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跪求翻譯題目及一段摘要譯為英文的 題目:“相變材料蓄能砌塊中孔通風(fēng)的熱響應(yīng)實(shí)驗(yàn)研究” 摘要:“以南京地區(qū)為例,實(shí)驗(yàn)研究與分析了相變通風(fēng)蓄能砌體南外墻在綜合溫度下,不同構(gòu)造時,夜間通風(fēng)風(fēng)速變化對熱響應(yīng)的影響。結(jié)果表明:相變材料置于空心砌塊內(nèi)側(cè)時優(yōu)于外置,內(nèi)置時墻體內(nèi)表面溫度波最大振幅僅為外置時的58.3%;構(gòu)造 A 與構(gòu)造 B 的最佳流速均為 2m/s,且墻體內(nèi)表面溫度波最小振幅以及最大延遲系數(shù)分別為 1.74 ◦ C、8h 和3.72 ◦ C、7h,較之不通風(fēng),流入室內(nèi)熱量分別減少了 38.2% 和 29.3%,當(dāng)量熱阻分別增大了 115.8% 和 88.6%。” 多謝! |
木蟲 (正式寫手)
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Taking Nanjing area for example, the effect of variation of night ventilation velocity on thermal response have been investigated and analyzed when the south wall of storage block of phase change materials was in sol-air temperature and different structure. It showed that phase change materials placing in hollow block performed better than that outside. Meanwhile, the maximum amplitude of surface temperature wave in the wall of the former was mere 58.3% of that outside. And optimal flow velocity of both A and B was 2m/s. Meanwhile, the minimum amplitude of surface temperature wave in the wall was 1.74 ◦ C and 3.72 ◦ C as well as the retardation coefficient was 8h and 7h. Compared to badly ventilated, influx heat indoor reduced 38.2% and 29.3% while equivalent heat resistance increased 115.8% and 88.6%。 五個金幣太少了,下次這樣估計很少有人應(yīng)助 ![]() ![]() |

木蟲 (正式寫手)

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