Reduction Capability Project for Transportation
‘Study on Evaluation Index System of Green Low-
carbon Highway Transport Stations’ in 2014. A draft
of the two traffic industry standards for ‘evaluation
Method for saving energy passenger station
construction projects’ and ‘Evaluation Method for
Saving energy of Freight Station (Field)
Construction Projects’ was proposed.
The significant technology of saving energy in
current condition focus on heating, frequency
conversion, climate compensation, adjustment the
balance of hydraulics, waste heat recovery, as well
as, heating system automatic control and heating of
floor radiation. There are plenty of technologies of
air condition area in current period, such as fire pool
cold storage, primary variable frequency and flow,
large temperature differential cooling, cooling tower
provides cold, air conditioning self-control, pump of
ground source heating, radiation ceiling, multi-zone
air conditioning energy-saving and the recycle of
heating in air condition system. Meanwhile,
transportation area pays more attention on the
technology using energy-saving. There is some
technology using public transport region, such as
setting up an energy management system,
regenerative braking energy recovery technology for
locomotives, distributed photovoltaic technology
and reproduction lighting technology.
It can be seen a large number of scholars have
conducted analysis of energy efficiency in buildings
and there are also relevant studies on the energy
efficiency classification of public buildings through
the description of the study. As a large-scale public
building, highway passenger stations require a
certain level and quality of service. The relevant
researches have been carried out in domestic and
overseas in recent years. However, there is a lack of
systematic analysis of the overall energy
consumption and grades of domestic transportation
terminals, the establishment of an energy efficiency
benchmarking system, as well as, the lack of
technical support for the reduction of energy saving
and emission of highway passenger stations. This
study will investigate and analyze the energy
consumption status of highway passenger stations
and establish a corresponding energy efficiency
rating assessment method and research on energy
conservation technology of passenger station.
3 RESEARCH PROGRAM FOR
INFLUENCING FACTORS OF
ENERGY CONSUMPTION
The ‘Code of Design of Thermal Engineering for
Civil Buildings’(GB50176-93) sets the national
building thermal design into five points from the
perspective of design. It divides the country into five
districts, Freezing, Cold, Hot-Summer and Cold-
Winter, Hot-Summer and Warm-Winter and
Temperate Regions. Because different climates put
forward different requirements for the standards of
design building, as well as, the main facilities,
equipment and energy consumption characteristics
of the passenger station in a different region of
China depend on different climatic conditions.
Therefore, in the actual investigation, according to
different construction climate zones, it is necessary
to count the energy consumption of passenger
station.
The project team conducts on-the-spot
investigations of the highway passenger station
through interviews with technical personnel of the
station, expert consultation, and field trips. The
research plan mainly focuses on the following eight
aspects: (1)The basic conditions of the station (site
station level, daily delivery volume, traffic
convenience, room for development, etc.); (2) Site
layout processes conditions (general layout, process
flow, streamline design, etc.); (3) Production and
living facilities of the station (total area, area of
building facilities, area of station facilities, area of
office facilities, area of facilities, area of living
service facilities, etc.); (4) Station building
conditions (body shape coefficient, thermal
performance of fence structure, ratio of window to
wall, external shading, openable area of external
window, etc.); (5) Station equipment configuration:
ticket sales, station security inspection machines,
metering equipment, etc.; (6) Energy consumption
types and consumption (coal, oil, electricity, heat,
gas, etc.); (7) Station energy-saving management
(setting of energy-saving organization, system
construction, implementation of energy
conservation); (8) Other aspects (resource recycling,
new energy use, etc.)