熱損 的英文怎麼說

中文拼音 [sǔn]
熱損 英文
heat waste
  • : Ⅰ動詞1 (減少) decrease; lose 2 (損害) harm; damage 3 [方言] (用尖刻的話挖苦人) speak sarcas...
  1. Standard test method for loss on heating of oil and asphaltic compounds

    油及瀝青混合物加熱損失標準試驗方法
  2. Conduction loss bolometer

    熱損耗測輻射
  3. Standard test methods for carbon black - heating loss

    碳黑加熱損耗的標準測試方法
  4. Heat losses from the reservoir by heat conduction cannot be prevented.

    儲通過傳導的熱損耗是無法阻擋的。
  5. Thermal damage in insb detector induced by cw laser

    型探測器的熱損
  6. Aimed at the high temperature at furnace roof and wall, great lost of body heat radiation, poor leading heating ability and long soaking time, the compound ceramic fiber coating is used to hold temperature of furnace roof and wall, make the heating loss dropped, shorten soaking time, improve heating ability and reduce evergy consumption

    摘要針對環形爐爐頂爐墻表面溫度高、爐體散熱損失大、導致加能力低、待溫時間偏長的問題,選用了復合陶瓷纖維保溫塗料,使爐體散熱損失減少,待溫時間縮短,加能力提高,且能耗降低。
  7. Determination of loss in weight of montan wax

    褐煤蠟加熱損失量測定方法
  8. Abstract : through analysis on the character and use of geothermal water, expatiate the mechanism of iron removal from geothermal water, adopt the iron removal and manganese removal technology of aeration full oxygen and savageness manganese grit osculate oxidation, and control the intention and time of inverse flush, these make the treated geothermal water reach the standard of iron and manganese chroma, moreover, it won ' t increase bad component or decrease good component it is a perfect iron removal and manganese removal technology that can save installation investment, need low operating cost and reduce the heat losing

    文摘:通過對地水的特點及其用途的分析,闡述了地水除鐵除錳機理,採用曝氣充氧、天然錳砂接觸氧化的除鐵除錳工藝,並適當控制反沖洗強度和時間,使處理后地水含鐵、錳濃度達到標準,且不增加有害成分或減少有益成分.設備投資省、運行成本低,熱損失小,是一種理想的地水除鐵工藝
  9. The reheat coil adjusts supply air temperature to offset building heat losses due to transmission.

    盤管調節送風溫度,以補償因傳造成的建築熱損失。
  10. A mechanism study on heat - injured s180 sarcoma cells

    180肉瘤細胞熱損傷的機制研究
  11. This paper introduces that the diffuse heat heating furnace is reduced the consumption of fuel is debased and the preferable effect is got, using the multicrystal mullite fibrous stickup lump to heat preservation in heating furnace wall

    摘要採用多晶莫來石纖維貼面塊對加爐爐內壁保溫,減少了爐體的散熱損失,降低了爐子燃耗,取得了較好的效果。
  12. Energy consumption of heating rooms will increase when air exchange rate become large. because the mechanisms of heating methods used currently, such as radiator heating, ceiling heating and warm - air heating, are different from each - other, the indoor thermal environment is not the same when each one of them employed for room heating. for enhancing energy efficiency of heating rooms, indoor thermal comfort and energy saving effects should be investigated when natural ventilation is used to make a good air quality indoors

    房間換氣次數的增加勢必導致供暖房間能耗加大,頂棚輻射、散器和風等三種採暖方式由於供暖機理不同,形成的室內環境特徵不同,通風換氣時產生的通風熱損失也有所區別,為了提高大換氣量房間的供暖節能效果,必須對不同供暖方式在大換氣量情況下的舒適性與節能效應進行研究。
  13. In the third chapter of this dissertation, based on the physical and chemical properties of hydrogen and the combustion characteristics of hydrogen, the quasi - dimension combustion calculation model of hydrogen ? fueled engine is set up through analyzing the characteristics of turbulence flame and chemical reaction kinetic of hydrogen ? air mixture. the model includes the dual ? area thermodynamics sub - model, quasi - dimensional turbulent entrainment combustion sub ? model, turbulence flame promulgating sub ? model, hydrogen - air mixture chemical kinetic sub - model and loss of heat transfer sub - model and so on

    本文從氫燃料的物化特性和燃燒特徵著手,通過分析氫空氣混合氣燃燒的湍流火焰結構和燃燒化學反應動力學,基於雙區燃燒模型,建立了包括雙區力學、準維湍流卷吸燃燒、湍流火焰傳播速度、氫空氣混合氣燃燒化學反應動力學以及傳熱損失等模塊的燃燒模型,並給出了相應的計算方法。
  14. Electromotor joins with high efficiency selected water pump, scm ( single chip micyoco ) control system commands water pump according to cooling water temperature which substitutes traditional strap - driving mechanism pump and forms tael - level intellectualized control cooling system combining with electromotion control of cooling fan. consequently it realizes that water pump and fan autoregulate with engine working status and assures t hat cooling water temperature keeps in the best range all the time and advances the reliability of engine working and realizes exact control of cooling water temperature in deed

    選用高效率水泵與電機聯接,改由單片機控制系統根據冷卻水溫控制水泵的工作,代替傳統的皮帶帶動的機械水泵,結合冷卻風扇的電動控制形成兩級智能化控制的冷卻系統,從而,實現了水泵和風扇轉速隨發動機工況變化的自動調節,真正實現了冷卻水溫的精確控制,保證了冷卻水溫始終保持在最佳范圍內,大量減少傳熱損失降低油耗,並提高了發動機工作的可靠性。
  15. 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

    對鍋爐本體進行了燃料燃燒計算、爐膛結構力計算、對流受面結構力計算、鍋爐給水加器結構參數設計、煙道阻力計算及鍋爐元件強度校核等;改進了水冷壁布置使換效果更好,減少輻射換熱損失;改進對流段結構,更充分的利用爐膛出口煙氣余,提高效率;並且進行了煙氣阻力計算、效率計算和能量平衡測試,對改進后的稠油燃料和改進前進行了對比,燃燒狀況和效率有明顯改善。
  16. It is found that the climatological mean of wind speed and air - sea humidity difference are both large, the variation of wind speed are almost in phase with air - sea humidity difference, yielding much larger or smaller latent heat flux. so the ocean release the most latent heat in its own winter of the two hemispheres when both wind speed and air - sea humidity difference are large

    發現在南北兩信風區,風速和海氣濕度差的變化幾乎是同位相的,平均背景風速和海氣濕度差都較大,他們互相加強彼此對潛通量變化的貢獻,所以海洋潛熱損失最大是發生信風南北兩區的各自風速和海氣濕度差都較大的冬季。
  17. Thermal performance of buildings - transmission heat loss coefficient - calculation method

    建築物性能.傳熱損失系數.計算方法
  18. So, we need to study other novel chopper structure for loosening the losses in switching and developing the efficiency and reliability

    因此,有必要採用新型的斬波器來降低斬波器熱損耗,提高系統的效率和工作的可靠性。
  19. Between glass - cover board and endothermic board, honeycomb is placed, which can eliminate heat loss caused by air natural convection and greatly reduce heat loss caused by radiation, and hence a better transfer heat efficiency

    而在透明玻璃蓋板和吸板之間放置蜂窩結構,基本上能消除吸收表面和蓋板之間的空氣自然對流熱損失,並可大大降低輻射失,顯著提高集器的轉換效率。
  20. In - situ measurements of heat loss through thermal insulation of equipments and pipes - surface temperature method

    設備及管道絕層表面熱損失現場測定表面溫度法
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