The invention relates to a device for measuring heat consumption in individual apartments in a centrally heated building, the air temperature in each apartment being measured by an inside temperature transducer at least at one representative point for each apartment, while a reference temperature corresponding to the temperature of the outside air is measured by means of a reference temperature transducer. The inside temperature transducers and the reference temperature transducer are arranged to generate pulses corresponding to the measured temperatures, said pulses being converted in a differential circuit to an electrical difference signal giving the difference between inside temperature and reference temperature. Switching means working synchronously with each other are arranged to cyclically and simultaneously connect one of the inside temperature transducers to the differential circuit and to a corresponding integrating means registering the difference signal from the differential circuit.
Apparatuses of this type used so far work extremely unsatisfactorily, inter alia, because of the different temperature transducers constantly being under voltage and being passed through by current, causing selfheating of the transducers with faulty indication as a result.
It is therefore a chief object of the invention to provide a device or a system, which is not affected by the measuring currents or measuring voltages and which therefore is only affected by the ambient temperature.
This and other objects are completely realized with the invention as defined in the patent claims.
An embodiment of the invention will now be described in connection with the attached drawing in the form of a block diagram illustrating an installation.
The temperature transducers for the inside air temperature, R.sub.il -R.sub.in, are placed in each apartment at a representative point for measuring the heating comfort of the apartment, e.g. in the ventilation duct for outgoing air from the living room. The transducer for the reference temperature R.sub.y is suitably placed outdoors, whereby it will measure the outside air temperature. The transducers for the inside air temperature and the outside air temperature can naturally consist of two or more series and/or parallel connected transducers, for obtaining an average temperature both for the inside as well as the outside air.
The outside temperature transducer R.sub.y is directly connected to a differential circuit D, while the temperature transducers for the inside air, R.sub.il -R.sub.in, are connected to a switch O.sub.1, which is arranged cyclically to connect the inner temperature transducers one at a time to the differential circuit D. The output of the differential circuit is connected to an analogue/digital converter AD, arranged to convert the analogue difference signal to a digital signal in the form of a number of current pulses corresponding to the difference signal. The output on the analogue/digital converter AD is connectable by a further switch O.sub.2 to any of the counters R.sub.1 -R.sub.n. Both the switches O.sub.1 and O.sub.2 are stepped simultaneously and cyclically over the positions 1 to n, whereby an inside temperature transducer R.sub.ik will be connected with the differential circuit D simultaneously as the analogue/digital converter AD is connected with the counter R.sub.k.
In the circuit there is further incorporated a measuring pulse generator K, which is connected to both outside and inside temperature transducers, and this generator sends a very short measuring pulse, e.g. with a length of 10 ms, each time it is activated by a timing transmitter T connected to its input, whereat current pulses arise in the outside temperature transducer R.sub.y and the inside temperature transducer R.sub.ik connected for the moment. These short measuring pulses do not cause any heating-up of the transducer, which does not pass any other current than the measuring pulse current. The difference current pulse from the differential circuit D will hereby be proportional to the prevailing temperature difference between the outside and the inside temperature, and in the analogue/digital converter AD the analogue signal is converted to a pulse train for stepping forward the counter R.sub.k, which is coupled in for the moment.
After terminated measurement, the switches O.sub.1 and O.sub.2 are stepped forward one step by the timing transmitter T, whereby the next measurement will be for t.sub.y --t.sub.ik.sub.+1, and will be registered by the counter R.sub.k.sub.+1. The timing transmitter T is suitably given such a frequency that one measuring cycle is carried out per 11.25 minutes, for example. The analogue/digital converter AD is suitably given such a resolution that a pulse corresponds, for example, to 0.1.degree. .times. 11.25 minutes = 1.125 degree minutes.
The counter is given an electronic input portion of 7 bits, i.e. it reduces the number of pulses by 2.sup.7 = 128. One unit on the counter R then signifies 128 .times. 1.125 degree minutes = 0.1.degree.. 24 hours, which should be a suitable magnitude.
Each apartment thus provided with its own counter in a central meter, from where a stroke counter can easily be connected to the apartment.
The components incorporated in the electronic array are of a conventional kind.