Request PDF | Thermal Performance Study of Tower Solar Aided Double Reheat Coal-Fired Power Generation System | In this paper, a novel tower solar aided coal-fired power generation (TSACPG) system
Solar Aided Power Generation (SAPG) is the most efficient and economic ways to hybridise solar thermal energy and a fossil fuel fired
The solar collector field supplies thermal energy to feed water. Compare to the direct SPCC system, the present proposed model reduce the investment cost of STE. The thermal efficiency and power generation efficiency of the system calculated for this system were 51.47% and 45.05% respectively, while the CO 2 emission reduction rate was 395.42 t/h.
This section takes the upper boundary model as an example to illustrate the operational status of the solar-assisted carbon capture system, showing the results of operating and state variables. It presents the curves of The case study demonstrates that by flexibly coordinating the operation schemes for power generation, thermal storage, and
Previous research on solar-assisted IEPVT/HP systems has demonstrated their technical feasibility for combined heat and power generation in domestic applications [12, [14], [15], [16]]. However, there are no studies on the economic viability of these systems in cool temperate oceanic climates with lower levels of solar irradiation, such as in
Exergy analysis reveals that the highest exergy destruction occurs in solar photovoltaic thermal (67.83 %) and parabolic trough solar collector (13.31 %), respectively. Furthermore, performance results of the solar-assisted power-to-hydrogen system are compared with other hydrogen production technologies.
Zhai et al. (2016) employed the LCA to investigate three sub-systems (coal-fired power generation system, solar-assisted coal-fired power generation system with or without thermal storage) of 330 MW, 600 MW and 1000 MW power capacity. Their results indicated that pollutant emissions of three systems and primary energy consumption (PEC) mainly occurred
Energy demand and consumption have, in recent times, witnessed a rapid proliferation influenced by technological developments, increased population and
For this hybrid power system, solar thermal power system can be combined with different types of fossils fired power plant (i.e., coal fired power plant, and gas fired power plant) [4] Evaluation of solar aided thermal power generation with various power plants. Int. J. Energy Res., 35 (2011), pp. 909-922. Crossref View in Scopus Google
The combined system of solar thermal with thermoelectric modules delivers thermal energy and additional amount of electrical energy, and thus solar energy can be utilized in an effective manner. This paper presents the fundamentals of solar-assisted thermoelectric generator (STEG) with emphasis on the methods to increase conversion efficiency.
The concept of SAPG system is the most efficient, economical, eco-friendly and reliable solar thermal technology for power generation as it retains the following advantages: • The theoretical and operating efficiency of SAPG system is higher • • • • • • • than the conventional thermal power plant and CSP plant with the same capacity; The operating performance and ecological
The 0.6064-MW th solar thermal power in the new SAPG system is introduced into the lignite drying process, Performance analysis and techno-economic evaluation of 300 MW solar-assisted power generation system in the whole operation conditions. Appl Energy, 264 (2020), Article 114744. View PDF View article View in Scopus Google Scholar
This paper introduces a novel multi-mode solar thermal-assisted liquid carbon dioxide energy storage system, building upon traditional LCES systems, coupling with solar thermal collection systems and ORC systems was undertaken. Performance analysis of novel cascade organic Rankine cycle solar thermal power generation system. Acta Energiae
In summary, the hygroscopic assisted solar photo-thermal-electric conversion system for all-day power generation and daytime water collection has been proposed, which skillfully combines solar radiation photothermal conversion and moisture absorption/desorption.
This paper proposes a solar assisted Kalina Cycle System 11 (KCS 11) driven by fluegas waste heat of 500 MW Subcritical (SubC) coal-fired thermal power plant for additional electrical power
Coal-fired power generation is still the main power source all over the world at present [1].And developing the coal-fired power generation technology with high parameters and large capacity is the crucial method of efficient energy conservation and pollution reduction [2].Double reheat technique is not only an effective way to improve the efficiency of coal-fired
Integrated solar combined cycle (ISCC) power generation systems can, on the one hand, effectively alleviate the problem of fluctuating output power of pure solar thermal power generation systems, and on the other hand, reduce gas consumption, the cost of solar thermal power generation, and CO 2 emissions.
The power generation system using concentrating solar power (CSP) technology has many technical and economic challenges, such as lower efficiency, higher investment costs, limited capacity, and fluctuations of solar radiation. However, solar thermal power plants based on CSP technology could be one of the best possible solutions in the long
The system is assisted by combining of two solar power production systems. The first system is photovoltaic (PV) which works parallel to geothermal binary cycle. The
However, the solar efficiency of this work is not ideal, which is less than 30 % [41], [42], [43]. Therefore, it is very necessary to design an advanced photo-thermal-electric system with long-term power generation at night and
In 1975, the idea of solar aided fossil-fueled plant was initially put forth. Zoschak et al. [8] integrated solar energy with a fossil-fueled plant, and analyzed the efficiency, cost, and design complexity of seven alternative solar energy integration techniques bsequently, many scholars carried out program design and performance
A new solar energy and biomass-based distributed energy system using H2O/CO2 hybrid gasification is proposed, and their complementarity to enhance the system''s energy efficiency is investigated
as the power generation of solar parabolic trough and solar energy tower [9]. But for the independent solar thermal power generation system, both the high initial investment and lower thermal performance are major obstacles to its development [10]. However, the solar energy-aided power generation system can integrate the
In the present study, a multigeneration system using corn stalk as biomass and solar energy at specific thermodynamical conditions by hydrothermal gasification method from zero to the maximum temperature (1000 °C) for hydrogen and power production is designated and analyzed. Thermal performance analysis is done by availing energy and exergy
A medium-temperature solar thermal power system and its efficiency optimisation. Appl Therm Eng (2002) Performance analysis and techno-economic evaluation of 300 MW solar-assisted power generation system in the whole operation conditions. Applied Energy, Volume 264, 2020, Article 114744.
Given that the solar thermal power generation system and the PCP system both use the Rankine cycle for power generation, there is significant potential for integrating solar thermal energy with PCP plants. Performance enhancement of a solar-assisted pulverized coal power system by integrating a supercritical CO2 cycle. Renew. Energy, 219
In this paper a new idea, i.e., solar aided power generation (SAPG) is proposed. The new solar aided concept for the conventional coal-fired power stations, i.e., integrating solar (thermal) energy into conventional power station cycles has the potential to make the conventional coal-fired power station be able to generate green electricity.
Downloadable (with restrictions)! In this paper, a novel tower solar aided coal-fired power generation (TSACPG) system with double reheat ultra-supercritical boiler is proposed. Part of the steam at the primary reheater inlet of the boiler is heated by tower solar collector and returned to the primary reheater according to the principle of energy grade matching.
A novel technical route of solar-biomass assisted TPV system for power generation is proposed. which achieves renewable energy driven and overcomes the disadvantage of solar instability. (2) A thermal-balance model is constructed for parametrical analysis of the new system. (3) The synergistic effects of key parameters on TPV system are
Besides photovoltaic-thermal solar-assisted heat pump (PVT-SAHP) system represents a very competitive solution, it is also one of the most suitable to meet the nearly-Zero Energy Building (nZEB) standards both in heating-dominated climates [20, 21, 22] and in temperate regions, characterized by heating and cooling demand 23, [24].
For power generation, they utilized a Rankine cycle. Ozturk and Dincer [29] performed analyses for solar tower assisted poly-generation systems with several outputs. The system mainly consisted of a solar-assisted coal gasification system and power generation. In addition, a hydrogen and oxygen production system was integrated into the system.
In addition, the solar aided system can also eliminate the variability in power output when the power is generated by other cycles heated by solar energy alone. The concept of the solar aided power system is really a superior energy system and is a new approach for solar energy power generation.
The solar aided power generation (SAPG) concept has technically been derived to use the strong points of the two technologies (traditional regenerative Rankine cycle with relatively higher efficiency and solar heating at relatively low temperature range).
Solar thermal is another way to use solar energy to generate power. Many attempts to establish solar (solo) thermal power stations have been practiced all over the world. Although there are some advantages in solo solar thermal power systems, the efficiencies and costs of these systems are not so attractive.
So the increased solar radiation can supply the increased energy to meet the increased power demand. In addition, the solar aided system can also eliminate the variability in power output when the power is generated by other cycles heated by solar energy alone.
The new solar aided concept for the conventional coal-fired power stations, i.e., integrating solar (thermal) energy into conventional power station cycles has the potential to make the conventional coal-fired power station be able to generate green electricity.
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