Elimu ya bure Kuhusu umeme wa jua

Elimu ya bure Kuhusu umeme wa jua

Wewe jubilant ni muongo, ulichoandika hakina ukweli na inaonekana hata makadirio ya mfumo wa solar huyajui alafu unasema wewe ni electronics engineer. Tusiwe tunaleta mambo ya uongo kwenye mada zenye malengo ya kuwasaidia watu au kitu kama hukijui wewe pita kimya tu. Hakuna mtaalamu yoyote wa mambo ya solar atakubaliana na maelezo yako. Haiwezekani inverter ya 500w ika run k kitu cha 1000w au 2000w.
 
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Wewe jubilant ni muongo, ulichoandika hakina ukweli na inaonekana hata makadirio ya mfumo wa solar huyajui alafu unasema wewe ni electronics engineer. Tusiwe tunaleta mambo ya uongo kwenye mada zenye malengo ya kuwasaidia watu au kitu kama hukijui wewe pita kimya tu. Hakuna mtaalamu yoyote wa mambo ya solar atakubaliana na maelezo yako. Haiwezekani inverter ya 500w ika run k kitu cha 1000w au 2000w.
Uko sawa mkuu
 
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How to choose the right equipment for my needs.


For simplicity, let's assume you have a 100 watt device that you want to power with free solar energy for 10 hours each night.

To figure out what size solar panel, batteries, charge controller and inverter you need, follow the simple steps below.

1. Calculate how much energy is needed. 100 Watts x 10 hours = 1,000 Watt hours. That is the total energy you will need.

2. Now calculate what size solar panel you will need. Based on a ten hour day of light, the calculation is simple:
----1,000 Watt hours / 10 hours sunlight = 100 Watt solar panel.

----The reality is that most summer days give about 15 hours of sunlight and winter you get about 4-5 hours of sunlight. Always choose the worst case scenario for-
----your solar panel. In this case, go with a winter day of 5 hours sunlight.-
----1,000 Watt hours / 5 hours sunlight = 200 Watt solar panel.

----(Based on average United States daily sunlight hours.)

3. Calculate what size batteries you need. 1,000 Watt hours divided by 12 Volts = 83 Amp Hours of reserve battery power.
----1,000 / 12 = 83.3
----An average marine deep cycle battery will work well here. Select a larger size battery to be sure, say 100 Amp hours capacity.

4. To figure what size solar charge controller is needed, take your solar panel wattage, which is 100 watts divided by 12 Volts.
----100 / 12 = 8.3 Amps.
----Always go larger, in this case use a 10 Amp solar charge controller.

5. Calculate what size inverter is needed. That's the easy part. You need to power a 100 Watt load, so select an inverter that has
----at least 100 Watts continuous power rating
 
Solar power calculator

Solar power system components

Let’s start with a brief revision of the major components found in a basic-solar power system. This should help you to understand then correctly identify and select the correct size components for your-solar power system.-


The following diagram shows the major components in a typical basic-solar power system.-

A basic solar powered system:



The-solar panel-converts sunlight into DC power or electricity to charge the-battery. This DC electricity/(charge) is controlled via a-solar regulator-which ensures the battery is charged properly and not damaged and that power is not lost/(discharged). DC appliances can then be powered directly from the battery, but AC appliances need a-power inverter-to convert the DC electricity into 220 Volt AC power.-

Description of individual solar power system components

Solar Panels

Solar panels-are classified according to their rated power output in Watts. This rating is-the amount of power the solar panel would be expected to produce at STC (standard testing conditions) of sunlight intensity 1000w/metre at 25 degrees centigrade

Different geographical locations receive different quantities of average peak sun hours per day.-
As an example, in areas of the Highveld in South Africa, the annual average is around-5.6 sun hours per day. This means that an-80W solar panel based on the average figure of 5.6 sun hours per day, would produce a yearly average of around 450W.H per day.-

Solar panels-can be-wired in series or in parallel to increase voltage or current respectively. The rated terminal voltage of a solar panel is usually between 17-22 volts, but through the use of a regulator, this voltage is reduced to around 13 or 14 volts as required for safe battery charging.-

Solar panel output is affected by the cell operating temperature. Panels are rated at a nominal temperature of 25 degrees Celcius. The output of a solar panel can be expected to vary by 0.25% for every 5 degrees variation in temperature. As the temperature increases, the output decreases.

Solar Regulators

The purpose of-solar regulators, or charge controllers-as they are also called, is to-regulate the current from the solar panels to prevent the batteries from overcharging. Overcharging causes gassing and loss of electrolyte resulting in damage to the batteries.-

A solar regulator is used to sense when the batteries are fully charged and to stop, or decrease, the amount of current flowing to the battery.-

Most solar regulators also include a-Low Voltage Disconnect feature, which will switch off the supply to the load if the battery voltage falls below the cut-off voltage. This prevents the battery from permanent damage and reduced life expectancy.-

A-solar regulator also prevents the battery from backfeeding or discharging into the solar panel at night and, hence, flattening the battery.-

Solar regulators are rated by the amount of current they are able to receive from the solar panel or panels.-

See section below for information on correctly sizing a solar regulator.

Power inverters

The-power inverter-is the main component of any independent power system which requires AC power. The-power inverter-will convert the DC power stored in the batteries and into Ac power to run conventional appliances.



DC to AC power inverters

Just over a decade or so ago,-DC AC power inverters-were so inefficient and unreliable, many people restricted themselves to 12V lights and appliances.

If you have recently tried to shop around for 12V DC appliances, you will see that there is a very limited selection available.

Today, the efficiency and reliability of the latestDC AC power Inverters, are a far cry from the inverters that were available 15 to 20 years ago.

There are three waveforms produced by modern solid state power inverters. The simplest, a square wave power inverter, used to be all that was available. Today, these are very rare, as many appliances will not operate on a square wave.

True Sine wave inverters provide AC power that is virtually identical to, and often cleaner than, power from the grid.-

Power inverters-are generally-rated by the amount of AC power they can supply continuously. Manufacturers generally also provide 5 second and ½ hour surge figures. The surge figures give an idea of how much power can be supplied by the inverter for 5 seconds and ½ an hour before the inverter’s overload protection trips and cuts the power.-
For more info on solar inverters go check out ourpower inverter website--http://www.inverter.co.za/solar-power-inverter.htm

Solar Batteries

Deep cycle batteries-are usually used in-solar power systems-and are designed to be discharged over a long period of time (e.g. 100 hours) and recharged hundreds or thousands of times, unlike conventional car batteries which are designed to provide a large amount of current for a short amount of time.-

To maximize battery life, deep cycle batteries should not be discharged beyond 50% of their capacity. i.e. 50 % capacity remaining. Discharging beyond this level will significantly reduce the life of the batteries.-

Deep cycle batteries are rated in Ampere Hours (Ah).-This rating also includes a discharge rate, usually at 20 hours. This rating specifies the amount of current in Amps that the battery can supply over the specified number of hours.-

As an example, a battery rated at 120A.H at the 100 hour rate can supply a total of 120A.H over a period of 100 hours. This would equate to 1.2A per hour for 100 hours. Due to internal heating at higher discharge rates, the same battery could supply 110Ah at the 20 hour rate, or 5.5A per hour for 20 hours. In practice, this battery could run a 60W 12VDC TV for over 20 hours before being completely drained.-

There are many factors that can affect the performance and life of a battery or bank of batteries. It is highly recommended that youspeak with an experienced solar power system installer or solar battery provider prior to making any significant battery purchase.

Choosing the right size solar regulator

A-solar regulator-must be able to handle the maximum current that can be produced by the solar panels. Reflected sunlight and specific temperature conditions can increase the output current of a-solar panel-by as much as 25% above it’s rated output current. The solar regulator must be sized to handle the increased current.

Example:-An 80W 12V solar panel has a rated output current of 4.55 Amps and a rated short circuit current of 4.8 Amps.-

Minimum-solar regulator-size for a single 80W solar panel should be:-
4.8 Amps x 1.20 = 5.76 Amps.-

It is recommended that the regulator selected is even slightly larger than this figure to ensure that it is not constantly operating at 100% of its rating, particularly in regions with higher ambient temperatures.

A good rule of thumb is a margin of between 20 and 30%.

Sizing your solar power system

In order for you to size your-solar systemcorrectly, you need to note the power rating of each appliance that will be drawing power from the system.

Let us take some common household appliances like lighting, a TV, and a fridge to see how one calculates the correct size solar system:

10 x 12W globes = 120W operating 10 hours per day. = 1200W.H

2 x TV x 250W = 500W operating 6hrs per day--------- - = 3000W.H

Fridge x 250W = 250W operating 24/7---------------- ------- = 6000W/day

Power inverter sizing

Appliance total power draw = 120W(for the 10 lights) + 500W(for the 2 TV’s) + 250W(for the fridge) = a total power draw of 870W.

To provide a small buffer or margin your minimum size inverter choice should be around 1000W.

A modified sine wave inverter with a 1500W continuous power rating will therefore be your obvious choice in this specific solar system design.

Determining the size and number of solar panels

Here we take the total power usage daily = 1200W.H + 3000W.H + 6000W.H

This = a total of 10200W.H

Divide the total daily power requirement by the number of charge hours for that geographic region eg. 10200/5.5Hrs = 1854.54W

Add 20% for inefficiencies = 2225.45 W

This total power value determines the size and number of panels eg. 2225.45/75W panels = 30 x 75W panels.

If you fancied say 125W panels , then 2225.45/125W = 18 panels.

How many batteries?

Well the 75W panels produce 4.4Amps, thus 30 x 4.4 A = 132A x 5.5 Hrs = 726Ah

105Ah batteries, should be discharged to no more than 50%, thus we divide total amps by 105A x 50% = 50A.H

726/50A = 14.5 x 105Ah batteries.

For ease of possible 24V or 48V configuration, this would mean 16 batteries.

What size regulator do we need ?

Let’s say we had 20A regulators at our disposal.

One 75W panel produces around 4.4Amps.

3 x 4.4A = 13.2A

So 30 solar panels would need 30/3 = 10 x 20A solar regulators.

Complete the solar power system

Well we have the following:

30 x 75W-solar panels10 x 20A-solar regulators16 x 105A.H-deep cycle batteries1 x 1000W-modified sine wave power inverter

Thus we have calculated the-solar power systemcomponents that you would need in order to cater for your current power usage
 
Mchoro/Picha kuhusu solar system
 
Labda ufunge series

Battery za 500Ah zipo ila nyingi ni 2volts, ambapo kupata 12v inabidi uunganishe battery katika series. Kumbuka ukiunga series unaongeza Vlts na Ah zinabaki zile zile za battery 1, na ukifunga parallel unaongeza Ah, V zinabaki zile zile za battery 1 hata kama umeunganisha Batt 10.
 
Kwa experience yenu companies zipi zinazitengeneza/sambaza vifaa genuine proven long lasting vya solar?

Nenda Ensol (T) Ltd. Wapo ubungo plaza utapata hitaji la nishati jadidifu kwa gharama nafuu na yenye kumjali mteja.

Kwa mawasiliano tumia namba hizi:
+255 784 694 413
+255 754 694 413.
Wanapatikana jumatatu-ijumaa saa 2.00-11.00 jioni.
Jumamosi ni saa 2.00-7.00
 
By Professional mie ni electronics engineer. Ninaishi dar ninaweza kumsaidia yeyote kuhusu hii system bila malipo yoyote, nitakushauri kabla ya kunua na kufunga..online

Nimefunga Solar System nyumbani 2008 baada ya serekali kubadili mfumo na kuleta LUKU service Charge
Nina 2 Panels 90Watts @ = (180Watts)
Batery 7 sealed za 150Ah@ = 1050Ah

Matumizi
Nina Desktop Computer 1
Nina Laptop 1
Nina Solar Frige kubwa 290Lrs
Nina 500Watts Power invetor
Nina 32 Inch TV flat screen
Nina taa 3watts 11 ndani
nina taa 5watts 7 nje
Nina Brender 400Watts
Nina Music system 2000Watts PMPO ikipiga just kama uko disco
Mafundi wanakujaga na machine zao za kukata chuma na mbao wanatumia bila shida yoyote.

Sijutii kufunga solar system sio kwamba niko sehemu ambayo Tanesco hawajapita hapana nguzo ya umeme iko 1 meter kutoka nyumba yangu ila utumwa sitaki, kila siku bei ya umeme inapanda utasiki watu wanalia na kulalamika. 2008 elfu kumi nilikuwa napata 112 units sasa hivi 10,000 hata 38 units hupati
Mabadiliko ya kweli hutokea kwenye fikra na unayoyaona kwa nje ni matokeo tu...

Watanzania Tubadili jinsi tunavyo fikiria life is good

Hiyo kipindi ilikukost bei gan mkuu
 
Ninasikitika kuona watu tunatishiana sana kuhusu mfumo wa sola na kufanya watu wauogope, kwa mfano tunataja vitu vinavyohitaji mfumo mdogo kama tv inch 32,taa 10,radio (hivi rate yake ni betri 65ah-100ah,sola 80w-120w + 10A charger control, Inveter 300w).
HIYO NI CHINI YA MILION JAMANI...unawasha bila wasiwasi.
 
Ninasikitika kuona watu tunatishiana sana kuhusu mfumo wa sola na kufanya watu wauogope, kwa mfano tunataja vitu vinavyohitaji mfumo mdogo kama tv inch 32,taa 10,radio (hivi rate yake ni betri 65ah-100ah,sola 80w-120w + 10A charger control, Inveter 300w).
HIYO NI CHINI YA MILION JAMANI...unawasha bila wasiwasi.

Mkuu, hivyo vitu ulivyoorodhesha kwa batt 1 ya 100ah utavitumia kwa masaa mangapi kwa kutumia battery peke yake?
 
kwa mfano tunataja vitu vinavyohitaji mfumo mdogo kama tv inch 32,taa 10,radio (hivi rate yake ni betri 65ah-100ah,sola 80w-120w + 10A charger control, Inveter 300w).
HIYO NI CHINI YA MILION JAMANI...unawasha bila wasiwasi.[/QUOTE]

Ivyo vitu vyote vitafanya kazi kwa mda gani?
 
Battery za 500Ah zipo ila nyingi ni 2volts, ambapo kupata 12v inabidi uunganishe battery katika series. Kumbuka ukiunga series unaongeza Vlts na Ah zinabaki zile zile za battery 1, na ukifunga parallel unaongeza Ah, V zinabaki zile zile za battery 1 hata kama umeunganisha Batt 10.

Hapo umejibu vizuri sana.
 
Mchoro/Picha kuhusu solar system

Mkuu huo mfano uliotoa ktk solar charge controller designing,
Ulisema 80w panel yenye 4.8 unachukua 4.8 * 1.2 = 5.76.

Iyo 1.2 uliyozidishia ni kitu gani? Umeniacha pending kwenye mfano wako mwalimu.
 
Ninasikitika kuona watu tunatishiana sana kuhusu mfumo wa sola na kufanya watu wauogope, kwa mfano tunataja vitu vinavyohitaji mfumo mdogo kama tv inch 32,taa 10,radio (hivi rate yake ni betri 65ah-100ah,sola 80w-120w + 10A charger control, Inveter 300w).
HIYO NI CHINI YA MILION JAMANI...unawasha bila wasiwasi.

Ungefafanua iyo Tv ya 32 inch ni ya watts ngapi na izo taa pia ni watts ngapi ili uwatoe wasiwasi watu wasiokuelewa kuusu bajeti yako ya under million. Pengine labda unamaanisha Tv hiyo inaconsume 10w au 20w na izo taa labda nazo ni za 1watt.
 
Kontelo Unapozungumzia mfumo wa sola, fikiria vifaa ambavyo ni power sever (inch 32 flat ni chini ya 50w,taa zipo 1w,2w,3w....tofauti ya mwanga ni ndogo mno). Hata hivyo naomba tutambue kuwa jambo la betri ni mtambuka hatuhitaji ukubwa wa betri tu, pia fikiria betri yenye uwezo na sio kujaza madudu majumbani.
MIMI NAITUMIA FLAT 32 48W,TAA 6 @2W NA KING'AMUZI. >pamoja na familia kuangalia mchana, nimeonyesha kombe la dunia mpaka mechi za saa 7 bila kuhofia wateja.
{100ah+120w+ conveter300w} Chini ya M.
 
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Rafiki Sipo kwenye siasa.
Na wala siko kupoteza muda wako na wangu kubishana kwa kitu ambacho ww binafi hujawahi kukitumia
Kuna njia nyingi za kukonect solar system na system yangu ni 100% solar. 500Watts invetor ni kwa blender na radio tu na tv,pole sana ulivyoona 2000w PMPO ulidhani ni usage watts? pole sana plz understand the concerpt kabla ya kucoment.
Siko hapa kumconvise yoyote afunge solar ni uamuzi tu wako binafsi
Kuna watu wamezaliwa ili wawategemee wengine maisha yao yote na wengi wao ndio utakuta ni wabishi sana kama ww
 
Rafiki
Mie sicholei chuma na wala sijawahi jaribu fanya hivyo mafundi wanokuja nyumbani most wana iron cutter ambazo ni almost 400Watts
System yangu ni 100% solar inverto ni ya matumizi madogo sana mkuu only for blender na tv na radio
 
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