Numerical Simulation for Next Generation Thermal Power Plants
暫譯: 下一代熱能發電廠的數值模擬
Alobaid, Falah
- 出版商: Springer
- 出版日期: 2019-01-30
- 售價: $5,380
- 貴賓價: 9.5 折 $5,111
- 語言: 英文
- 頁數: 431
- 裝訂: Quality Paper - also called trade paper
- ISBN: 3030094375
- ISBN-13: 9783030094379
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商品描述
The book provides highly specialized researchers and practitioners with a major contribution to mathematical models' developments for energy systems. First, dynamic process simulation models based on mixture flow and two-fluid models are developed for combined-cycle power plants, pulverised coal-fired power plants, concentrated solar power plant and municipal waste incineration. Operation data, obtained from different power stations, are used to investigate the capability of dynamic models to predict the behaviour of real processes and to analyse the influence of modeling assumptions on simulation results. Then, a computational fluid dynamics (CFD) simulation programme, so-called DEMEST, is developed. Here, the fluid-solid, particle-particle and particle-wall interactions are modeled by tracking all individual particles. To this purpose, the deterministic Euler-Lagrange/Discrete Element Method (DEM) is applied and further improved. An emphasis is given to the determination of inter-phase values, such as volumetric void fraction, momentum and heat transfers, using a new procedure known as the offset-method and to the particle-grid method allowing the refinement of the grid resolution independently from particle size. Model validation is described in detail. Moreover, thermochemical reaction models for solid fuel combustion are developed based on quasi-single-phase, two-fluid and Euler-Lagrange/MP-PIC models. Measurements obtained from actual power plants are used for validation and comparison of the developed numerical models.
商品描述(中文翻譯)
本書為高度專業的研究人員和實務工作者提供了對能源系統數學模型發展的重要貢獻。首先,基於混合流和雙流體模型的動態過程模擬模型被開發用於聯合循環發電廠、粉煤發電廠、集中式太陽能發電廠和市政廢物焚燒廠。從不同發電站獲得的運行數據被用來研究動態模型預測實際過程行為的能力,以及分析建模假設對模擬結果的影響。接著,開發了一個計算流體力學(CFD)模擬程序,稱為DEMEST。在這裡,流體-固體、顆粒-顆粒和顆粒-壁面之間的相互作用是通過追蹤所有單獨顆粒來建模的。為此,應用了確定性歐拉-拉格朗日/離散元方法(DEM)並進一步改進。特別強調了使用一種稱為偏移法的新程序來確定相間值,如體積空隙率、動量和熱傳遞,以及顆粒-網格方法,允許獨立於顆粒大小的網格解析度細化。模型驗證的過程被詳細描述。此外,基於準單相、雙流體和歐拉-拉格朗日/MP-PIC模型,開發了固體燃料燃燒的熱化學反應模型。從實際發電廠獲得的測量數據被用於驗證和比較所開發的數值模型。