HEAT METER BASED ON OVERHEAD SENSORS Russian patent published in 2017 - IPC G01K17/10 G01F1/68 

Abstract RU 2631007 C1

FIELD: measuring equipment.

SUBSTANCE: heat meter based on overhead sensors comprises a heat flow sensor and surface temperature sensors, as well as a meter for their signals. Wherein the heat flow sensor is installed in the control section of the pipeline, and surface temperature sensors are installed at the boundaries of the control section of the pipeline and on pipelines at the inlet and outlet of the heating system. According to the invention, on the surface of the heat flow completely overlapping the surface of the control pipeline section, a removable heat exchanger is installed, consisting of two identical parts, each of which contains metal heat pipes, on the outer surface of which there are thermoelectric Peltier batteries connected to a power source and equipped with radiators cooled by an electric fan also connected to a power source.

EFFECT: increasing the accuracy and efficiency of measuring the actual values of the amount of heat released in heating systems by any coolant.

2 dwg

Similar patents RU2631007C1

Title Year Author Number
DEVICE FOR DIRECT MEASUREMENTS OF HEAT POWER AND AMOUNT OF HEAT IN INDEPENDENT HEATING SYSTEMS 2018
  • Badashov Evgenij Yakovlevich
  • Cherepanov Viktor Yakovlevich
  • Shejnin Erikh Moiseevich
RU2726898C2
METHOD OF DETERMINING FRACTION OF HEAT ENERGY CONSUMED BY INDIVIDUAL CONSUMER WHEN HEATING APARTMENT BUILDING WITH TWO-PIPE HEATING SYSTEM AND HEATING SYSTEM TO THIS END 2009
  • Surnov Sergej Ivanovich
  • Surnov Grigorij Sergeevich
  • Bychkovskij Igor' Anatol'Evich
RU2403541C1
THERMOELECTRIC GENERATOR BASED ON SEEBECK EFFECT 2023
  • Popov Nikita Mikhailovich
RU2811638C1
VENTILATION AND HEATING UNIT WITH THERMOELECTRIC HEAT PUMP 2021
  • Tikhomirov Dmitrij Anatolevich
  • Kozlov Sergej Anatolevich
  • Markin Sergej Sergeevich
  • Dobrovolskij Yurij Nikolaevich
  • Baklachyan Rubik Atabekovich
RU2768969C1
METHOD OF DETERMINING HEAT ENERGY CONSUMED BY INDIVIDUAL CONSUMER WHEN HEATING APARTMENT BUILDING WITH SINGLE-PIPE HEATING SYSTEM AND HEATING SYSTEM FOR REALISING SAID METHOD 2010
  • Surnov Sergej Ivanovich
  • Surnov Grigorij Sergeevich
  • Bychkovskij Igor' Anatol'Evich
RU2449250C1
DEVICE FOR STUDYING TEMPERATURE DEPENDENCIES OF DIFFERENT ENVIRONMENTS 2023
  • Stoianova Tatiana Viacheslavovna
  • Tomaev Vladaimir Vladimirovich
  • Sharapov Andrei Gennadevich
RU2807370C1
AUTOMATIC CONTROL METHOD OF RADIATOR HEAT PIPELINE BASED ON CONTOUR HEAT PIPE 2012
  • Kotljarov Evgenij Jur'Evich
  • Serov Gennadij Pavlovich
  • Tulin Dmitrij Vladimirovich
  • Privezentsev Aleksandr Sergeevich
  • Svistunova Ljubov' Valentinovna
RU2505770C1
HEAT COUNTER 1998
  • Goncharov V.A.
  • Karaljun V.Ju.
RU2148803C1
METHOD AND DEVICE FOR YEAR-ROUND COOLING, FREEZING OF GROUND AT FOUNDATION BASE AND FOR HEAT SUPPLY OF STRUCTURE ON PERMAFROST GROUND IN CRYOLYTIC ZONE 2012
  • Trushevskij Stanislav Nikolaevich
  • Strebkov Dmitrij Semenovich
RU2519012C2
THERMOELECTRIC GENERATOR FOR HEAT SUPPLY SYSTEM 2019
  • Ezhov Vladimir Sergeevich
  • Semicheva Natalya Evgenevna
  • Burtsev Aleksej Petrovich
  • Perepelitsa Nikita Sergeevich
RU2723653C1

RU 2 631 007 C1

Authors

Zonova Anna Dmitrievna

Cherepanov Viktor Yakovlevich

Dates

2017-09-15Published

2016-07-06Filed