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冷凝温度

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The cycle performance and discharge pressure of air source heat pump were investigated by varying the outdoor temperature and indoor air intake of the condenser.

通过改变室外侧环境温度和进入冷凝器的风量研究R142b在空气源热泵机组中的循环性能和排气压力。

This series can be used on systems with operating pressures up to 250psi and will drain condensate at saturation temperature.

这个系列可以用在工作压力高达250psi的系统上,并且能够在饱和温度下排放冷凝物。

The drop of bed temperature close to steam condensation point, the reduce of absorbent grain size and the charging rate, and the increase of absorbent surface area and the residence time were helpful for absorption.

降低床层温度,接近蒸汽冷凝点温度;减小粒径,增大吸附剂单位比表面积;减小进料速度,增大停留时间都将有利于吸附操作。

Condensed water has a high temperature, but it is soft water, you can make good use of.

冷凝水具有很高的温度,而且又是软水,可以很好地利用。

The concentration of volatile compounds and the COD value of condensed water were also influenced by the hydrolysis and decarboxylation in this process.

实验结果表明,污泥在干燥过程中会释放出氨气、挥发性有机酸和烷烃等挥发性有机污染物,且升高温度能够降低干燥机出料含水率,并能够通过影响水解及脱羧反应从而增加干燥过程排放的气体量及冷凝水的COD值。

It also adopts double condenser structure to ensure the lower return air temperature and dew point.

采用双冷凝器结构,确保更低的回风温度及露点。

It adopts the structure of double layer specially-forming insulation board and its thermal losses almost come to zero .

由温度控制的冷凝雾状喷射可增加织物的湿度,或消除织物的过热,提高织物的得色率。

This paper presents a mathematical model for describing the variations of the condenser temperature and pressure with the exhaust steam heat load ,frontal air speed and the inlet air temperature of an .

通过理论分析,建立了空冷凝汽器温度和压力随汽轮机排汽热负荷、凝汽器迎风面风速以及进口空气温度变化的理论模型。

The effective heat-transfer temperature difference of every effect of multi-effect evaporation subsystem and the preheat temperature rise Δt_(p,j of every level of multi-level preheat subsystem of the design model were distributed by equal heating area, equal heat-transfer temperature difference, and free proration methods.

设计型模型对多效蒸发子系统各效有效传热温差Δt_i的分配和多级预热子系统各级预热温升Δt_的分配分别采用等面积法、等温差法、自由配比法等进行分配并采用矩阵法结合迭代法进行设计模拟计算,其中自由配比法巧妙地将具有复杂约束条件的决策变量Δt_i和Δt_转化为取值0~1的中间决策变量τ_i、τ_,为Δt_i和Δt_的自由搜索进而为优化设计提供了一个简便的方法;在常规设计模拟计算的基础上,建立了复杂多效蒸发系统优化设计模型,该模型以系统年总费用最小为优化目标,以生蒸汽温度T_0、冷凝器中二次蒸汽温度T_K、蒸发温差配比系数τ_i和预热温升配比系数τ_为决策变量,采用遗传算法结合矩阵法求解。

In the condition of keeping F、 K、Na content fixed, To improve slag structure and raise slag melting point and viscosity, MgO content is raised and TiO〓 is added. the main content is as follows:(1) Keeping CaO/SiO〓 fixed, MgO content rises from 10% to 16%, the free running temperature goes up 106℃, the viscosity goe down at bigger than 1425℃, but difference is little; keeping /SiO〓 fixed, MgO content rises from 10% to 16%, the free running temperature rises 87℃, the viscosity rises too; adding TiO〓 to 5%, the free running temperature goes up 98℃, the viscosity rise a little.(2) Powder crystal x ray diffraction and microscopic analysis shows: increasing MgO content, the cuspidine will decreace or even disappear, the monticellite goes up with MgO content rising, keeping /SiO〓 fixed, Akermanite content goes up, for high melting point minerals appear or go up, the free running temperature of the slag bearing F is raised; Adding TiO〓, high melting point mineral—Perovskite forms, it can making other minerals'crystalling fast, it is the reason that TiO〓 raises the free running temperature of the slag bearing F.

2对测定粘度的冷凝渣所进行的X粉晶衍射及显微分析和鉴定表明,增加MgO含量,渣中枪晶石将减少甚至消失,而钙镁橄榄石则随MgO含量增加而增加,在/SiO〓不变时,黄长石含量也有所增加,高熔点矿物的出现和增加,提高了含氟熔渣的熔化性温度;加入TiO〓熔渣中将形成高熔点矿物-钙钛矿,钙钛矿的形成还促使黄长石的结晶,这是TiO〓提高含氟熔渣熔化性温度的根本原因。

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