首页> 外文会议>International Conference on Advances in Manufacturing, Materials and Energy Engineering >Decentralized stand-alone Multi Effect Desalination(MED)system using fixed focus type Scheffler concentrator for the remote and arid rural regions of Sultanate of Oman
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Decentralized stand-alone Multi Effect Desalination(MED)system using fixed focus type Scheffler concentrator for the remote and arid rural regions of Sultanate of Oman

机译:使用固定焦点型Scheffler集中器的分散式独立多效脱落(MED)系统为阿曼苏丹国苏丹国遗址和干旱农村地区

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Rising population and industrialization made desalination of prime importance in physically water scarce Sultanate of Oman for fulfilling the gap between the rising demand and supply of fresh water.Almost 80-85% of the installed and planned desalination plants in the Sultanate are based on Combined Cycle Gas Turbine(CCGT)power plants while remaining are standalone which includes about 5-7% of the installed plants for rural arid and dry regions.All the installed and planned desalination plants utilises fossil fuels for their operation and are based on Reverse Osmosis(almost 90-95% of the plants)and Multi Stage Flash technologies.Sultanate of Oman is a tropical country with most of the regions being arid and dry receiving solar energy most abundantly.But the utilisation of solar energy in the country is mostly limited to installations based on photovoltaic systems.Only recently solar thermal Enhanced Oil Recovery plant with 1 GWth power output has been undertaken in the country at Amal oil field.A pilot standalone Multi Effect Desalination(MED)plant using fixed focus type Scheffler concentrator for remote and arid rural regions of country has been discussed in this paper to address this gap.This pilot plant has been designed for producing 100 kg/day output based on three stage cross flow type multi effect desalination technology with two 16 m~2 Scheffler concentrators and operates in the temperature limits of 170-90°C.Preliminary testing carried out on the system during summer and winter period has shown that with available insolation above 700 W/m~2,steam at a pressure of 8 to 8.5 bar could be generated in a batch experiment after 2-3 hours from starting the operation for 42 to 55 kg of water in the header of the system.This steam generated is further utilised for desalination in three stages.The initial lag period for the system is measured to be 35-50 minutes depending on the quantity of water in the header,wind speed and solar insolation.System comes out of the lag period when solar insolation reaches just above 650-700 W/m~2.The desalination output for the system is measured between 60-65 litres per day for the summer period.Batch type intermittent operation,tracking errors,optical concentration losses,receiver convection losses,brine heat losses are few of the reasons observed based on the analysis for the lower output from the system.Experimentation has given a direction to make operation of the system from batch to continuous production while reducing optical and convection losses through appropriate rectifications for increasing overall yield of the system.
机译:人口和产业化的人口和产业化在物理水资源稀缺的苏丹国人口稀缺的苏丹国苏丹国的稀缺落入了弥补了淡水的不断需求与供应之间的差距。苏丹酸盐中的最高80-85%的安装和计划脱盐植物基于组合循环燃气轮机(CCGT)发电厂的是独立的,其包括约5-7%的农村干旱和干燥地区的安装厂。安装和计划的海水淡化厂利用化石燃料进行操作,并基于反渗透(几乎90-95%的植物)和多阶段闪光技术。阿曼的解答是一个热带国家,其中大多数地区都充满了干旱和干燥的太阳能。但是该国太阳能的利用率主要限于安装基于光伏系统。在AMAL o的国家进行了最近的最近太阳能热增强厂房,拥有1 GWTH电力输出的储油厂IL FIELD.A试点独立多效脱落(MED)使用固定焦点型Scheffler集中器的遥远和干旱农村地区的夏日区,以解决这一差距。这一飞行员设计用于生产100公斤/天输出基于三个阶段横流型的多效脱盐技术具有两个16米〜2个舍夫勒集中器和在170-90°C.Preliminary的温度范围进行操作夏季在系统上测试执行和冬季期间已经表明,与现有日照高于700瓦/米〜2,蒸汽在8〜8.5巴的压力可以在间歇实验中从开始在system.This蒸汽的头42至55公斤水的操作来生成2-3小时后生成的是三个阶段的脱盐。该系统的初始滞后时间测量为35-50分钟,取决于标题中的水量,风速和太阳能缺失的水量。系统出来G时期太阳呈现达到650-700 W / m〜2.系统的脱盐输出在夏季时期为每天60-65升之间。型型间歇操作,跟踪误差,光学浓度损耗,接收器对流损失,盐水热量损失很少观察到的原因是根据系统的较低输出的分析。精工给出了一个方向,使系统从批处理到连续生产,同时通过适当的整流来减少光学和对流损耗。增加系统的整体产量。

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