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Heatpumps & heatpump monitoring OpenEnergyMonitor Trystan Lea Thanks to John Cantor heatpumps.co.uk
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Heatpumps and Heatpump Monitoring

Apr 14, 2017

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Page 1: Heatpumps and Heatpump Monitoring

Heatpumps & heatpump monitoring

OpenEnergyMonitor Trystan LeaThanks to John Cantor heatpumps.co.uk

Page 2: Heatpumps and Heatpump Monitoring

Heatpumps

For every 1 unit of electrical power the heatpump provides on average 3 units of heat output by moving heat from the air, water or ground into the building.

Carnot COP = (T_condencing+273) / ((T_condencing+273) – (T_evaporation+273))Practical COP = 0.5 x Carnot COP

Page 3: Heatpumps and Heatpump Monitoring

Average home today

Lighting, Appliances and cooking 10.6 kWh/dSpace heating gas input: 34 kWh/dWater heating gas input: 5.8 kWh/d

Provided by a mix of gas and present grid electric = ~ 5 tonnes of CO2//year

Average ZeroCarbonBritain home

Lighting, Appliances and cooking4.5 kWh/dSpace heating electric input: 4.2 kWh Water heating electric input: 2.3 kWh

Provided by renewable electricat zero carbon

83% energy saving from insulation+ draught proofing + heatpumps

Open source zero carbon energy system modelhttp://openenergymonitor.org/energymodel/

Page 4: Heatpumps and Heatpump Monitoring
Page 5: Heatpumps and Heatpump Monitoring

1) Model the heat loss rate of your house

MyHomeEnergyPlanner, open source home energy assessment software, collaboration with Carbon Coop in Manchester who carry our home retrofits saving households 70% on their energy use.http://github.com/emoncms/MyHomeEnergyPlanner

How to design and install a heatpump system

Heat loss rate: 109W/K

When its -1C outside and I want it to be 21C inside it willneed a heat input of:

22K x 109W/K = 2398W

Average requirement is:11K x 109W/K = 1200W

Page 6: Heatpumps and Heatpump Monitoring

2) Calculate heat emitters required: number of radiator or under floor heating to provide max heat output demand at an efficient heatpump COP

- Radiator datasheets

- Heatpump flow temperature needsto be ideally ~ 35C to 40C to run efficiently

- 1703 W @ 35C- 2231 W @ 40C- 2878 W @ 45C

1x Dimplex smart rad SRX180

0.9 kw @ 10C (30C MWT)1.2 kw @ 15C (35C)1.5 kW @ 20C (40C)1.9 kW @ 25C (45C)2.3 kW @ 30C (50C)2.7 kW @ 35C (55C)3.0 Kw @ 40C (60C)

1x Standard double panel convector

http://www.screwfix.com/p/kudox-premium-type-22-compact-double-panel-convector-radiator-700-x-1200mm/30717

2407W @ 50K503W @ 15K (35C)731W @ 20K978W @ 25K

heat output = rated heat output x (deltaT / rated_deltaT) ^ 1.3

Page 7: Heatpumps and Heatpump Monitoring

3) Select a heatpump

Many available

5 kW mitsubishi ecodan, more than I need for stage 1 but enough for expansion into other rooms.

One of the smallest heatpumps on the market, has a good record.

3) Misc components:

- Efficient circulation pump- water filter- expansion vessel

Energy monitoring

Total installation cost ~£3000

Page 8: Heatpumps and Heatpump Monitoring

How well does it work? … open source heatpump monitoring

- EmonPi electricity monitoring

- Kamstrup multical 402 billing grade heat meter, connected to emontx via mbus and open source mbus reader implemented on emontx

- EmonTH internal and external temperature monitoring

From October 17th to November 10th: 24 daysElectric input: 88.9 kWhHeat output: 260 kWhAverage COP 2.92

Page 9: Heatpumps and Heatpump Monitoring

Detailed heatpump run visualisations, running off the emonpi

Page 10: Heatpumps and Heatpump Monitoring

Average COP of 23 test runs: 3.451 unit of electric in

3.45 units of heat out

Heat cost at electric rate of 16p/kWh = 16 / 3.45 = 4.6p/kWh

Seasoned wood: 5.41p/kWh, Propane gas: 12p/kWh

Page 11: Heatpumps and Heatpump Monitoring

Next step

Dedicated open source heatpump monitoring board and accompanying software to make this monitoring easier to replicate.

Arrived back from ragworm PCB manufacturing today.