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1)  collector [英][kə'lektə(r)]  [美][kə'lɛktɚ]
集热棚
1.
Different mathematical models of flow and heat transfer for the the collector, the chimney and the energy storage layer were developed.
该文分别建立了集热棚、烟囱和蓄热层的流动与传热数学模型。
2.
The experimental results show that the temperature distributions inside the collector and the effects of seasons on the heat transfer and flow characteristic of system show great agreement with the analysis,while the temperature decrease significantly inside the chimney as the chimney is very thin whic.
实验结果表明:集热棚内温度分布和季节对系统传热与流动特性的影响符合理论分析结果,而由于烟囱较薄,散热较高,在烟囱内的温度降低显著。
3.
The simulation results show that,by optimizing the local geometric dimensions between the collector outlet and the chimney inlet,the local velocity at this place increases by 14%,t.
计算结果表明:通过对发电系统集热棚出口和烟囱进口的局部流道进行优化,使烟囱进口处局部流速增大约14%,温度场更加均匀,相对压力减小约50%,提高了系统做功能力和能量转换效率,同时减少系统能量损失。
2)  heat collector
集热棚
1.
By using thermodynamics method,the theoretical and numerical models are established for energy transfer of hot air through heat collector,solar chimney and wind turbine in solar chimney electricity generation system.
利用热力学方法建立太阳能烟囱发电系统中集热棚、烟囱及风力透平的热气流能量转换过程的理论模型及求解方法。
2.
The large mass flow rate of air through the chimney may be the main factor of energy loss in the system,while the canopy of heat collector may also result in large energy loss.
对MW级太阳能热气流发电系统进行的二维稳态数值模拟计算结果表明:太阳辐射和透平压降对系统输出功率以及系统出口参数的影响均非常显著;当太阳辐射高于400W/m2、透平压降高于300Pa时,系统输出功率可达1MW以上;大流量的流体流出烟囱是造成系统能量损失的主要因素,集热棚顶棚也会引起较高的能量损失。
3)  central precipitation plastic warm tent
集水暖棚
1.
Utilization of rainwaterresources and disign of central precipitation plastic warm tent in arid area;
干旱区雨水资源的利用和集水暖棚的设计
4)  thermal insulation of roofing
顶棚隔热
5)  preheating by warm shed
暖棚预热
6)  reheater ceiling
再热器顶棚
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