Showing posts with label Energy. Show all posts
Showing posts with label Energy. Show all posts

Friday, May 23, 2008

Effort in Reducing Renewable Energy Generation Cost

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Google, well known giant internet search engine provider, is now planning into the energy business. Its main headquarters in Mountain View, California is being powered solar energy, as understood it is one of the largest solar electric installations in the United States.

As part of the continuous move into renewable energy, Google has planned to invest $20 million in the next year toward renewable energy research. The move include hiring between 20 and 30 new employees and renewable energy experts.

The main goal for present move is to find a great way to reduce the cost of renewable energy generation to bring it more on par with the cost of coal.

Read more in Google Pours Massive Investment into Renewable Energy Research

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Friday, March 28, 2008

Estimate Saving with Variable Speed Control (VSC) compare to other Control Method for FANs

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Earlier post "Quatitatively compare Variable Speed Control (VSC) with Conventional Flow Control in Pumping system", PumpSave has been introduced to estimate energy saving when apllying a variable speed control in a pump.

Recommended Utility :

PumpSave is a tool developed by ABB to enables you to estimate energy (money) saving when apply Variable Speed Control (VSC) compare to traditional control such as throttling control, On/Off control and Hydraulic control. In addition, it provides financial indicators (e.g. Payback period, annual saving, NPV, etc) to assess the benefits of adopting Variable Speed Control (VSC).
If you still do not aware of the benefits of Varaible Speed Drive (VSD), read earlier post in "Variable Frequency Drive (VFD) helps in Many Aspects"

Similarly Variable Speed Control (VSC) can be used in controlling a fan for air cooler.



FanSave has been developed by ABB for comparing AC drive control against traditional flow control methods in fans and estimate savings you can achieve by replacing outlet damper, inlet vane or pitch control methods with VSC. Similarly FanSave provides financial and environmental indicator for justification.

Try it out and share your experience with many others here...
Download FanSave (Click here)
Download FanSave Operating manual (Click here)


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Thursday, March 27, 2008

Quatitatively compare Variable Speed Control (VSC) with Conventional Flow Control in Pumping system

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Lately, there was a study to minimizing energy consumption and increase life cycle profit for a plant. One of the measures has been identified was to apply Variable Speed Control (VSC) using Variable Speed Drive (VSD). Recent post in Variable Frequency Drive (VFD) helps in Many Aspects (click here), you should be able to aware the benefits of using VSD qualitatively.

In many event, qualitative justification is not 100% convincing and client is always requested detail quantitative justification. Thus, most financial indicators such as life cycle cost, payback period, NPV, IRR, etc shall be estimated to justify if VSC is really make sense to persuade compare to conventional control method. One of the quick way is use a tool, PumpSave, to provide a quick estimation and indication.


What is PumpSave ?
PumpSave is a tool developed by ABB to enables you to estimate energy (money) saving when apply Variable Speed Control (VSC) compare to traditional control such as throttling control, On/Off control and Hydraulic control. In addition, it provides financial indicators (e.g. Payback period, annual saving, NPV, etc) to assess the benefits of adopting Variable Speed Control (VSC).

Simple Operation Steps
It is rather simple to use. With the following actions :
  • Fill in System and Process parameters
  • Fill in intended motor rating and operating profile parameters
PumpSave will possibily advise the energy saving for VSD and conventional control method. By providing some commercial value, PumpSave would be able to advise the financial indicator.
Download PumpSave (Click here)
Download PumpSave Operating manual (Click here)
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Wednesday, March 26, 2008

Variable Frequency Drive (VFD) helps in Many Aspects

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In the recent project, one the philosophy or principle adopted and implemented was As - Low - As - Reasonable - Practical (ALARP). This has seriously extended to the preservation of environment from pollution and minimizing human interferences. There are several methods proposed and implemented. One of those is use of Variable Frequency Drive in electrical motors for fan, pump, compressor, etc.

How variable frequency drive helps in preservation of environment from pollution and minimizing human interferences ?


Energy saving
Throttling is one of common mean for flow regulation during turndown. This method is simple and low material cost. However, throttling process is serious energy consumer and it done produce useful work. In additional it generate inefficiency, heat, noise, vibration, etc. VFD may be used for flow regulation purpose. Simple affinity law would advise the the relationship of speed and flow. Low speed results low flow and with this it regulate the flow. At low speed, less energy is consumed. As an example, flow reduce from 100% to 80%, power@80% will be 51% of power @ 100%.

Optimum Efficiency reduce energy consumption
VFD can improve the efficiency of motor-driven equipment by matching speed to changing load requirements. By VFD, it can almost constantly maintain a high motor efficiency while carry out flow regulation.

Increase Mechanical Device LifeSpan
As most motor-driven equipment is designed to Best-Efficiency-Point (BE). By maintaining the operating curve close to BEP, the mechanical device life span would be significantly extended.

Reduce Maintenance Cost
Longer lifespan implies longer life for bearing and motors and hence reduce maintenance costs.

Noise & Vibration
Motor operate at constant high speed and throttling process will continuously generate noise and vibration from turndown to design capacity operation. However, using VFD, reducing motor speed and eliminate throttling process would significantly decrease noise and vibration.

Power Surge
Conventionally motor for pump start-up will be equipped with mechanical starter. This power supply system will experience power surge whenever the motor is started-up. Of course soft-starter is one of the solution. Using VFD will eliminate initial power surge.

Increase Production Flexibility
Using VFD, the speed can be very low and hence the turndown. This seriously increase plant production flexibility.

Minimize Water Hammer Potential
Motor with VFD, the ramped up of speed can be controlled and this potentially minimizing water hammer in liquid system start-up. Similarly, controlled ramped down of speed can also minimizing check valve slamming.

Easy Process Control
Motor with VFD function, it can simply process control and increase flexibility in control as well as increase system turndown capability.

Nowadays, energy saving and preserve environment is the major and important element in new and debottlenecking plant implementation. VFD is one of the hot choice for most project. Why not consider to use ?

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Monday, April 23, 2007

DISTILLATION : Alcohol Distillation

For those who wants to mak
e liquor, this is one of the best site for you...You may download complete sites (HomeDistillation.zip) and other documents such as :


A site maintain by Tony Ackland (A ChE)

Alcohol distillation : Basic principles, equipment, performance, relationships and safety
An article by Eric Kvaalen et. al,
Purdue University is to help you understand the distillation of ethyl alcohol. This article presents the basic principles involved in distillation, types of distillation equipment and systems that might be involved in a small fuel alcohol plant are then discussed, performance and control criteria needed for a general evaluation.

Alcohol distillation by SOLAR energy
An article by Rajiv M. Jorapur and Anil K. Rajvanshi, Nimbkar Agricultural Research Institute (NARI). This paper presents the data generated for a study of pilot solar distillation plant to produce ethanol (hereafter referred to as alcohol) using sweet sorghum as the raw material.

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