Herein, we designed a triple-layer full-carbon electrode (F-CE) consisting of a macroporous carbon layer, a highly conductive graphite layer and
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This study investigates a specific offshore photovoltaic (PV) project in Qinhuangdao City, Hebei Province. Initially, field tests of horizontal static load on
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The circular helicoid (CH) pile is a novel special-shaped pile developed over the past decade and widely used as an uplift-resistant foundation for photovoltaic support structures due to its
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For an offshore photovoltaic helical pile foundation, significant horizontal cyclic loading is imposed by wind and waves. To study a fixed offshore
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Wang and Lund (2022) briefly introduced the development state and faced challenges for offshore fixed pile-based and floating PV systems. Fixed PV systems (Zhang, 2017) are fastened to
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Water-surface photovoltaics (WSPVs) represent an emerging power-generation technology utilizing idle water and solar energy. Owing to their significant advantages and
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This paper proposed a triple-layer optimization model for DPVES capacity configuration in the manufacturing sector using a chemical fibre manufacturing enterprise for demonstration. Refined
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Therefore, this paper aims to investigate the application of bionics principles to propose a novel type of photovoltaic bracket pile foundation designed to meet diverse bearing capacity
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Abstract Layer-by-layer (LbL) processing, otherwise known as sequential deposition, is emerging as the most promising strategy for fabrication of active layers in organic photovoltaic (OPV) devices on both
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For a two layer cell, one layer should be tuned to 1.64 eV and the other at 0.94 eV, with a theoretical performance of 44%. A three-layer cell should be tuned to 1.83, 1.16 and 0.71 eV, with an efficiency
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This study has comprehensively investigated the bearing characteristics of three types of photovoltaic support piles, serpentine piles, square piles, and circular piles, in desert gravel areas.
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This paper introduces a new type of photovoltaic bracket pile foundation named the “serpentine pile foundation” based on the principle of biomimicry.
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Projects requiring high load capacities—such as those with large, heavy solar panels or in regions with significant wind forces—may necessitate
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The spiral ground pile is made of hot-dip galvanized steel pipes with spiral blades. The blades can be large or small, continuous or intermittent.
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<p>With the rapid development of photovoltaic power technology, the construction of offshore photovoltaic electric field becomes more prevalent. However, the complex offshore environment,
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Third-generation solar cells are designed to achieve high power-conversion efficiency while being low-cost to produce. These solar cells have the
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The floating photovoltaic (PV) system is an attractive type because of its multiple advantages and has been well developed based on fresh water areas on land. This paper focuses
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Utilizing the finite element method, the horizontal loading behavior of offshore photovoltaic steel pipe piles within soil layers is examined. The stiffness parameters of the SY1 test pile, as
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The coupling between the photovoltaic/thermal collector and energy piles can store the solar waste heat in the soil via the energy piles, addressing soil thermal imbalance around energy
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In this study, the frost jacking characteristics of steel pipe screw piles for photovoltaic support foundations in high-latitude and low-altitude regions are studied via in situ tests and
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Therefore, a novel building-integrated photovoltaic/thermal-energy pile system is proposed to address soil thermal imbalance, improve electric efficiency, and reduce the building load
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In recent years, floating photovoltaic (FPV) systems have emerged as a promising technology for generating renewable energy using the surface of water
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3. Research on Offshore Floating Photovoltaic Systems The design of offshore FPV systems is fundamentally analogous to that of FPV systems in
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