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质量能量
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  mass energy
    Application of variable mass energy transformation and storage technology in HVAC
    变质量能量转换及储存技术在暖通空调中的应用
短句来源
    As a novel energy storage technology, the variable mass energy transformation and storage (VMETS) technology can complete energy indirect transform and storage. It easily transforms the stored working fluid chemical potential into heat, cold or dehumidifying energy that is necessary in heating, ventilating and air-conditioning (HVAC) engineering to settle power lack on the power-used peak in most areas.
    变质量能量转换及储存技术是一种先进的能量间接转换及储存的蓄能技术,可以较容易的把储存起来的溶液化学势能转换成暖通、空调所需的热能、冷能以及除湿能,从而解决用电高峰时段电力紧缺的问题。
短句来源
    Variable mass energy transformation and storage (VMETS) is a kind of technology by which energy is indirectly transformed and stored. It uses the characteristic of the working fluid chemical potential changing caused by mass variation in a working fluid storage tank to complete the whole processes of energy transformation and storage during the energy charging or discharging.
    变质量能量转换及储存是一种能量间接转换及储存技术,它是利用充、释能过程中工作溶液储罐内质量发生变化所引起的工作溶液化学势能变化来完成能量转换及储存过程。
短句来源
    Establishes the dynamic calculation models for energy charging and discharging process of the variable mass energy transformation and storage (VMETS) system. Analyses the characteristics of energy charging and discharging of the system using LiBr solution as working fluid in an office building in Shanghai. The calculating results show that the VMETS system has high coefficient of performance (4.8) and large energy storage intensity (413.81 MJ/m3).
    建立了变质量能量转换与储存(VMETS)系统充能和释能过程的动态计算模型,结合上海地区一办公楼的空调系统分析计算了采用溴化锂溶液为工质的VMETS系统的充能、释能特性,结果表明该系统有较高的性能系数(4·8)和较大的蓄能密度(413·81MJ/m3)。
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    Firstly, the theory and character of various energy storage technologies were summarized. After comparisons with these technologies, it shows that VMETS is superior to others in dehumidifying of air-conditionings.
    本文首先总结目前已被实际应用或正被研究开发的各种蓄冷技术的原理及特点,并与变质量能量转换及储存技术进行对比分析,证明后者在空调蓄能除湿方面明显优于前者;
短句来源
    As research case, the thermal cycle process of the advanced energy storage system for air-conditioning and heating using aqueous ammonia as working fluid was analyzed and researched by the exergy-balance analysis method.
    本文以采用氨水溶液的变质量能量转换及储存技术的闭式蓄能空调/供热系统为研究对象,运用(火用)平衡方法对系统的热力循环过程进行分析和研究。
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  mass energy
Two resonance states situated at 1.8±0.1 and 2.7±0.1 MeV above the t + n + n decay threshold were obtained in the missing mass energy spectrum of the 5H nucleus.
      
If this force field is turned on linearly in time, the number of created electron-positron pairs does not increase monotonically but in a rather oscillatory way with a universal frequency related to twice the electron's rest mass energy.
      
The design optimization focuses on two principal design objectives, namely stability of force-displacement diagram (FDD) and large unit mass energy dissipation (UMED).
      
Two-dimensional histograms corresponding to a given function and the events simulated by a generator of nucleus-nucleus collisions at the center-of-mass energy √s = 5.5 TeV are analyzed.
      
Photon yields using different isotope projectiles have been compared both at the same center of mass energy and at the same relative velocity.
      
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Variable mass energy transformation and storage (VMETS) is a kind of technology by which energy is indirectly transformed and stored. It uses the characteristic of the working fluid chemical potential changing caused by mass variation in a working fluid storage tank to complete the whole processes of energy transformation and storage during the energy charging or discharging. The stored potential energy can easily be transformed for heating, ventilating and air conditioning. This technology has better energy...

Variable mass energy transformation and storage (VMETS) is a kind of technology by which energy is indirectly transformed and stored. It uses the characteristic of the working fluid chemical potential changing caused by mass variation in a working fluid storage tank to complete the whole processes of energy transformation and storage during the energy charging or discharging. The stored potential energy can easily be transformed for heating, ventilating and air conditioning. This technology has better energy saving and environmental protection effect, simpler storage equipment, higher energy storage density, wider application range etc.

质量能量转换及储存是一种能量间接转换及储存技术,它是利用充、释能过程中工作溶液储罐内质量发生变化所引起的工作溶液化学势能变化来完成能量转换及储存过程。储存的工作溶液化学势能可比较容易地转换成暖通空调所需的热能、冷能、除湿能等。该项技术具有节能、环保、蓄能设备简单、蓄能密度大、应用面广的特点。

Establishes the dynamic calculation models for energy charging and discharging process of the variable mass energy transformation and storage (VMETS) system. Analyses the characteristics of energy charging and discharging of the system using LiBr solution as working fluid in an office building in Shanghai. The calculating results show that the VMETS system has high coefficient of performance (4.8) and large energy storage intensity (413.81 MJ/m3).

建立了变质量能量转换与储存(VMETS)系统充能和释能过程的动态计算模型,结合上海地区一办公楼的空调系统分析计算了采用溴化锂溶液为工质的VMETS系统的充能、释能特性,结果表明该系统有较高的性能系数(4·8)和较大的蓄能密度(413·81MJ/m3)。

The system involves variable mass energy transformation and storage technology and uses LiCl solution as working fluid.Presents the operating principle and flow process of the system.Develops a dynamic model of energy charge and discharge processes.Taking a typical office building with dedicated outdoor air system located at highly humid South China as an example,numerically simulates the system operation modes under the full storage strategy,and finds the variations of operation parameters and operating characteristics...

The system involves variable mass energy transformation and storage technology and uses LiCl solution as working fluid.Presents the operating principle and flow process of the system.Develops a dynamic model of energy charge and discharge processes.Taking a typical office building with dedicated outdoor air system located at highly humid South China as an example,numerically simulates the system operation modes under the full storage strategy,and finds the variations of operation parameters and operating characteristics of the system and operating parameters of the devices with operation time and external conditions.

以采用变质量能量转换及储存技术和氯化锂溶液的开式蓄能除湿空调系统为研究对象,介绍了系统的工作循环和流程,建立了系统充、释能过程动态模型。以我国南方高湿地区具有独立新风系统的办公建筑除湿空调工况为例,对该蓄能系统按全量蓄能策略运行时的工作过程进行了数值模拟,得到了系统运行参数和工作特性及各设备工作特性参数随运行时间和外部条件的变化关系。

 
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