進氣道加熱器 的英文怎麼說

中文拼音 [jìndàojiā]
進氣道加熱器 英文
airscoop heater
  • : 進構詞成分。
  • : Ⅰ名詞1 (氣體) gas 2 (空氣) air 3 (氣息) breath 4 (自然界冷熱陰晴等現象) weather 5 (氣味...
  • : Ⅰ名詞(道路) road; way; route; path 2 (水流通過的途徑) channel; course 3 (方向; 方法; 道理) ...
  • : 名詞1. (器具) implement; utensil; ware 2. (器官) organ 3. (度量; 才能) capacity; talent 4. (姓氏) a surname
  • 氣道 : air flue; air passage
  1. Firstly, simulate flow field of rear smoke channel, plot velocity magnitude and ash concentration distribution in section of entry of heat pipe air preheater, compare with data which were measured in guiyang power station, verify simulation to be reasonable and right. secondly, simulate all kinds of factors which affect flow field ' s uniformity such as length, thickness, location of diffluent board, ash concentration, ash diameter, and so on, find the chiefly factors. thirdly, install guide board in curve channel in rear smoke channel, then simulate its " flow field, plot velocity magnitude and ash concentration distribution

    在此基礎上模擬在冬夏兩季不同情況下,不同流速對管空壁面溫度的影響;然後對影響整個流場分佈的各種因素:包括分流板長度、厚度、偏離中心流位置的偏離度、飛灰濃度、飛灰粒徑等因素行數值模擬;最後提出在分流煙轉彎處裝導流板,並模擬裝導流板后的流場分佈,得到下級空出口、管空口處的斷面速度場分佈、濃度場分佈,以論證裝導流板能達到流場均勻化的作用。
  2. 3. on boiler retrofit, the calculation of fuel burning, the heat calculation of boiler inside structure and convection section, and the design of structure parameter of feed water heat exchanger are made. the flue gas channels " resistance calculation and the boiler strength verifying are also carried out. replacement of water cooling wall improves heat exchanging and decreases loss of heat radiant

    對鍋爐本體行了燃料燃燒計算、爐膛結構力計算、對流受面結構力計算、鍋爐給水結構參數設計、煙阻力計算及鍋爐元件強度校核等;改了水冷壁布置使換效果更好,減少輻射換損失;改對流段結構,更充分的利用爐膛出口煙,提高效率;並且行了煙阻力計算、效率計算和能量平衡測試,對改后的稠油燃料和改行了對比,燃燒狀況和效率有明顯改善。
  3. We can realize the instrument control system and electric control system by using dcs and plc. the control system of reheating furnace is devided torol furnace area plc control system, roll plc control system and reheating furnace dcs control system. the controller of instrument and electric connect to the server of the operater station by the controlnet, by using dcs and plc, the technology of network and fieldbus technology to combine the process control system and process computer, intelligent instruments, drive system to realize the instrument and electric controll in one system

    採用dcs系統plc實現儀控和電控系統,把步爐控制系統分為爐爐區plc控制系統、爐前後輥plc控制系統、爐dcs控制系統等三個子系統,儀表、電傳動用的控制通過同一controlnet控制網與操作站的服務連接,通過採用網路技術和現場總線技術,將控制系統與過程機、現場智能儀表和傳動設備連成一個整體,從而構成儀電一體控制系統。
  4. In order to study the regeneration mechanism of dpf in detail, we still need a mathematical model of the channel unit, which present temperature field and the soot reaction rate of the channel. finally, it points out the influences of various factors to the regeneration process by computing the numerical solution of model under different boundary conditions and geometry parameters, such as the initial temperature, the gas flow rate, the oxygen concentration, the sediment quantity and the wall thickness of the filters, and so on. in this way, the paper provides theoretical guidance for optimization design of the dpf

    首先研究了干凈壁流式過濾體的特性,然後在和燃燒理論的基礎上建立了微粒捕集再生過程的數學模型,並對模型行了數值計算,得到了捕集內部的三維溫度場分佈以及溫度梯度分佈,結果與實驗值吻合較好,驗證了模型的正確性;為了詳細的研究微粒捕集的再生機理,建立了孔單元數學模型,得到了孔內的溫度場分佈和微粒反應速率分佈;最後,通過求解模型在不同邊界條件和不同幾何參數下的數值解,分析了各種因素對再生過程的影響,如過濾體初始溫度、過濾體內流的流動速率、氧濃度、微粒沉積量以及過濾體壁面厚度,為微粒捕集的優化設計提供理論指導。
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