cooling water capacity 中文意思是什麼

cooling water capacity 解釋
冷卻水容量
  • cooling : n. ,adj. 冷卻(的)。
  • water : n 1 水;雨水;露;〈常作 pl 〉 礦泉,溫泉;藥水。2 〈常 pl 〉水體;水域;水道;海;湖;河;海域;...
  • capacity : n 1 包容力,吸收力,收容力。2 容積,容量;【電學】電容,負載量。3 能力,才幹,本領;性能,機能。4...
  1. Takes several energy saving measures for air conditioning system, nick a large capacity centrifugal chillers working with variable frequency nil capacity chillers, variable frequency and variable flow control on secondary pump water systems, cooling tower for four - pipe water system in winter, fan - coil unit for commercial peripheral zones aid all - air systems for interior zones, variable frequency control on supply and exhaust air fain, enthalpy control on fresh air cooling in winter and intermediate season

    採用了多項空調節能措施:大冷量離心冷水機組搭配變頻小冷量機組,二次泵變頻變流量空調水系統,四管制風機盤管冬季用冷卻塔換冷供冷設計,商業外區風機盤管、內區全空氣空調系統,送風機、排風機變頻控制,過渡季、冬季利用室外新風通風降溫的焓值控制設計。
  2. Discuses doas ' demand to fresh air humidity ratio and model by rotary wheel removing moisture load, and analyses its scheme and energy consumption of dons by rotary wheel removing moisture load based on solar energy regeneration, and result shows a 30 % energy saving comparing to cooling dehumidification, and it can supply cooling capacity freely when using directly underground water or cooling tower supplying cooling capacity during transition season periods

    討論了獨立新風系統對新風送風含濕量的要求和除濕轉輪承擔系統濕負荷的方案,分析了基於太陽能再生的轉輪除濕獨立新風系統空氣處理過程及能耗,結果顯示與直接冷卻除濕的獨立新風系統相比節能30 % ,在直接利用地下水供冷或在過渡季節使用冷卻塔供冷的情況下則可以達到免費供冷的目的。
  3. Nominal cooling capacity conditions : chilled water in 12, out7, cooling water in 30, out35

    冷量是依據冰水入口溫度12 ,出口溫度7 ;冷卻水進口溫度30 ,出口溫度35計算得出。
  4. Automatic control system includes the auto - temperature control, auto anti - freezing control, auto - defrost control, anti - overload protection, voltage - over range protection, diagnose, display systems. the cooling capacity varies with the changes of the environment temperature, flowing out temperature of the cooling water

    電腦系統應設置自動溫度控制、自動防凍控制、自動除霜控制,熱過載、缺相、壓縮機高低壓保護,故障監測、顯示和保護等相應的控制和保護措施。
  5. Cooling capacity increases with the raising of the flowing out temperature, and decreases with the raising up of the air temperature. the energy consumption increases with the increasing of the temperature of the water flowing out of the evaporator, and the environment air temperature

    製冷量是隨冷水出水溫度的增加而增加,並隨環境進風溫度的增加而減少,機組的功耗是隨冷水的出水溫度的增加而增加,並隨環境溫度的增加而增加。
  6. We are also reviewing the capacity of water supply infrastructure in other areas. if the additional demand can be met, we will allow buildings in more areas to use fresh water cooling towers

    我們會逐步檢討其他地區供水設施的容量,如發現供水容量足以應付這方面的額外需求,便會容許更多地區的樓宇使用淡水冷卻塔。
  7. Moreover, the experiment result shows that the temperature of the supply water is an important factor influencing the hearing or cooling capacity of the radiant floor. through the survey of the gshp - radiant floor system in summer and winter, this paper lays emphasis on the performance test of this united system and the analysis of the condense of the cooling floor surface

    文中通過冬夏兩季地源熱泵-輻射地板聯供系統長期運行工況的測試,對地源熱泵輻射地板聯供系統的供冷熱性能及地板供冷的表面結露等問題進行了定性分析,最後用一工程實踐對系統的實用性進行驗證。
  8. Respective simulation of the liquid cooling system and the circulatory system of cooling fluid, which mainly concerns the simulation model of the four major components in the refrigerating system and the water pumps and heat exchangers in the cooling circulatory system. experimental research of the assembled system of liquid cooling system, which yields the system perform parameters of refrigerating capacity and resistance loss in different working conditions. collection and comparison of the experimental data got from simulation and experimental research, which proves simulation and the experiment result are well tallying, hereby, testifies the emulational veracity of the cooling system

    主要對製冷系統中四大部件和冷卻液循環系統中的水泵、換熱器進行了數學建模;利用組裝的液冷源系統進行實驗研究,得到不同的工況下系統的製冷量、阻力損失等系統性能參數;對模擬和實驗研究中得到的大量實驗數據進行匯總比較,發現模擬和實驗結果吻合較好,驗證了液冷源系統模擬的準確性。
  9. Nominal cooling capacity conditions : chilled water in 12, out7 ; entering db 35, wb 24

    冷量是依據冰水入口溫度12 ,出口溫度7 ;環境干球球溫度35 ,濕球溫度24計算得出。
  10. Nominal cooling capacity conditions : chilled water in 12, out 7 ; entering air db 35, wb 24

    冷量系依據冰水入口溫度12 ,出口溫度7 ;入口空氣干球溫度35 ,濕球溫度24計算得出。
  11. Note : 1. nominal cooling capacity conditions : chilled water in 12, out 7 ; entering air db 35, wb 24

    備注: 1 .冷量系依據冰水入口溫度12 ,出口溫度7 ;入口空氣干球溫度35 ,濕球溫度24計算得出。
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