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www.orkli.com

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Orkli is one of the main European manufacturers

of components for household appliances and

innovative solutions for the comfort sector. Its

corporate activity is focused on the manufacture

and sale of components for heating and

domestic hot water, thermoelectric safety,

water heating, solar systems and underfloor

heating and cooling. 30 years of professional

experience have made Orkli a global company

that is competitive on an international scale.

Orkli exports over 80% of its production and

currently has manufacturing plants in Spain,

China and Brazil.

It also has subsidiaries across Europe and

sales representatives strategically located in

countries all over the world. Orkli is not alone

when it comes to facing the challenges of a

globalized market. It is part of the largest

cooperative group worldwide: the Mondragon

Corporation.

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ORKLI,

A DIFFERENT KIND OF COMPANY

We provide

safe comfort,

with our own technology,

using

renewable energies,

respecting

the environment.

Orkli has been granted the most demanding

certifications in the areas of quality, safety

and occupational health and safety, as well as

protection and respect for the environment.

Its products are recognized by the main

brands in the sector and the company’s

innovative philosophy continues to reinforce its

international presence.

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OKSOL-150 is an integrated solar collector

that

uses thermal solar power to

produce Domestic Hot Water.

The absorber, the forced recirculation

system and a DHW storage tank holding

150 litres of water are all included in

one single element. It uses photovoltaic

solar technology to supply the

recirculating pump

®

, making it a totally

independent system with no external power

requirements.

SOLAR SYSTEM WITH

INTEGRATED

OKSOL-150 TANK

HOW DOES IT WORK?

When solar radiation falls on the collector, the collector concentrates the heat and transfers it to the heat-carrying fluid circulating inside it. Its cover shape and selective treatment enable the whole surface of the fluid-filled heat-carrying collector to be made use of. As a result, the solar radiation reaches both the heat-carrying fluid and the photovoltaic panel, which generates electricity, causing the recirculating pump to run and the hot fluid to be conveyed to the inside of the heat exchanger. The heat is transferred from the collector to the tank by means of the pump controlled by the photovoltaic panel and the heat exchanger. On sunny days the tank will heat up to maximum storage temperature of 95ºC.

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APPLICATIONS

Any type of dwelling • Mobile Home • Bungalows • Allotments • Cottages...

No building work

required!

INSTALLATION

• On a flat roof or in a garden. • Built into a sloping roof. • Sloping roof top structure.

ADVANTAGES

• Quick and easy to install:

only the water inlet and outlet need to be connected.

• Independent system:

no electricity required.

• Automatic system:

no regulation required.

• It does not take up space in the home:

The tank is built into the system.

• Similar performance to an element-based system.

• Fully integrable, stylish modern appearance. • Will not rust.

Pump powered by photovoltaic cell. • Storage capacity: 150 litres.

• Useful collection surface area: 1,95 m2.

• Heat exchanger surface: 0,29 m2.

• External dimensions: - Length: 2029 mm - Width: 1020 mm - Depth: 250 mm

- Empty weight including tank: 80 kg.

• Structure on ground or flat terrace included. • Roof-integrated structure, sloping roof top

structure and wall structure, under request.

Keymark Solar Certificate 011-7S1479A.

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DRAIN UNIT

HYDRAULIC UNIT

WITH DRAIN-BACK

SYSTEM

HOW DOES IT WORK?

Height-adaptable for use with lower-powered pumps, which means savings and better overall system efficiency.

The volume of the circuit above the drain unit must not exceed 8 - 16 litres of the working volume of the air separator.

A solution to prevent overheating and

freezing.

Optimise your Solar Power

Bigger

Savings

Simply select

all the components you need

Compatible

with all the collectors, heat exchangers

and regulators on the market

For installations

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• Maximum operating temperature: 110ºC.

• Maximum peaks: 130ºC. • Safety valve calibration: 3 bar. • Flow indication range: 2-12litres/min. • Maximum separation volume: 8 litres. • Connections: bicone nut for a Cu15mm o

½”M pipe.

• Control options with pre-connections made. • Consult for adaptability to other regulations. • In case of Drain Unit without regulation option,

the regulation must comply with the following characteristics:

- Solar regulation with a differential relay. - Maximum temperature function of collector

110ºC. (recommended).

- Difference in activation temperature 10-15ºC. (recommended).

FEATURES

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DRAIN UNIT

DUAL HYDRAULIC

UNIT WITH DRAIN

BACK SYSTEM

• Maximum operating temperature:

110ºC.

• Maximum peaks: 130ºC. • Safety valve calibration: 3 bar. • Flow indication range: 2-12litres/

min.

• Maximum separation volume: 16 litres.

• Connections: bicone nut for a Cu15mm o ½”M pipe.

• Control options with pre-connections made.

• Consult for adaptability to other regulations.

• In case of no regulation options, the regulation must comply with the following characteristics:

- Solar regulation with a differential relay.

- Maximum temperature function of collector 110ºC. (recommended). - Difference in activation

temperature 10-15ºC. (recommended).

FEATURES

Now for installations with twice as many

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FOR MAJOR

INSTALLATIONS

• Maximum operating temperature in

flow branch: 160ºC.

• Maximum temperature in return branch: 110ºC.

• Maximum temperature of safety valve: 160ºC.

• Hydraulic unit for collector fields of up to 50m2.

• Safety valve calibration: 6bar. • Thermometer temperature range:

0-120ºC.

• Flow indication range: 5-40l/min. • Manometer scale: 0-10 bar. • Distance between branches:

125mm.

• Connections: 1 1/4” for flexible pipe DN25 and bicone nut for a pipe Cu 28mm.

• Connection for expansion vessel: ¾”M.

• Consult for adaptability to other regulations.

FEATURES

For collector fields of up to 50 m

2

.

All hydraulic components pre-assembled.

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The SolarOrkli line opts for

technologically

innovative products

contributing to

smarter, more sustainable consumption

of renewable energies. An example

are the high-efficiency solar hydraulic

units, which include components that can

increase energy efficiency by almost

50%.

SOLAR HYDRAULIC

UNITS

HIGH

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Hydraulic characteristics

FEATURES

• Maximum working temperature in flow branch:

120ºC.

• Maximum working temperature in return branch: 100ºC.

• Maximum working temperature of safety valve: 160ºC.

• Safety valve calibration: 6 bar.

• Thermometer temperature range: 0-120ºC. • Flow meter indication range: 2-40 l/min. • High energy efficiency pump with cabling

preconnection.

• External PWM pump modulation.

• Consult for adaptability to other regulations. • Pump consumption range: 4-60W.

• Energy count option on models with electronic sensors.

• Manometer scale: 0-10bar. • Connections: 3/4”H. • Branch distance: 95 mm.

• Regulation with connections made. • EPP insulation. 0 Q (m3/H) Head 1 0,5 1,5 2 2,5 3 4 1 5 6 7 8 H (mCE) 2 3 0 0 Q (m3/H)

Power Effi ciency

1 0,5 1,5 2 2,5 3 40 40% 10 10% 50 50% 60 70 80 P1 (W) (%) 20 20% 30 30% 0 0%

The optimum

efficiency of the sun

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HYDRAULIC

PUMPING

UNITS WITH AND

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• Maximum operating temperature in flow branch: 160ºC.

• Maximum operating temperature in return branch: 110ºC. • Maximum operating temperature in safety valve: 160ºC. • Hydraulic unit for collector fields of up to 16m2.

• Safety valve calibration: 6 bar.

• Thermometer temperature range: 0-120ºC. • Consult for adaptability to other regulations. • Flow indication range: 2-12 l/min.

• Manometer scale: 0-10bar. • Connections: 3/4”H.

• Distance between branches: 95 mm. • Control with connections made.

FEATURES

Collectors field

Solar expansion vessels

Drain valves with air separators

Support system Boiler Air vent valve

with ball valve

Solar hydraulic pump units

Swimming pool

Zone valve

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INDIRECT HEAT

EXCHANGE

SOLAR KIT

HOW DOES IT WORK?

This kit regulates the recirculation inlet to the home from the circuit previously heated by the solar collector. If the kit detects that a tap has been turned on and hot water is required, the flow to the heat exchanger is opened to preheat the domestic water inlet. When the hot water tap is turned off, the 3-way valve opens the bypass again and shuts off the flow to the heat exchanger. The shut-off valves allow the central recirculation system to be completely blocked off at all the inlets.

The indirect heat exchange solar kit is

designed for centralised solar heating

installations with distributed back-up

power. Each home has an individual back-up

power source and its own interior distribution

circuit supplying domestic water.

You may complete

the totally regulated

installation with

the solar domestic

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• Maximum HWR operating flow: 15L/min. • Maximum heating operating flow: 20L/min. • Maximum HWR pressure: 15bar.

• Maximum heating temperature: 70ºC. • Connections: ¾”M. Heat exchanger Heating output Heating input HWR input

3 ways valves Hydraulic valve HWR output Fastening template 0 200 400 600 800 200 400 600 800 1000 0 Flow (L/h) Hot water circuit

H (m) 0 200 400 600 800 1000 100 200 300 400 500 0 Flow (L/h) Circuit bypass

Circuit heat exchanger Heating

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SOLAR DHW

KIT

• Valve material: brass,

according to EN12165 standard.

• Closure gasket material: EPDM.

• Connections: ½”, or 15 mm copper pipes.

• Maximum operating temperature: 90ºC.

• Maximum operating pressure: 10bar.

• Calibration of 3-way valve/ bypass temperature: 48ºC. • Bypass temperature tolerance:

+-2ºC.

• Thermostatic mixer regulation range: 30-60ºC.

• Mixing outlet temperature calibration: 45ºC.

• Components suitable for use with domestic water.

FEATURES

A universal kit for

connecting a solar

hot water tank to a

conventional domestic

hot water source

Unit for connection to the auxiliary

domestic water heating units installed

between the solar water tank and

this back-up power source, normally an

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If water in solar hot water tank >48ºC If water in solar hot water tank <48ºC

Hydraulic diagram:

Solar hot water tank

From the solar collector field Return to the solar collector field Mains water connection Domestic hot water outlet Domestic hot water outlet

From the solar hot water tank >48ºC Mains water connection Domestic hot water outlet

From the solar hot water tank <48ºC

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E - 20240 Ordizia (Spain)

Tel: +34 943 80 50 30

E-mail: [email protected]

Orkli do Brasil

Av. José Benassi, 300 – Galpão 03 FAZGRAN

SP - CEP: 13213-085 Pq. Industrial - Jundiaí Fazgran

Tel.: +55 (11) 4525-0190 Fax: +55 (11) 4525-2482 E-mail: [email protected]

Orkli Kunshan

West of Huang Pu Jian Road 215341 Qiandeng Town Kunshan City Tel.: + 86 512 5515 5000 Fax: + 86 512 5515 5999 E-mail: [email protected]

www.orkli.com

PRODUCTION PLANT

COMMERCIAL NETWORK

Orkli U.K. Ltd Surrey KT9 1BD Chessington Tel.: +44 203 044 2992 Fax: +44 203 044 2701 E-mail: [email protected] Orkli, S. Coop. Prumyslova 3143/5 79601 Prostejov Rep. Checa Tel.: + 420 620 748 159 Fax: + 420 582360800 E-mail: [email protected]

Orkli Middle East Ltd.

Orkli House, No. 1195 Vali-Asr Avenue 1516738615 Tehran Tel.: + 021 88 77 50 22 + 021 88 88 24 36 Fax: + 021 88 79 96 27 E-mail: fi @orkid-int.com MCC India B-6/6, Safdarjung Enclave, Commercial Complex 110 029 New Delhi Tel.: + 91 1132439954 Fax: + 91 1132439953 E-mail: [email protected]

Orkli Italia S.P.A

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References

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