余熱發電 的英文怎麼說

中文拼音 [diàn]
余熱發電 英文
power generation by waste heat
  • : Ⅰ動詞(剩下) remain; leave: 9減4 余 5。 nine minus four is five ; four from nine leaves five ; i...
  • : 名詞(頭發) hair
  • : Ⅰ名詞1 (有電荷存在和電荷變化的現象) electricity 2 (電報) telegram; cable Ⅱ動詞1 (觸電) give...
  • 余熱 : afterheat; waste heat
  1. Energy efficiency fund in jointly efforts of unido, alton fund and netherlands government 5. distributing cooling, heating and power combined supply system

    提高常規廠效率技術:研究超聲波乳化燃油節油技術以及燃煤廠汽輪機蒸汽中能回收技術等。
  2. Scientific trash - burning treatment has the advantages of jess land occupied, easy choice of location, less time consumption, obvious decrement, complete innocuity and the remaining heat to be recycled for heating

    摘要科學焚燒處理垃圾法具有佔地少,場地易選擇,時間短,減量化顯著,無害化徹底以及回收等優點。
  3. The feasibility of using the spare quantity of heat exhausted from turbine to generate electricity

    利用火廠汽機排汽余熱發電的可行性研究
  4. Power generated by methane and heat recycling

    沼氣利用
  5. Fuel cells have the following advantages over conventional generating systems : low environmental pollution ; highly efficient power generation ; diversity of fuels ; reusability of exhaust heat ; modularity ; faster installation. recent worldwide clean - air movements have greatly increased the importance of fuel cell development

    和傳統方式相比,燃料具有以下幾個顯著的優點:良好的環境效益;效率高;可用燃料的多樣性;的再利用;安裝簡便可實現模塊化操作運行。
  6. In chapter 5, the principle of molten carbonate fuel cell power system is introduced. the development of the system, such as the improvement of cell components including electrodes and electrolyte, the fuel processing, the heat recovery, the power conditioning and grid interconnection, the control system and the combine generation

    第五章在簡要敘述了熔融碳酸鹽燃料系統原理后,從以下幾個方面對系統的開進行了論證:單體元件(極和解質)性能的提高,燃料的處理,利用,力調節和並網,燃料池/燃氣輪機/汽輪機聯合以及系統控制與優化。
  7. The working parameters ( specific enthalpy, entropy, flux of working fluid, reynolds number, etc. ), the configuration parameters of the main components, such as steam turbine - generator group, evaporator and ehd condenser and system efficiency were calculated on the base of thermodynamics theory

    文中以力學理論為基礎,計算了低溫余熱發電系統的運行參數(比焓、熵、工質流量、雷諾數、管路壓力等)和各主要組件如汽輪機-機組、蒸器和ehd冷凝器的結構參數,並計算了系統的效率。
  8. The experimental models not only can be introduced into low temperature waste - heat power generation, but also can be available in the geothermal, solar and ocean thermal gradient power generation

    該項研究的實驗模型不僅可以利用在低溫余熱發電系統,而且對地、太陽能及海洋溫差均有參考價值。
  9. Sanjac was founded in 1996, has experienced twenty year s in sensor area

    年製造偶鉑阻設計開生產經驗的企業。
  10. Circuit design for low temperature waste heat power generation

    低溫余熱發電路設計
  11. Based on sufficient investigation of relative field at home and abroad, combined with actual state of engineering, aimed at the characteristics of low temperature waste heat power generation, under adequate consideration of economical efficiency, the thermodynamic system models on the base of rankine - cycle, which mainly consisted of evaporator, ehd condenser and steam turbine - generator group with r11 as working fluid, were constructed after comparing the current low temperature waste heat power generation systems

    文中在對國內外相關領域進行了充分調研的基礎上,結合工程實際狀況,針對低溫余熱發電特點,充分考慮經濟性的前提下,對現行的低溫余熱發電系統進行比較,選擇了以具有低沸點的r11為工質,由蒸器、 ehd冷凝器、汽輪機-機組等主要部件組成的有機朗肯循環力系統模型。
  12. Further, waste heat recovery boiler and steam turbine are combined to improve system efficiency, resulting combined cycle generation. main characteristics of this technology are as follows

    為進一步提高系統效率,可利用氣化系統和內燃機產生的,通過鍋爐和蒸汽輪機實現聯合循環
  13. Aimed at recycling source of low temperature waste heat, utilizing renewable energy source and decontaminating atmospheric environment to keep sustainable development of human society, the low temperature waste heat power generation was researched in this paper

    為利用可再生能源和凈化大氣環境,使人類社會得到可持續性展,本文以回收低溫源為目的,開展了低溫余熱發電的研究。
  14. The temperature of the exhaust heat during the process of yielding the oil and the remaining heat in the electricity plant is low, and they are usually been regarded as wasting heat and thrown away, but the temperature of these heat is higher than the temperature of the environment. if we can design the corresponding heat pump device and reclaim this part of heat, the economic benefit is very considerable

    石油生產中的廢溫度低,通常被當作廢扔掉,但這部分量的溫度比環境溫度高許多,設計相應的泵裝置,回收這部分量,經濟效益可觀,本文以石油生產和回收利用為出點,研究泵技術在油田及廠的應用。
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