RU96104366A - METHOD FOR LIQUID HEATING AND DEVICE FOR ITS IMPLEMENTATION - Google Patents

METHOD FOR LIQUID HEATING AND DEVICE FOR ITS IMPLEMENTATION

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Publication number
RU96104366A
RU96104366A RU96104366/06A RU96104366A RU96104366A RU 96104366 A RU96104366 A RU 96104366A RU 96104366/06 A RU96104366/06 A RU 96104366/06A RU 96104366 A RU96104366 A RU 96104366A RU 96104366 A RU96104366 A RU 96104366A
Authority
RU
Russia
Prior art keywords
impeller
stator
liquid
outlet
annular chamber
Prior art date
Application number
RU96104366/06A
Other languages
Russian (ru)
Other versions
RU2150055C1 (en
Inventor
Н.И. Селиванов
Original Assignee
Н.И. Селиванов
Filing date
Publication date
Application filed by Н.И. Селиванов filed Critical Н.И. Селиванов
Priority claimed from PCT/RU1995/000070 external-priority patent/WO1996033374A1/en
Publication of RU96104366A publication Critical patent/RU96104366A/en
Application granted granted Critical
Publication of RU2150055C1 publication Critical patent/RU2150055C1/en

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Claims (6)

1. Способ нагревания жидкости путем ее обработки с помощью механического воздействия, включающий подачу подлежащей обработке жидкости в полость вращающегося рабочего колеса, выпуск обрабатываемой жидкости из полости рабочего колеса через ряд выходных отверстий, равномерно расположенных на его периферийной поверхности, отвод жидкости по крайней мере через одно выпускное отверстие статора, отличающийся тем, что выпуск жидкости из полости рабочего колеса осуществляют в кольцевую камеру, образованную его периферийной поверхностью и концентричной поверхностью статора, причем радиус R периферийной поверхности рабочего колеса и частоту его вращения n задают в зависимости от выбранного количества К выходных отверстий рабочего колеса согласно эмпирическим соотношениям
R = (1,05 - 1,28) К (мм) и
n = (3,6 - 4,1) K -1,5 • 106 (об/мин).
1. A method of heating a liquid by processing it by mechanical action, comprising supplying the liquid to be treated into the cavity of a rotating impeller, discharging the liquid to be processed from the cavity of the impeller through a series of outlet openings uniformly located on its peripheral surface, and draining the liquid through at least one stator outlet, characterized in that the discharge of fluid from the cavity of the impeller is carried out in an annular chamber formed by its peripheral surface and con entrichnoy stator surface, the radius R of the impeller peripheral face and its rotation frequency n is set depending on selected number K of the impeller exit holes according to empirical relationships
R = (1.05 - 1.28) K (mm) and
n = (3.6 - 4.1) K -1.5 • 10 6 (rpm).
2. Способ по п.1, отличающийся тем, что параметры R и n номинально задают в зависимости от параметра К согласно эмпирическим соотношениям
R = 1,1614 К (мм) и
n = 3,8396 К-1,5 • 106 (об/мин).
2. The method according to claim 1, characterized in that the parameters R and n are nominally set depending on the parameter K according to empirical relations
R = 1.1614 K (mm) and
n = 3.8396 K -1.5 • 10 6 (rpm).
3. Способ по п. 1 или 2, отличающийся тем, что отвод жидкости из кольцевой камеры осуществляют через ряд выпускных отверстий, равномерно расположенных на концентричной поверхности статора, которые при вращении рабочего колеса последовательно располагаются против его выходных отверстий. 3. The method according to p. 1 or 2, characterized in that the liquid is discharged from the annular chamber through a series of outlet openings uniformly located on the concentric surface of the stator, which, when the impeller rotates, are sequentially located against its outlet openings. 4. Устройство для нагревания жидкости путем ее обработки с помощью механического воздействия, которое содержит ротор, включающий установленный в подшипниках вал и по крайней мере одно соединенное с валом рабочее колесо в виде диска с периферийной кольцевой стенкой, в которой выполнен ряд выходных отверстий для жидкости, равномерно распределенных по окружности; статор, имеющий концентричную рабочему колесу стенку, впускное отверстие для подачи жидкости, сообщенное с полостью рабочего колеса, и по крайней мере одно выпускное отверстие для отвода жидкости; средство для привода ротора с расчетной частотой вращения, отличающееся тем, что концентричная стенка статора образует вместе с периферийной кольцевой стенкой рабочего колеса кольцевую камеру, сообщенную по крайней мере с одним выпускным отверстием для отвода жидкости, причем радиус R внешней поверхности периферийной кольцевой стенки рабочего колеса составляет
R (1,05 - 1,28) К (мм),
где К - выбранное количество выходных отверстий рабочего колеса,
а радиальный размер ΔR кольцевой камеры составляет
ΔR = (1,05 - 1,28) В (мм),
где В - выбранное целое число в интервале 1 - К/2.
4. A device for heating a liquid by machining it by mechanical action, which comprises a rotor including a shaft mounted in bearings and at least one impeller connected to the shaft in the form of a disk with a peripheral annular wall in which a number of liquid outlet openings are provided, evenly distributed around a circle; a stator having a wall concentric with the impeller, an inlet for supplying fluid in communication with the cavity of the impeller, and at least one outlet for discharging fluid; means for driving a rotor with an estimated rotational speed, characterized in that the concentric wall of the stator forms, together with the peripheral annular wall of the impeller, an annular chamber in communication with at least one outlet for discharging liquid, the radius R of the outer surface of the peripheral annular wall of the impeller being
R (1.05 - 1.28) K (mm),
where K is the selected number of outlet openings of the impeller,
and the radial size ΔR of the annular chamber is
ΔR = (1.05 - 1.28) V (mm),
where B is the selected integer in the range 1 - K / 2.
5. Устройство по п. 4, отличающееся тем, что радиус К внешней поверхности периферийной кольцевой стенки рабочего колеса номинально составляет
R = 1,1614 К (мм),
где К - выбранное количество выходных отверстий рабочего колеса,
а радиальный размер ΔR кольцевой камеры номинально составляет
ΔR = 1,1614 В (мм),
где В - выбранное целое число в интервале 1 - К/5.
5. The device according to p. 4, characterized in that the radius K of the outer surface of the peripheral annular wall of the impeller is nominally
R = 1.1614 K (mm),
where K is the selected number of outlet openings of the impeller,
and the radial size ΔR of the annular chamber is nominally
ΔR = 1.1614 V (mm),
where B is the selected integer in the range 1 - K / 5.
6. Устройство по п. 4 или 5, отличающееся тем, что статор имеет полость для приема жидкости из кольцевой камеры, сообщенную с выпускным отверстием для ее отвода, а в концентричной стенке статора равномерно по окружности в плоскости расположения выходных отверстий рабочего колеса выполнен ряд выпускных отверстий, сообщающих кольцевую камеру с полостью статора, количество которых составляет 1 - К. 6. The device according to p. 4 or 5, characterized in that the stator has a cavity for receiving fluid from the annular chamber, in communication with the outlet for its discharge, and in the concentric wall of the stator uniformly around the circumference in the plane of the arrangement of the outlet openings of the impeller a number of outlet holes communicating the annular chamber with the stator cavity, the number of which is 1 - K.
RU96104366A 1995-04-18 1995-04-18 Liquid heating method and device for its embodiment RU2150055C1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/RU1995/000070 WO1996033374A1 (en) 1995-04-18 1995-04-18 Method of heating a liquid and a device therefor

Related Child Applications (1)

Application Number Title Priority Date Filing Date
RU99106668/06A Division RU99106668A (en) 1995-04-18 1999-03-25 METHOD FOR LIQUID HEATING AND DEVICE FOR ITS IMPLEMENTATION

Publications (2)

Publication Number Publication Date
RU96104366A true RU96104366A (en) 1998-04-27
RU2150055C1 RU2150055C1 (en) 2000-05-27

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RU96104366A RU2150055C1 (en) 1995-04-18 1995-04-18 Liquid heating method and device for its embodiment

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US (2) US6016798A (en)
EP (1) EP0833114A4 (en)
JP (1) JPH11503818A (en)
RU (1) RU2150055C1 (en)
WO (1) WO1996033374A1 (en)

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