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160315nuuuuuuuucau o 000 0 eng d |
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|a YDXCP
|b eng
|e pn
|c YDXCP
|d IDEBK
|d EBLCP
|d OCLCQ
|d IDB
|d OCLCO
|d OCLCQ
|d MERUC
|d ZCU
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|d ICG
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|d OCLCQ
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|a 945038700
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|a 9292570056
|q (electronic bk.)
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|a 9789292570057
|q (electronic bk.)
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|z 9292570048
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|a (OCoLC)944582307
|z (OCoLC)945038700
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|a 903736
|b MIL
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|a HD9502.A2
|b .A853 2015eb
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|a HCDD
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|a Asian Development Bank.
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|a Improving energy efficiency and reducing emissions through intelligent railway station buildings.
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|a Oakland :
|b O Books Sun & Moon
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|a 1 online resource
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
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|a Cover; Contents; Figures, Tables, and Boxes; Figures; 1 Passenger Railway Traffic Volume; 2 Factors Affecting Building Energy Consumption; 3 Diagram of Building Automation Control System; 4 Diagram of Beijing Station Passageways; 5 Diagram of Passageway of Shanghai Station; 6 Diagram of Passageway of the Beijing South Station; 7 Energy Consumption Constitution of Large Stations; 8 Comparison of Energy Use by Public Building Type; 9 Issues Arising during Domestic Intelligent Building Projects; 10 Station B Daily Dry Bulb Temperature; 11 Station B Monthly Dry Bulb Temperature
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|a 12 Station B Daily Relative Humidity13 Station B Daily Radiation; 14 Operation Profile; 15 Energy Consumption Baseline Breakdown; 16 Four Intelligent Railway Station Building Measures toward Intelligent Energy Consumption; 17 Comparison of Intelligent Energy Consumption with the Baseline; 18 Intelligent Energy Saving Rate; 19 Design and Building Cost versus Operation and Maintenance Cost; 20 Energy Saving Rate from Control and Commissioning; 21 Energy Saving Rate of International Retrofit Cases; 22 Heating, Ventilation, and Air-Conditioning Energy-Saving Rates in Selected Cases
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|a 23 Lighting Control Energy Saving Rate in Selected Cases24 Cash Flow after Retrofit; 25 Low-Carbon Design Model; 26 Intelligent Control with Sustainability; 27 Railway Station Engineering Related Party Structure; 28 Diagram of Traditional Processes; 29 Diagram of Integrated Process; 30 Aspects in Integrated Process; 31 The Commissioning Process; Tables; 1 Comparison of Energy Use in 70 Large Stations between 2010 and 2011; 2 Location of Major Stations across Climate Zones; 3 Impact of Station Design on Energy Consumption; 4 Building Automation and Control Efficiency
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|a 5 Heating, Ventilation, and Air-Conditioning Design Parameters6 Climate Data; 7 Occupancy Density; 8 Building Envelope; 9 Lighting Power Density; 10 Heating, Ventilation, and Air-Conditioning Equipment; 11 Basic Information of Stations A and B; 12 Basic Information on the Facilities in Stations A and B; 13 Recommendation of Assessment Methods; 14 Architectural Passive Features; 15 Heating, Ventilation, and Air-Conditioning System and Control; 16 Lighting and Control; 17 Power Distribution and Energy Metering System; 18 Power Distribution and Energy Metering System; 19 Renewable Energy
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|a 20 Correlation Project Stakeholders and Railway Stations at Different Stages of the Construction Process21 Management Hierarchy; 22 Integration of the Different Stages of Project Management Delivery IPD Main Tasks and Achievements; 23 Energy-Saving Measures and the Effect of a Case Indicate; 24 Factors Involved in the Implementation Plan; 25 Action Plan; Boxes; 1 Case Study-Shanghai Station Retrofit; 2 HIVE Tower Case (France); Foreword; Acknowledgments; Abbreviations; Executive Summary; 1. Introduction; 1.1. Background; 1.2. Research Objectives and Scope
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650 |
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|a Energy consumption.
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650 |
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|a Intelligent buildings.
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650 |
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|a Railroad stations
|x Automation.
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650 |
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|a intelligent buildings.
|2 aat
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650 |
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|a energy consumption.
|2 aat
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|a Energy consumption
|2 fast
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650 |
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|a Intelligent buildings
|2 fast
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|u https://ebookcentral.proquest.com/lib/holycrosscollege-ebooks/detail.action?docID=4453832
|y Click for online access
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903 |
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|a EBC-AC
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994 |
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|a 92
|b HCD
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