Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Research on Improving Thermal Efficiency through Variable Super-High Expansion Ratio Cycle

View through CrossRef
<div class="section abstract"><div class="htmlview paragraph">The compression ratio and expansion ratio are fundamental parameters that determine the thermal efficiency of an SI engine, and the potential of setting these ratios to arbitrary values was studied as a way of improving engine efficiency. First, the efficiency resulting from different compression and expansion ratios was calculated from a theoretical formula. As a result, it was verified that a 20% improvement in thermal efficiency could be expected by adopting a super-high expansion ratio of 20 or higher, which is an extremely large value for an SI engine, while keeping the compression ratio within a range that can ensure appropriate combustion. Subsequently, this research calculated the possibility of improving engine efficiency under a condition that constrains the swept volume to a constant value in consideration of practicability. The results indicated that in this case the expansion ratio is determined by load, and that ideal engine characteristics can be produced in which high efficiency is attained in practical load regions while producing maximum power under full load. Finally, based upon the above efficiency calculations, the thermal efficiency was verified using an actual engine in the load region with the greatest efficiency improvement effect. In tests, the evaluations utilized a high-efficiency commercially available compact 4-cylinder SI engine with a compression ratio of 13:1. By adopting a super-high expansion ratio, the test results showed an improvement in thermal efficiency of 80% with respect to the theoretically predicted value. In addition, issues related to the adoption of a super-high expansion ratio cycle (a reduction in the degree of constant volume and an increase in cooling loss) were analyzed theoretically and some strategies for minimizing these issues were studied. The overall results indicated that the adoption of the variable super-high expansion ratio cycle proposed in this paper is highly effective as a realistic means of improving the thermal efficiency of an engine.</div></div>
Title: Research on Improving Thermal Efficiency through Variable Super-High Expansion Ratio Cycle
Description:
<div class="section abstract"><div class="htmlview paragraph">The compression ratio and expansion ratio are fundamental parameters that determine the thermal efficiency of an SI engine, and the potential of setting these ratios to arbitrary values was studied as a way of improving engine efficiency.
First, the efficiency resulting from different compression and expansion ratios was calculated from a theoretical formula.
As a result, it was verified that a 20% improvement in thermal efficiency could be expected by adopting a super-high expansion ratio of 20 or higher, which is an extremely large value for an SI engine, while keeping the compression ratio within a range that can ensure appropriate combustion.
Subsequently, this research calculated the possibility of improving engine efficiency under a condition that constrains the swept volume to a constant value in consideration of practicability.
The results indicated that in this case the expansion ratio is determined by load, and that ideal engine characteristics can be produced in which high efficiency is attained in practical load regions while producing maximum power under full load.
Finally, based upon the above efficiency calculations, the thermal efficiency was verified using an actual engine in the load region with the greatest efficiency improvement effect.
In tests, the evaluations utilized a high-efficiency commercially available compact 4-cylinder SI engine with a compression ratio of 13:1.
By adopting a super-high expansion ratio, the test results showed an improvement in thermal efficiency of 80% with respect to the theoretically predicted value.
In addition, issues related to the adoption of a super-high expansion ratio cycle (a reduction in the degree of constant volume and an increase in cooling loss) were analyzed theoretically and some strategies for minimizing these issues were studied.
The overall results indicated that the adoption of the variable super-high expansion ratio cycle proposed in this paper is highly effective as a realistic means of improving the thermal efficiency of an engine.
</div></div>.

Related Results

Magic graphs
Magic graphs
DE LA TESIS<br/>Si un graf G admet un etiquetament super edge magic, aleshores G es diu que és un graf super edge màgic. La tesis està principalment enfocada a l'estudi del c...
Product of digraphs, (super) edge-magic valences and related problems
Product of digraphs, (super) edge-magic valences and related problems
Discrete Mathematics, and in particular Graph Theory, has gained a lot of popularity during the last 7 decades. Among the many branches in Graph Theory, graph labelings has experim...
Thermal Effects in High Compactness CEA Stack
Thermal Effects in High Compactness CEA Stack
Thermal management is a pivotal aspect of stack durability and system operability. Consequently, understanding the thermal mapping within a stack based on its operating conditions ...
[RETRACTED] ACV Super Slim Gummies Reviews Scam Or Legit Updated 2022 – Must-See Worth Buying? v1
[RETRACTED] ACV Super Slim Gummies Reviews Scam Or Legit Updated 2022 – Must-See Worth Buying? v1
[RETRACTED]➪ACV Super Slim Gummies - Official Website Link - Click Here To Buy❤️ ✪Product Name ➯ ACV Super Slim Gummies UK✪Main Benefits ➯ Can help you with all your overweight i...
[RETRACTED] ACV Super Slim Gummies Reviews Scam Or Legit Updated 2022 – Must-See Worth Buying? v1
[RETRACTED] ACV Super Slim Gummies Reviews Scam Or Legit Updated 2022 – Must-See Worth Buying? v1
[RETRACTED]➪ACV Super Slim Gummies - Official Website Link - Click Here To Buy❤️ ✪Product Name ➯ ACV Super Slim Gummies UK✪Main Benefits ➯ Can help you with all your overweight i...
Peningkatan Prestasi Belajar Materi Bilangan Berpangkat Melalui Model Discovery Learning
Peningkatan Prestasi Belajar Materi Bilangan Berpangkat Melalui Model Discovery Learning
This research is motivated by the unoptimally the mastery of the material is still not optimal exponential number among learners and implementation Discovery learning in mathematic...
Query expansion by relying on the structure of knowledge bases
Query expansion by relying on the structure of knowledge bases
Query expansion techniques aim at improving the results achieved by a user's query by means of introducing new expansion terms, called expansion features. Expansion features introd...

Back to Top