2) combined refrigerating with multi-energy source
多能源联合制冷
3) Multi-heat-source refrigeration cycle
多热源制冷循环
4) cold source
冷源
1.
Analysis of choosing cold source form in dedicated outdoor air system;
独立新风系统冷源方式的选择分析
2.
Energy saving operating mode for cold source of central air conditioning systems;
集中空调冷源系统的节能运行研究
3.
As a example of a residential district,analysis of the economical efficiency of different modes of district cooling systems is carried on in initial investment and operation cost in order to supply reference to the correct choosing of cold source of distrct cooling system.
根据冷源的不同居住区实行区域供冷可分为冷电分产和热电冷联产。
5) cooling source
冷源
1.
The feasibility of using geothermal water, underground water, geothermal energy (thermal energy of soil), solar energy, electric boiler and gas-fired boiler as heat and cooling sources for radiant heating and cooling system is discussed.
探讨了以地热水、地下水、地热(土壤热)、太阳能、电锅炉、燃气锅炉作为辐射供暖、供冷系统的热源或冷源的可行性。
2.
By review and inspection for a large shopping plaza cooling source,the result shows that district cooling source is more conducive to energy conservation in large-scale shopping plaza with diversified commercial formats and different formats business hours,correspondingly,higher requirements for the air-conditioner system design and operation management were put forward.
通过对某大型购物广场冷源设计回顾与调研,并经过计算与分析,提出了对于营业区间较多及营业时间不一致的大型购物广场采用集中冷源更有利于节能,相应的,对于空调系统设计及运行管理也提出了更高要求。
6) multiple sources
多源
1.
A theoretical model for behavior of trace elements and stable isotopes in geochemical systems with multiple sources and multiple sinks;
稳定同位素和微量元素在多源多汇体系中地球化学行为的理论模拟
2.
The Backward Forward method is used to perform a radial load flow, the breakpoint current compensation method is used for ring configured systems and the PV nodes current compensation method is used for multiple sources.
该方法从回推/前推算法出发,利用解环点处电流补偿技术处理弱环网运行状态,采用PV节点电流补偿技术解决系统多源问题,最终得到舰船电力系统潮流统一计算流程。
补充资料:自动冷镦机、多工位螺栓自动冷镦机
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主要参数内容 | 国际先进 | 国内先进 | 国内一般 | 国内落后 | 评定方法及说明 | ||
(一)加工精度 | 参照GB9166-88、JB/T3053-91 | ||||||
1、冲头夹持器模孔中心线对夹持器后支承面的垂直度(mm) 在100长度上 | 0.008 | 0.01 | 0.015 | >0.015 | |||
2、凹模座模孔中心线对凹模后座支承面的垂直度(mm) 在100长度上 | 0.008 | 0.01 | 0.015 | >0.015 | |||
3、冲头夹持器模孔中心线对滑块行程的平行度(mm) 在100行程上 | 0.016 | 0.02 | 0.02 | >0.02 | |||
4、滑块行程对机身上与凹模座贴合的垂直面的垂直度(mm) 在100行程上 | 0.016 | 0.02 | 0.02 | >0.02 | |||
5、工件头部对工件杆部中心线的偏移量(mm) | <0.20 | 0.20~0.25 | 0.25~0.30 | >0.30 | |||
(二)生产率(件/分) | |||||||
20mm | >80 | 70 | 65 | <65 | |||
30mm | >60 | 50 | 45 | <45 |
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条