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1)  equal bidding price method
等报价法
1.
The equal bidding price method or the equal incremental equation m ethod is the principal m ethod for solving the generation bidding problem .
等报价法 (或称等微增率法 )是发电竞价的基本算法。
2.
The equal bidding price method is the principal method for solving the generation bidding problem.
等报价法是发电竞价的基本算法。
2)  equal price method
等报价方法
1.
In the view of general equilibrium theory in electricity market, by describing the relations between the general equilibrium theory and decision model of electricity market, the competitive equilibrium model of electricity market is established with two commodities (the active power and reactive power), and solved by equal price method.
从电力市场的一般均衡理论出发,通过描述电力市场决策模型与一般均衡模型之间存在的必然联系,建立考虑无功功率和有功功率2种商品的电力市场竞争性均衡模型,并利用等报价方法对此均衡模型进行求解。
2.
The electricity market equilibrium is simulated as three different models that are solved by equal price method combined the generation scheduling problem with the network losses allocation.
并给出网损分别由发电方、用户和双方共同承担的电力市场均衡模型,以等报价方法在制定发 电计划的同时进行网损分摊;最后以IEEE 30节点系统为例对所提出的方法进行了验证,证明这 种方法是非常合理的。
3.
The equal price method based on the equilibrium theory in market can commendably be to combine the economic rule in market with the practice operation in power system, and is effective to solve competition problem in the power market.
等报价方法是基于市场均衡理论的一种交易优化算法 ,能很好地将市场中的经济规律同电力系统的实际运行结合起来 ,在电力市场中可以有效地解决发电机组的竞价问题。
3)  Equal Price Principle
等报价竞标法
4)  Equal pricing method
等报价
5)  equal bidding price criteria
等报价准则
1.
Its principle is the equal bidding price criteria in the case of clearing based on the unified m arginal cost,while it is the equal incremental cost criteria for generators in the case of clearing based on the practical generators bidding.
提出了全网统一边际成本结算时竞价原理是等报价准则 ,按发电机组实际报价结算时竞价原理是发电成本等微增率准则。
6)  offer method
报价法
1.
Necessity of implementing bill of quantities offer method for railway projects;
铁路工程实行工程量清单报价法的必要性
补充资料:无柄液滴法、躺滴法、座滴法等
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性质:又称无柄液滴法、躺滴法、座滴法等。根据液面外形求算表(界)面张力的一种方法。当待测液液滴稳定地停在水平固体表面上,其外形与液体表面张力γ有关。根据巴什弗思–亚当斯(Bashforth-Adams)方程可有以下关系式ρ1和ρ2分别为待测液体及液滴外介质的密度,g为重力加速度,β为形状因子,b为大小因子。当液体与固体表面接触角大于90°时可根据测出的液滴的赤道半径及其与液滴顶点的垂直距离数值查表得出相应的β及b值,从而算出表面张力γ。本法简便,适用于吸附平衡时间长的体系和低表面张力的测定;也能用于测定界面张力及熔融金属的表(界)面张力。

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