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Production and transportation of food and energy in Southwest China Southwest China has abundant water energy resources; however, its low utilization rate restricts its development. From 2001 to 2016, the average annual grain output in Southwest China was 54,024,300 tons and the energy output was 114 million tons, accounting for
We assessed the spatio-temporal variations of ecosystem WUE and its responses to drought for terrestrial ecosystems in Southwest China over the period 2000–2017. The annual WUE values varied with vegetation type in the region: Forests (3.25 gC kg−1H2O) > shrublands (2.00 gC kg−1H2O) > croplands (1.76 gC kg−1H2O) > grasslands (1.04 gC
For this, we investigated the origin, development, and formation of the high-temperature water and harmful gases that rushed into Bangfu tunnel, Southwest China. During excavation of the Bangfu tunnel through the F1-2 fault in sandstone, a significant incident occurred involving a sudden influx of high-temperature water (45.4 °C) of
In the future perspective, the new application scenarios of two LOHC storage and transportation technologies, including large-scale hydrogen energy storage and
The straw resource in southwest China, such as Yunnan, Guizhou and Sichuan province, is featured by its multiple variety, huge quantity and wide distribution. For those reasons, it deserves to have a careful evaluation on its distribution characteristics, resource utilization and popularizing demonstration in this region.
To investigate the susceptibility of drifting snow along the Ya''an–Qamdo section of the railway, which is located in a high-altitude and cold plateau in Southwest China with scarce meteorological information, the Weather Research and Forecasting Model (WRF) is used in this paper to simulate the spatio-temporal distribution of
A quantitative understanding of changes in water resources is crucial for local governments to enable timely decision-making to maintain water security. Here, we quantified natural-and human-induced influences on the terrestrial water storage change (TWSC) in Sichuan, Southwest China, with intensive water consumption and climate
China Engineering Science. 2022, 24 (3): 11. They are cited on page 3, line 106, 113; page 4, line 120; page 7, line 272. Please provide quantifiable results/findings in conclusion, the conclusion in its current format is just a text. We appreciate this reviewer''s
Abstract. With the proposal of the "carbon peak and neutrality" target, various new energy storage technologies are emerging. The development of energy
Under the background of accelerating new industrial revolution, China''s higher engineering education is in urgent need of cultivating a group of innovative talents in engineering science and technology. In order to improve the quality of engineering education, China proposed the "new engineering research and practice project" in June
Southwest China has one of the largest karst landscapes on the Earth and an ecologically fragile environment. A better understanding of how ecosystem services function in karst areas helps ecological preservation and policy implementation. However, little effort has been made to evaluate the long-term dynamics of ecosystem services
KPMG China and the Electric Transportation & Energy Storage Association of the China Electricity Council (''CEC'') released the New Energy Storage Technologies Empower
Sichuan is one of the most important economic inland areas in China with an area of 0.48 million km 2 and a population density of 166.2 pop/km 2.The average annual growth rate of GDP was 12.7% during 2005–2014 [7], which is well above the national average., which is well above the national average.
As a resource for flexible regulation, new forms of energy storage systems (ESS) support new energy consumption, the safe operation of the power grid, and enhanced control
In China, hydropower development has been elevated to a national policy of clean energy development. Along with the commissioning of the TGR and the continuous development of hydropower in Southwest China, numerous cases of reservoir landslides or related research results have been reported ( Yin et al., 2016 ; Zhou et al., 2017 ; Chen
By reviewing and analyzing three aspects of research and development including fundamental study, technical research, integration and demonstration, the progress on
College of Information Science and Engineering, China University of Petroleum, Beijing 102249, China;. Funding project:Chinese Academy of Engineering project "Strategic Research on the Integrated Development of Transportation and Energy in China" (2021-XZ-22) Received: 2022-02-18 Revised: 2022-04-13 Available online: 2022-06-23.
The project aims to break through the theory and technology of dynamic reconfigurable battery energy storage systems, solve the pain points of system efficiency, safety,
Get information on Southwest University of Science & Technology - China at U.S. News. Find out where the university is ranked globally based on its academic reputation and research.
Since 2000, under China''s WDS, the Basin has experienced rapid urban development; expansion of transportation, energy, and tele-communication networks; and ecological restoration (Yu, 2015, Zhang et al., 2012). Thus, the Basin could be a
Droughts and floods have frequently occurred in Southwest China (SWC) during the past several decades. Yet, the understanding of the mechanism of precipitation in SWC is still a
Chinese government should vigorously promote the research, development, demonstration and industrialization process of energy storage technology,
School of Electrical Engineering, Beijing Jiaotong University, Beijing 100044, China;. Funding project:Chinese Academy of Engineering project "Strategic Research on the Integrated Development of Transportation and Energy in China" (2021-XZ-22) Received: 2022-02-16 Revised: 2022-03-31 Available online: 2022-06-23. HTML
Firstly, this paper introduces the development status of new-type energy storage in China from the aspects of energy storage scale and energy storage application distribution;
Spatiotemporal Evolution and Coupling Analysis of Human Footprints and Habitat Quality: Evidence of 21 Consecutive Years in China Previous Article in Special Issue Characteristics of an Inorganic Carbon Sink Influenced by Agricultural Activities in the Karst Peak Cluster Depression of Southern China (Guancun)
The development of energy storage in China has gone through four periods. The large-scale development of energy storage began around 2000. From 2000 to 2010, energy storage technology was developed in the laboratory. Electrochemical energy storage is the focus of research in this period.
The Department of Building and Energy Engineering is mainly engaged in solving the energy and environment problems in civil, industry, medical, transportation and aerospace, creating healthy and comfortable thermal and humid environment, air quality environment and sound and light environment, minimizing the energy and resource consumption of
This work was supported by the Special Funds for Local Science and Technology Development Guided by the Central Government, China (GuikeZY20198009), National Natural Science Foundation of China (42172341 and 42007049), and the Key Research and ().
The current study took Henan Wufeng New Energy Science Technology Co. Ltd as an example to investigate a large‐scale steam heating system with biomass
The aim of our study is to quantify the relationship between ecosystem and climate variables in southwest China. We further examined spatiotemporal distribution patterns of daily reference evapotranspiration (ET0) and ecosystem types through integrated approaches, including spatiotemporal interpolation, Penman–Monteith, Mann–Kendall
Promoting Shared Development in Southwest China Through Energy Revolution. 1. Huaneng Lancang River Hydropower Inc., Kunming 650214, China; 2. Sichuan Energy Internet Research Institute, Tsinghua University, Chengdu 610213, China. Funding project:"( 2035)——
Environmental impacts from rocky desertification in Southwest China. a) Reduction of plant biomass, b) change in physical and ecological characteristics, c) change of plant community, d) reduction of forest and vegetation cover. a) Change of germplasm resources, b) species diversity, c) species composition.
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