The overall pattern of carbon storage in the Yangtze River Delta is relatively stable, showing a pattern of "high in the southwest, low in the northeast" (). The
This study aims to investigate the Recharge-Storage-Runoff relationship of this catchment using gravimetrically-derived terrestrial water storage (TWS), satellite-derived and
3 · Yangtze River 50, 7 (2019). Google Scholar Caizhi, S. & Xiaodong, Y. Safety assessment and spatial correlation analysis of water resources-energy-food coupling
The methodology combines building energy simulation, LCC and benefit-cost analysis. • A prototype of office buildings in the Yangtze River Delta region is
River energy serves as an indicator of pollutant-carrying capacity (PCC), influencing regional water quality dynamics. In this study, MIKE21 hydrodynamics-water quality models were developed for two scenarios, and grid-by-grid numerical integration of energy was conducted for the Yangtze River''s mainstream. Comparison of predicted and measured
Water and energy are essential resources that flow between different regions in economic activities, forming a complex network that profoundly impacts sustainable development. Revealing network structural resilience allows for the identification of weak links, thus enhancing the capacity for sustainable development. This study
Here, we focused on the Yangtze River Delta (YRD) urban agglomeration in China and proposed an optimization framework for energy,
The Yangtze River delta region of China consumes a large amount of natural gas, but the current gas storage facilities of this region can provide only 19.6 × 108 m3 of natural gas for use, which will be far less than the required gas storage volume of 66.8 × 108 m3 in 2030. The reason is due to lacking suitable underground gas storage
As a pivotal wetland tree, Taxodium hybrid Zhongshanshan has been widely planted in the region of Yangtze River for multipurpose of ecological restoration, field shelter, landscape aesthetics as well as carbon sequestration. However, the carbon allocation patterns across distinct stages of stand development of T. Zhongshanshan are
The Yangtze River Basin is a resource axis represented by hydropower resources, bulk agricultural products, and mining resources. However, with rapid socio-economy development, the balance between
Economic development and land-use change can strongly affect terrestrial ecosystems'' carbon balance. This paper quantifies the changes in land use of Yangtze River Delta urban agglomeration (YRD)
An in-depth, longitudinal examination of carbon emissions and decoupling within the Yangtze River Economic Belt, supplemented by a dynamic assessment of its evolutional trajectory, provides a scientifically grounded framework and pragmatic value for the drafting of regional carbon emission mitigation strategies. Using the Yangtze River
The integration of the digital twin with the water industry is a new generation of information technology and communication technology in the integrated application of the water industry, is an important implementation path to promote the new stage of high-quality water development. The current level of wisdom in the water conservancy industry is still low,
September 28, 2017, a groundbreaking ceremony for the lithium-ion battery production base in the Yangtze River Delta of Contemporary Amperex Technology Co. Limited (CATL) took place in Jiangsu Zhongguancun Science and Technology Industrial Park.The total investment in this project, which is being developed on 1,000 mu (roughly 67 hectares) of
The average annual reduction in water, energy, and food consumption in the Yangtze River Delta region was 9.32 × 10 15 sej, 1.72 × 10 22 sej, and 3.71 × 10 22 sej, respectively. Among the provinces,
Based on the panel data of the 11 provinces along the Yangtze River Economic Belt from 1997 to 2015, the super slack-based model (Super-SBM) model is adopted to calculate the provincial-level eco-efficiency of industrial energy. While bringing in time series analysis and spatial differentiation feature analysis, the traditional and spatial
A comprehensive understanding of the relationship between urbanization evolution and carbon storage is crucial for regional low-carbon development and the mitigation of global warming. In this study, we took a typical mega-urban agglomeration (Yangtze River Delta region) in China from 2000 to 2020 as an example, introduced an
New Energy Expo 2024 is tailored for professionals engaged in various sectors, : · Energy storage technology and materials. · Photovoltaic exhibition area. · Energy storage systems and EPC
In this paper, the transportation energy efficiency of Yangtze River Delta''s 15 cities is studied in the period from 2009 to 2013. To measure transportation''s dynamic performance, the window analysis of data envelopment analysis (DEA) is used to estimate the efficiency in cross-sectional and time-varying data. Capital inputs and labor inputs are
Taking the current limitations of the development of large-scale energy storage technology into account, pumped storage plays a dominant role in energy
This study calculated CO2 emissions related to the consumption of primary energy by five sectors in the Yangtze River Delta region over 2000 to 2019. The Logarithmic Mean Divisia Index (LMDI) decomposition method was used to establish the factor decomposition model of CO2 emissions change. The LMDI model was modified to
Concept of digital twin construction scheme for flood storage space in mid-lower Yangtze River the development of all walks of life Since 2016, . Gartner Group has accelerated the development of
Assessing the impacts and drivers of urban expansion on terrestrial carbon storage (TCS) is important for urban ecology and sustainability; however, a unified accounting standard for carbon intensity and research on the drivers and economic value of TCS changes are lacking. Here, urban expansion and TCS in the Yangtze River Delta
The Yangtze River is the longest river in China; it has a drainage area of approximately 1,800,000 km 2, occupies 20% of China''s territory [], and sustains approximately 400 million people. It originates from the Tibetan Plateau at an average elevation of 4500 m, continues across 11 provinces of China from west to east, and
Due to the lack of publicly available vector data for FDAs, we manually mapped them on Google Earth using the "Atlas of flood storage and detention areas in the Yangtze River Basin" and adjusted their contours with DEM for elevation consistency in
In this study, a chance-constrained fractional programming model is developed for energy-water-carbon nexus systems in Yangtze River Delta urban
The study gives a general scheme of flood storage space construction with data base construction, digital scene construction, intelligent simulation and accurate
Serving as a crucial part of the Yangtze River Basin (YRB)''s flood control system, Flood Detention Areas (FDAs) are vital in mitigating large-scale floods. Urbanization has led to the development of urban FDAs, but significant losses could ensue if these FDAs are activated. With improved reservoirs and embankments, flood pressure in the middle
Here, we conducted a simulation study grounded by recent empirical evidence and advances in modeling techniques to project the spatiotemporal dynamics of
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