5) |
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Chapter 2 Traction Calculation |
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73 | (86) |
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2.1 Forces Acting on the Train |
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73 | (59) |
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73 | (25) |
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2.1.2 Train Running Resistance |
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98 | (21) |
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2.1.3 Braking Pressure of Train |
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119 | (13) |
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2.2 Train Motion Equation |
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132 | (4) |
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2.2.1 Train Motion Status |
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132 | (1) |
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2.2.2 Train Movement Equation |
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133 | (3) |
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136 | (9) |
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2.3.1 Computation of Tractive Tonnage |
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137 | (3) |
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2.3.2 Checking Tractive Tonnage |
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140 | (2) |
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2.3.3 Computation of Train Parameters |
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142 | (2) |
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144 | (1) |
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2.3.5 Adjusted Tonnage Ratings |
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144 | (1) |
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2.4 Train Running Speed and Time |
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145 | (14) |
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2.4.1 The Unit Resultant Force Curve |
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145 | (8) |
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2.4.2 Calculating Running Speed and Time |
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153 | (6) |
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Chapter 3 Railway Plane and Profile Design |
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159 | (114) |
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159 | (3) |
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162 | (45) |
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3.2.1 Composition of a Plane and Its Basic Alignment |
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162 | (1) |
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163 | (4) |
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167 | (17) |
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3.2.4 Easement Curve or Transition Spiral |
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184 | (13) |
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3.2.5 Distance Between Centers of Main Lines |
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197 | (10) |
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3.3 Profile Design in Section |
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207 | (42) |
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208 | (12) |
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3.3.2 Connection of Grade Section |
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220 | (10) |
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3.3.3 Length of Grade Section |
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230 | (6) |
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3.3.4 Compensation of Maximum Grade |
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236 | (10) |
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3.3.5 Effect of a Grade Section on Operating Expenses |
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246 | (3) |
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3.4 Plane and Profile Design at Bridge, Culvert, Tunnel and Subgrade |
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249 | (4) |
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3.4.1 Bridge and Culvert Zones |
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249 | (3) |
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252 | (1) |
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3.5 Plane and Profile Design at Station Site |
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253 | (12) |
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3.5.1 Length of Station Site |
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253 | (3) |
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256 | (2) |
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258 | (5) |
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3.5.4 Plane and Profile Design at Both Ends of Station Site |
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263 | (2) |
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3.6 Line Plans and Profile Details |
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265 | (8) |
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3.6.1 Classification and Scale |
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266 | (1) |
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267 | (2) |
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269 | (4) |
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Chapter 4 Railway Location |
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273 | (96) |
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4.1 Basic Principles of Railway Location |
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273 | (5) |
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4.1.1 Natural Conditions Affecting Location of Railway Lines |
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273 | (2) |
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4.1.2 General Principles of Railway Location |
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275 | (1) |
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4.1.3 Steps and Methods of Railway Location |
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276 | (2) |
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4.2 Selection of Line Strike |
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278 | (14) |
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4.2.1 Governing Factors in Strike Selection |
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279 | (1) |
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4.2.2 General Rules in Selection of Strike |
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280 | (12) |
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4.3 Distribution and Position Selection of Stations |
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292 | (12) |
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4.3.1 Distribution of Stations |
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293 | (3) |
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4.3.2 Distribution of Intermediate Station, Passing Station, or Overtaking Station |
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296 | (2) |
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298 | (3) |
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4.3.4 Rules for Selecting Positions of Intermediate Stations |
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301 | (3) |
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4.4 Basic Methods of Railway Location |
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304 | (11) |
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4.4.1 Location for the Section of Sufficient Grade |
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305 | (4) |
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4.4.2 Location for Section of Easy Grade |
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309 | (2) |
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4.4.3 Railway Location Considering Cross-Section |
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311 | (1) |
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4.4.4 Improvement of Plane and Profile |
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312 | (3) |
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4.5 Location in Complicated Geological Conditions |
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315 | (16) |
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4.5.1 Location in Landslide Zones |
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316 | (2) |
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4.5.2 Location in Talus Zones |
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318 | (1) |
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4.5.3 Location in Mudslide-Stricken Regions |
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319 | (1) |
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4.5.4 Location in Gully Regions |
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320 | (1) |
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4.5.5 Location in Karst Zones |
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321 | (4) |
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4.5.6 Location in Marsh Zones |
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325 | (1) |
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4.5.7 Location in Permafrost Regions |
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326 | (1) |
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4.5.8 Location in Desert Regions |
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326 | (1) |
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4.5.9 Location in High-Intensity Earthquake Regions |
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327 | (2) |
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4.5.10 Location in Reservoir Region |
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329 | (2) |
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4.6 Location in Sections of Bridge, Culvert, and Road Intersection |
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331 | (9) |
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4.6.1 Bridge and Culvert Section |
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331 | (3) |
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4.6.2 Relatively Favorable Engineering Geological Conditions |
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334 | (2) |
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336 | (2) |
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4.6.4 Intersection of Railway and Road |
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338 | (1) |
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4.6.5 Setting Condition of Crossing |
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339 | (1) |
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4.7 Railway Environment Location |
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340 | (8) |
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4.7.1 Environmental Problem Related to Railway Location |
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341 | (2) |
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4.7.2 General Principles of Railway Environment Location |
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343 | (4) |
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4.7.3 Railway Environment Location Based on Natural Environment Protection |
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347 | (1) |
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4.8 Computer Aided Railway Location and Alignment Design |
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348 | (21) |
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4.8.1 Digital Terrain Model |
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349 | (8) |
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4.8.2 Object Model of Computer Aided Route Design |
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357 | (2) |
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4.8.3 CAD Model of Route Selection |
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359 | (1) |
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4.8.4 Computer Aided Design of Profile |
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360 | (2) |
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4.8.5 Computer Aided Design of Route Plane |
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362 | (7) |
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Chapter 5 Technical and Economic Comparison of Schemes |
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369 | (34) |
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5.1 Basic Concepts of Technical and Economic Comparison |
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369 | (5) |
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5.1.1 The Role of Technical and Economic Comparison in Schemes |
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369 | (1) |
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5.1.2 Index in Technical and Economic Criterion |
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370 | (1) |
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5.1.3 The Classification of Schemes |
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371 | (1) |
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5.1.4 Brief Process of Technical and Economic Comparison of Schemes |
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372 | (2) |
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5.2 Basic Data of Economic Comparison |
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374 | (11) |
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374 | (5) |
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5.2.2 Operating Expenses Calculation |
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379 | (6) |
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5.3 Economic Criterion Methods |
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385 | (9) |
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5.3.1 Classification of Economic Criterion Method |
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385 | (1) |
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5.3.2 Criterion Economic Methods Used in Chinese Railway Design |
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386 | (3) |
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5.3.3 Methods Used in Other Countries |
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389 | (5) |
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5.4 Comprehensive Criterion of the Proposals |
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394 | (9) |
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5.4.1 Traditional Comparing Methods |
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394 | (1) |
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5.4.2 Criterion Method With Optimization Models |
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394 | (9) |
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403 | (70) |
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6.1 Passing Station and Overtaking Station |
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403 | (4) |
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403 | (2) |
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405 | (2) |
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6.2 Intermediate Station Design |
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407 | (37) |
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6.2.1 Plane Layout Diagram of Intermediate Station |
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407 | (2) |
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6.2.2 Major Equipment Layout of Intermediate Station |
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409 | (11) |
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6.2.3 Calculation of Intermediate Station Plan |
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420 | (24) |
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6.3 Essentials of District Station Design |
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444 | (7) |
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6.3.1 Operation and Type of District Station |
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444 | (2) |
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6.3.2 Layout of Major Facilities in District Station |
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446 | (4) |
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6.3.3 Layout of Throat Zone District Station |
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450 | (1) |
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6.4 Introduction of the Marshaling Station and Junction Terminal |
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451 | (4) |
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451 | (2) |
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453 | (2) |
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6.5 Essentials of High-Speed Station |
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455 | (18) |
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6.5.1 General Requirements |
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455 | (5) |
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6.5.2 High-Speed Station Operation |
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460 | (1) |
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6.5.3 Basic Pattern of a High-Speed Station |
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461 | (6) |
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6.5.4 Plane and Profile of Station Tracks |
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467 | (3) |
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6.5.5 Equipment for Passenger Transportation |
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470 | (3) |
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Chapter 7 Strengthening of the Railway Transport Capacity |
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473 | (62) |
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7.1 Principal Measures in Strengthening the Carrying Capacity of the Railway Line |
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473 | (26) |
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7.1.1 Measure of Transport Organization |
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474 | (8) |
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7.1.2 Measures for Advancing Traction Power, Signaling, Interlocking, and Block Equipment |
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482 | (3) |
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7.1.3 Measures for Reconstruction of Engineering Facilities |
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485 | (9) |
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7.1.4 Construction of the Third, the Fourth and the Diverting Lines |
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494 | (1) |
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7.1.5 Overall Design for Strengthening the Existing Line |
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494 | (5) |
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7.2 Upgrading of Railway Passenger Transport |
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499 | (18) |
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499 | (3) |
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7.2.2 Targeted Speed of Passenger Trains and Implementation Scheme for Speeding Up |
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502 | (3) |
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7.2.3 Technical Conditions for Speedup Passenger Trains |
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505 | (7) |
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7.2.4 Technical Conditions of Railway Lines for Passenger Transport Speedup |
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512 | (3) |
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515 | (1) |
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7.2.6 Speedup of Passenger Transportation Influence on Freight Transport |
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516 | (1) |
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7.3 Construction of High-Speed Railway |
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517 | (9) |
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7.3.1 Targeted Speed and Mode of High-Speed Trains |
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517 | (3) |
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7.3.2 Advantages of High-Speed Railways and Preconditions for Construction |
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520 | (3) |
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523 | (3) |
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7.4 Railway Heavy Haul Traffic |
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526 | (9) |
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7.4.1 Standards for Railway Heavy Haul Traffic |
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526 | (1) |
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7.4.2 Organization Modes of Railway Heavy Haul Transportation |
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527 | (5) |
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7.4.3 Requirements on Railway Technical Facilities for Heavy Haul Transportation |
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532 | (3) |
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Chapter 8 Design for Reconstruction of Existing Railways and Building Out of Second Railway Lines |
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535 | (90) |
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8.1 Design for Reconstruction of Existing Railways |
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535 | (50) |
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8.1.1 Profile Design for Reconstruction Existing Railway |
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536 | (8) |
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8.1.2 Plane Design for Reconstruction of Existing Railways |
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544 | (7) |
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8.1.3 Design and Survey Method for Curve Reconstruction |
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551 | (29) |
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8.1.4 Design for Cross-Section Reconstruction |
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580 | (5) |
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8.2 The Design of the Second Railway Line |
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585 | (33) |
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8.2.1 Profile Design of the Second Line |
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585 | (3) |
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8.2.2 Plane Design of the Second Line |
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588 | (8) |
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8.2.3 Cross-Section Design of the Second Line |
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596 | (7) |
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8.2.4 Plane Calculation of the Second Line |
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603 | (15) |
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8.3 Building the Third, Fourth, and Branching Lines |
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618 | (7) |
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8.3.1 Building the Third, Fourth, or Loop Line in the Busy Section of a Hub Area |
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618 | (1) |
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8.3.2 Build the Third, Fourth or Branching Line in All Sections or the Entire Railway Line |
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619 | (6) |
Bibliography |
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625 | (2) |
Index |
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627 | |