trombe
- n.特龙布
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Effect of advanced Trombe walls on indoor environment moisture control
被动式太阳能集热蓄热墙对室内湿度调节作用的研究
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Analysis on the temperature field of Trombe wall
特朗勃壁温度场分析
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Experimental study of different operation strategies of Trombe wall for summer cooling in Dalian
大连地区特隆布墙夏季不同降温方式的实验研究
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This paper shows a new solar house design with TIM an improved Trombe wall .
对一种新型带有透明蜂窝储能墙式太阳房进行了模拟计算。
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The physical model is similar to Trombe wall .
模型的物理概念和Trombe墙相似。
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Ventilation modes of an advanced Trombe wall for passive cooling under marine climate
海洋性气候条件下新型特隆布墙被动降温的通风模式研究
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The Study on Thermal Performance of Trombe Wall with Shading Device in the Air-gap
带内置卷帘特朗贝墙的热性能研究
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Another innovation , is the " Trombe Wall " hybrid solar-heating system .
另一个发明是特兰勃墙,混合型太阳能加热系统。
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Natural convection boundary-layer flow in a Trombe wall channel
特隆勃墙通道内自然对流边界层流动
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Based on the experimental study , it also designed a wonderful semiautomatic shading device for Trombe wall .
并基于实验研究,设计了一套较为优化的应用于被动式太阳能建筑的半自动卷帘机构。
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Prediction of the mean room temperature of a compound passive solar house and collecting efficiency of Trombe walls
被动式太阳房冬季平均室温的预测及特朗勃墙的集热效率
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Solar collecting performance of Trombe wall has important effect on that of Trombe passive solar house .
特朗贝墙体的集热性能对特朗贝墙式被动式太阳能建筑的热性能具有重要影响。
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Experimental study of the shading device 's thermal performance of the air-gap of the Trombe wall during the winter
冬季特朗贝墙内置卷帘对墙体热性能的影响
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Integrating solar chimneys , Trombe walls and solar air collectors with bioclimatic buildings can lead to good results .
将太阳能烟囱、Trombe墙以及太阳能空气集热器等构件与生态建筑一体化设计安装能够取得较好的效果。
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In order to popularize the application of Trombe wall , especially use it in the city residential buildings , it must solve the two " over - " problems .
若要进一步推广特朗贝墙体的使用,并尽可能地将其应用到城市集中住宅中,必须解决好这两个问题。
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In Trombe solar chimney system , changing the second floor inlet obliquity could decrease ventilation rate of each layer , which would be of help to improve air flow states .
改变Trombe式太阳能烟囱二层入口倾角后烟囱各层的通风量未增大,但改善了烟囱内气流组织状况。
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Natural ventilating system completed by Trombe wall and solar energy chimney adopted in the pleasant summer , the economic height of solar chimney in construction is 10m .
在室外温度适宜的过渡季节采用Trombe墙和太阳能烟囱复合的自然通风系统,建筑太阳能烟囱的经济高度为10m。
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The comparison results with the reference room show that applying this strategy can not only solve over-heating problems in summer for Trombe wall , but also passively cool the room .
与对比房的比较结果表明采用该方案不仅有效解决了特隆布墙夏季过热问题,而且还可以对室内进行一定程度的被动式降温。
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For the weakness of actual Trombe wall that slows indoor temperature rise in the morning , an improved Trombe wall with honeycomb structure was built based on the comparable hot-box .
针对现行的带Trombe墙体太阳房早晨室内升温速度较慢的缺点,利用可对比热箱,建造了带有新型竖置透明蜂窝的改进型Trombe墙体。
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By means of such program , the thermal performance of a unique " Trombe Wall " has been studied . It gives further a method for determining the optimum value of the insulation thickness of structures and the main geometry of collectors .
在计算机模拟的基础上,研究了集热墙单体热工性能,并提出了组合式被动房的围护结构保温层厚度及集热墙主要结构参数最佳化的方法。
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Results showed that , for Trombe wall solar chimney , there is an optimum ratio of chimney gap-to height to achieve a maximum airflow rate , which is dependent on the inlet design and independent of solar radiation .
结果表明,对于Trombe墙体式太阳能烟囱,存在可以获得最大通风量的最佳空气通道宽度与高度的比值,这个最佳比值是依赖于太阳能烟囱进口的设计,而与太阳辐射强度无关。
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A novel Trombe wall with PV cells is presented in this paper . A two-dimensional model of PV glass panel and the model of the PV-Trombe system are established . The temperature distribution , electrical performance and heat gain of the PV-Trombe wall system are obtained respectively .
提出了带有PV的新型Trombe墙结构,建立了二维的光伏玻璃板以及PV-Trombe墙系统的数理模型,获得了系统的温度场、太阳电池的电性能和室内得热。