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Salt Solar sentence examples within Molten Salt Solar
The molten salt solar power tower station equipped with thermal energy storage can effectively compensate for the instability and periodic fluctuation of solar energy, and a reasonable operation control strategy is essential for its peak-regulating operation mode.
The molten salt solar power tower station equipped with thermal energy storage can effectively compensate for the instability and periodic fluctuation of solar energy, and a reasonable operation control strategy is essential for its peak-regulating operation mode.
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Method A simulator for tower type molten salt solar thermal power station was developed The virtual DPU technology and softwareized object configuration technology were adopted in the logic configuration, the same numerical model and design parameters as the actual power station were utilized.
Method A simulator for tower type molten salt solar thermal power station was developed The virtual DPU technology and softwareized object configuration technology were adopted in the logic configuration, the same numerical model and design parameters as the actual power station were utilized.
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Salt Solar sentence examples within salt solar tower
This study presents a comparison between thermal oil and molten salt parabolic trough power plants as well as molten salt solar towers.
This study presents a comparison between thermal oil and molten salt parabolic trough power plants as well as molten salt solar towers.
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The 50 MW molten salt solar tower project Hami in the Chinese Xinjiang province is the first commercial application of the innovative Stellio heliostat.
The 50 MW molten salt solar tower project Hami in the Chinese Xinjiang province is the first commercial application of the innovative Stellio heliostat.
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Salt Solar sentence examples within salt solar power
The molten salt solar power tower station equipped with thermal energy storage can effectively compensate for the instability and periodic fluctuation of solar energy, and a reasonable operation control strategy is essential for its peak-regulating operation mode.
The molten salt solar power tower station equipped with thermal energy storage can effectively compensate for the instability and periodic fluctuation of solar energy, and a reasonable operation control strategy is essential for its peak-regulating operation mode.
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The potential to improve the performance of molten salt solar power tower system (SPT) is explored through the proposal of CO2-based binary mixture cycle in the present study.
The potential to improve the performance of molten salt solar power tower system (SPT) is explored through the proposal of CO2-based binary mixture cycle in the present study.
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Salt Solar sentence examples within salt solar receiver
One of the major uncertainties in the design of molten-salt solar receivers is the estimation of the lifetime because solar receivers have to withstand high temperature, thermal stress and corrosive-media in addition to daily star-up and shutdown.
One of the major uncertainties in the design of molten-salt solar receivers is the estimation of the lifetime because solar receivers have to withstand high temperature, thermal stress and corrosive-media in addition to daily star-up and shutdown.
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In order to improve the efficiency of a solar receiver, the operating temperature has to be increased, from 500°C in the 1st generation (direct steam generation solar receivers) to 700°C in the current generation (molten salt solar receivers) and up to more than 800°C in the next generation (higher temperature molten salt solar receivers).
In order to improve the efficiency of a solar receiver, the operating temperature has to be increased, from 500°C in the 1st generation (direct steam generation solar receivers) to 700°C in the current generation (molten salt solar receivers) and up to more than 800°C in the next generation (higher temperature molten salt solar receivers).
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10.1016/J.APENERGY.2021.116967
The molten salt solar power tower station equipped with thermal energy storage can effectively compensate for the instability and periodic fluctuation of solar energy, and a reasonable operation control strategy is essential for its peak-regulating operation mode.
The molten salt solar power tower station equipped with thermal energy storage can effectively compensate for the instability and periodic fluctuation of solar energy, and a reasonable operation control strategy is essential for its peak-regulating operation mode.
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10.1101/2021.02.17.431581
To properly estimate mVMR in aquatic ecosystems, we generated metagenomes from co-occurring cellular and viral fractions (>50 kDa-200 μm size range) in freshwater, seawater and 6-14-32% salt solar-saltern ponds.
To properly estimate mVMR in aquatic ecosystems, we generated metagenomes from co-occurring cellular and viral fractions (>50 kDa-200 μm size range) in freshwater, seawater and 6-14-32% salt solar-saltern ponds.
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10.16516/J.GEDI.ISSN2095-8676.2021.01.004
Method A simulator for tower type molten salt solar thermal power station was developed The virtual DPU technology and softwareized object configuration technology were adopted in the logic configuration, the same numerical model and design parameters as the actual power station were utilized.
Method A simulator for tower type molten salt solar thermal power station was developed The virtual DPU technology and softwareized object configuration technology were adopted in the logic configuration, the same numerical model and design parameters as the actual power station were utilized.
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10.1016/j.solener.2020.11.033
One of the major uncertainties in the design of molten-salt solar receivers is the estimation of the lifetime because solar receivers have to withstand high temperature, thermal stress and corrosive-media in addition to daily star-up and shutdown.
One of the major uncertainties in the design of molten-salt solar receivers is the estimation of the lifetime because solar receivers have to withstand high temperature, thermal stress and corrosive-media in addition to daily star-up and shutdown.
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10.1016/J.ENERGY.2019.02.008
The potential to improve the performance of molten salt solar power tower system (SPT) is explored through the proposal of CO2-based binary mixture cycle in the present study.
The potential to improve the performance of molten salt solar power tower system (SPT) is explored through the proposal of CO2-based binary mixture cycle in the present study.
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10.1063/1.5117632
This study presents a comparison between thermal oil and molten salt parabolic trough power plants as well as molten salt solar towers.
This study presents a comparison between thermal oil and molten salt parabolic trough power plants as well as molten salt solar towers.
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10.1063/1.5117541
The 50 MW molten salt solar tower project Hami in the Chinese Xinjiang province is the first commercial application of the innovative Stellio heliostat.
The 50 MW molten salt solar tower project Hami in the Chinese Xinjiang province is the first commercial application of the innovative Stellio heliostat.
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10.1063/1.5117538
In order to improve the efficiency of a solar receiver, the operating temperature has to be increased, from 500°C in the 1st generation (direct steam generation solar receivers) to 700°C in the current generation (molten salt solar receivers) and up to more than 800°C in the next generation (higher temperature molten salt solar receivers).
In order to improve the efficiency of a solar receiver, the operating temperature has to be increased, from 500°C in the 1st generation (direct steam generation solar receivers) to 700°C in the current generation (molten salt solar receivers) and up to more than 800°C in the next generation (higher temperature molten salt solar receivers).
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10.1063/1.5117589
The objective of this paper is the evaluation of trends when a power-to-heat system with electrical heaters is integrated to a molten salt solar tower to additionally charge the thermal energy storage system and to expand the capacity of the CSP plant.
The objective of this paper is the evaluation of trends when a power-to-heat system with electrical heaters is integrated to a molten salt solar tower to additionally charge the thermal energy storage system and to expand the capacity of the CSP plant.
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