Nova Patents
EP1925776A1

Rotary displacement type steam engine

Abstract

A steam engine of a simple constitution capable of efficiently obtaining mechanical energy not only from a heat source of a high temperature but also from various heat sources in a low-temperature state such as the exhaust heat of an internal combustion engine. The engine comprises a displacement engine 1 having a rotor 13 that rotates, a steam-generating portion 2 arranged thereunder and a condenser 3 arranged thereover. Water heated in the steam-generating portion 2 becomes the steam which is fed into the displacement engine 1, enters into an operation chamber that moves up, rotates the rotor 13 and is, thereafter, fed into the condenser 3 where it is condensed to turn into the condensate. The condensate falls on the rotor 13 on the lower side due to gravity, and is refluxed into the steam-generating portion 2 through the operation chamber that moves downward with rotation of the rotor 13. The steam engine efficiently operates even at low speeds, requires no pump for refluxing the condensate, and is constituted in a compact size.

EP1925776A1, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 29 August 2026, 0.1 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

3 claims: 1 independent, 2 dependent

  1. 1
    A steam engine comprising a displacement engine (1) having a rotor (13) that rotates, a steam-generating portion (2) arranged under the displacement engine (1) being communicated with the displacement engine (1) to generate the steam by heating the liquid contained therein, and a condenser (2) arranged over the displacement engine (1) being communicated with the displacement engine (1) to condense the steam of the liquid, wherein the rotor (13) is provided with a plurality of operation chambers (15);and the steam of the liquid generated in the steam-generating portion (2) is fed into the operation chambers (15) on the side that is moving upward with the rotation of the rotor (13), and the liquid condensed by the condenser (3) is fed into the operation chambers (15) on the side moving downward with the rotation of the rotor (13) and is refluxed into the vapor-generating portion (2).