Energy, economic, environmental evaluations, and multi-objective
The intense economic growth leads to a rapidly rising global energy consumption in various forms, which unavoidably significantly increases greenhouse gas emissions. Hence,
The intense economic growth leads to a rapidly rising global energy consumption in various forms, which unavoidably significantly increases greenhouse gas emissions. Hence,
This study proposes a multi-energy complementary system (MECS) based on solar and biomass to address the energy consumption inefficiency of rural buildings, with Shangluo
Fluctuating renewable energies and loads challenge the wide-spreading of the clean and sustainable multi-energy complementary distributed energy system.
Multi-energy Complementary Distributed Energy System (MCDES) is an integrated system of energy production, supplying and marketing through the organic coordination and
The multi-energy complementary ecosystem (MCE) has the advantage of making full use of renewable energy and removing the dependence on carbon-based energy, which
This paper begins by elucidating the background and significance of multi-energy complementarity. It then provides an overview of multi-energy complementary systems,
Against the backdrop of evolving power systems and the increasing integration of wind, solar, thermal, and storage technologies, scientifically optimizing the configuration of
Hence, supplying energy demand and mitigating CO 2 emissions should be urgently addressed simultaneously. This study presents a new combining system comprising a
Sun et al. [11] proposed a multi-energy complementary heating system for rural households, considering solar energy storage, biomass, and air-source heat pumps.
Integrating a carbon dioxide energy storage system (CES) with an integrated energy system (IES) can significantly enhance renewable energy utilization, reduce carbon emissions,
Abstract Building clean and modern multi-energy complementary systems is a direct path to decarbonization in energy sector. The introduction of hydrogen energy with high
Multi-energy complementary distributed energy system (MECDES) is an important development direction for the energy system.
This paper proposes an optimal scheduling strategy for a gas–liquid phase change CES coupled with wind and solar generation, considering multi-layer low-carbon benefits.
Multi-energy complementary integrated energy system (MCIES) is considered as a promising solution to mitigate carbon emissions and promote carbon peak
As an important supporting technology for carbon neutrality strategy, the combination of an integrated energy system and hydrogen storage is expected to become a
For the first time, this paper proposes a cooperative planning model of multi-energy system and CCUS considering the regional CO2 availability. In this model, the multi-energy system and
The developments of energy storage and multi-energy complementary technologies can solve this problem of solar energy to a certain degree. The multi-energy hybrid power
Actively promote the construction of clean energy bases with multiple complementary energy sources, scientifically optimize the proportion of power sources, prioritize the use of existing
To cope with this issue, a novel comprehensive evaluation framework for multi-energy complementary ecosystems is proposed in this study. First, a 5D comprehensive
There are mainly three aspects are introduced: (1) the rational construction process of the multi-energy complementary energy system, (2) the energy-saving and obtained
Multi-energy complementary distributed energy system (MECDES) is an important development direction for the energy system. It has the advantages of energy conservation
In order to improve the renewable energy consumption capacity and the overall efficiency of energy system, adapt to the transition trend of energy supply mode to green, efficient and
Multi-energy complementary technology facilitates the comprehensive utilization of distributed and renewable energy, acting as a cornerstone for corporate energy transition.
As of May 2023, Global Energy Monitor had identified the following projects associated with China''s Multi-energy complementarity program:
As the world races toward carbon neutrality, multi-energy complementary systems using CO2 energy storage have emerged as a game-changer. These projects seamlessly integrate solar,
In this context, renewable energy can establish a multi-energy complementary system through cooperation with flexible market participants such as fossil fuels and energy
Second, the input-output status of the multi-energy complementary mode in different regions is analyzed. Then, based on the assumption of technical feasibility, the
Based on new models and formats such as clean energy bases with multiple complementary energy sources, integrated projects of source network load storage, comprehensive energy
Port Integrated Multi-Energy Systems (PIMESs) offer a comprehensive solution by integrating renewable energy sources such as wind, photovoltaic (PV), hydrogen, and energy
Technical and economic analysis of multi-energy complementary systems for net-zero energy consumption combining wind, solar, hydrogen, geothermal, and storage energy
At present, the development of a multi-energy complementary distributed energy supply system is in its initial stage in China. The National Development and Reform Commission and the
PDF version includes complete article with source references. Suitable for printing and offline reading.